PaneraTech, Inc.

United States of America

Back to Profile

1-32 of 32 for PaneraTech, Inc. Sort by
Query
Aggregations
IP Type
        Patent 30
        Trademark 2
Jurisdiction
        World 14
        United States 12
        Canada 6
Date
2024 4
2023 3
2022 5
2021 1
Before 2020 19
IPC Class
G01B 15/02 - Measuring arrangements characterised by the use of electromagnetic waves or particle radiation, e.g. by the use of microwaves, X-rays, gamma rays or electrons for measuring thickness 15
G01N 22/02 - Investigating the presence of flaws 14
F27D 21/00 - Arrangement of monitoring devicesArrangement of safety devices 10
G01B 11/06 - Measuring arrangements characterised by the use of optical techniques for measuring length, width, or thickness for measuring thickness 5
G01B 7/06 - Measuring arrangements characterised by the use of electric or magnetic techniques for measuring length, width, or thickness for measuring thickness 5
See more
NICE Class
42 - Scientific, technological and industrial services, research and design 2
09 - Scientific and electric apparatus and instruments 1
Status
Pending 6
Registered / In Force 26

1.

REFRACTORY MONITORING SYSTEM FOR HIGH-VOLTAGE AND HIGH-TEMPERATURE ENVIRONMENT APPLICATIONS

      
Application Number US2023061160
Publication Number 2024/158427
Status In Force
Filing Date 2023-01-24
Publication Date 2024-08-02
Owner PANERATECH, INC. (USA)
Inventor
  • Bayram, Yakup
  • Ruege, Alexander
  • Donahoo, John

Abstract

Disclosed is a system for monitoring the status of a material exposed to a high-voltage and high-temperature environment, such as the refractory material in an electric furnace. The system is operative to collect data from a sensor disposed in the proximity of such material, while incorporating protective elements for operating at a 2000ºF temperature and a 3.0 KV voltage to reduce the overall downtime during the inspection and prevent potential personnel injuries as well as furnace and equipment damage. Additionally, the system comprises a processor and data processing software to account for harsh environment effects while determining certain flaws, including the deformation of, and presence of gaps within, the refractory material. This allows determining the thickness of the refractory material, timely warning about the risks of furnace operation, achieving higher operational safety, and more accurately estimating both the remaining operational life and the maintenance plan of the furnace.

IPC Classes  ?

  • F27D 21/00 - Arrangement of monitoring devicesArrangement of safety devices
  • G01N 22/02 - Investigating the presence of flaws
  • G01B 15/02 - Measuring arrangements characterised by the use of electromagnetic waves or particle radiation, e.g. by the use of microwaves, X-rays, gamma rays or electrons for measuring thickness
  • C21B 7/06 - Linings for furnaces

2.

SYSTEM AND METHOD FOR DETERMINING THE THICKNESS OF A MATERIAL IN MANUFACTURING VESSELS

      
Application Number US2022043995
Publication Number 2024/063754
Status In Force
Filing Date 2022-09-19
Publication Date 2024-03-28
Owner PANERATECH, INC. (USA)
Inventor
  • Bayram, Yakup
  • Quang-Quoctran, Minh

Abstract

Disclosed is a system and a method for determining the thickness of a refractory material forming part of a manufacturing vessel, such as a furnace or ladle, using a surface profile scanning while the vessel is maintained at operating temperatures. The system and method are operative to determine the relative positionings of an internal surface and the corresponding external surface of such material, based on a plurality of surface profile data scans. Additionally, a computational algorithm can process these data and/or other data to determine certain flaws of the refractory material, including the presence of gaps within and bending or deformation of such material for a more accurate determination of its thickness. This provides a way to early warn a user of the risk of continuing operating the vessel, achieve a higher operational safety, and more accurately estimate both the remaining operational life and the maintenance plan of the vessel.

IPC Classes  ?

  • F27D 21/00 - Arrangement of monitoring devicesArrangement of safety devices
  • F27D 1/00 - CasingsLiningsWallsRoofs
  • C21B 7/24 - Test rods or other checking devices
  • F27B 1/28 - Arrangements of monitoring devices, of indicators, of alarm devices
  • G01B 7/06 - Measuring arrangements characterised by the use of electric or magnetic techniques for measuring length, width, or thickness for measuring thickness
  • G01B 11/06 - Measuring arrangements characterised by the use of optical techniques for measuring length, width, or thickness for measuring thickness
  • G01N 17/04 - Corrosion probes
  • F27D 1/10 - Monolithic liningsSupports therefor

3.

SYSTEM AND METHOD FOR DETERMINING THE THICKNESS OF A MATERIAL IN MANUFACTURING VESSELS

      
Application Number 17947696
Status Pending
Filing Date 2022-09-19
First Publication Date 2024-03-21
Owner PaneraTech, Inc. (USA)
Inventor
  • Bayram, Yakup
  • Quang-Quoctran, Minh

Abstract

Disclosed is a system and a method for determining the thickness of a refractory material forming part of a manufacturing vessel, such as a furnace or ladle, using a surface profile scanning while the vessel is maintained at operating temperatures. The system and method are operative to determine the relative positionings of an internal surface and the corresponding external surface of such material, based on a plurality of surface profile data scans. Additionally, a computational algorithm can process these data and/or other data to determine certain flaws of the refractory material, including the presence of gaps within and bending or deformation of such material for a more accurate determination of its thickness. This provides a way to early warn a user of the risk of continuing operating the vessel, achieve a higher operational safety, and more accurately estimate both the remaining operational life and the maintenance plan of the vessel.

IPC Classes  ?

  • G01B 11/06 - Measuring arrangements characterised by the use of optical techniques for measuring length, width, or thickness for measuring thickness
  • G01B 11/30 - Measuring arrangements characterised by the use of optical techniques for measuring roughness or irregularity of surfaces
  • G01B 15/02 - Measuring arrangements characterised by the use of electromagnetic waves or particle radiation, e.g. by the use of microwaves, X-rays, gamma rays or electrons for measuring thickness
  • G01B 15/08 - Measuring arrangements characterised by the use of electromagnetic waves or particle radiation, e.g. by the use of microwaves, X-rays, gamma rays or electrons for measuring roughness or irregularity of surfaces
  • G01B 17/02 - Measuring arrangements characterised by the use of infrasonic, sonic, or ultrasonic vibrations for measuring thickness
  • G01B 17/08 - Measuring arrangements characterised by the use of infrasonic, sonic, or ultrasonic vibrations for measuring roughness or irregularity of surfaces

4.

SYSTEM AND METHOD FOR PREDICTION OF OPERATIONAL SAFETY OF MANUFACTURING VESSELS

      
Application Number 18518683
Status Pending
Filing Date 2023-11-24
First Publication Date 2024-03-14
Owner PaneraTech, Inc. (USA)
Inventor
  • Bayram, Yakup
  • Bayram, Suat
  • Alp, Hande
  • Dama, Elif Rana
  • Türer, Öncel Umut

Abstract

Disclosed is a system and a method for estimating a level of risk of operation of a manufacturing vessels used in the formation of certain materials. The system and method are operative to determine a condition and level of degradation of the refractory material of the vessel to early warn a user of the operational risk of continuing operating the vessel, based on thermal scanning and the use of artificial intelligence. The system is capable of determining the presence of certain flaws within the refractory material and the remaining thickness of such material by correlating the results of processing thermal data corresponding to the external surface of the vessel with a machine learning-based mathematical model, according to a set of operational parameters related to the melting process and data from the user.

IPC Classes  ?

  • F27D 21/00 - Arrangement of monitoring devicesArrangement of safety devices

5.

SYSTEM AND METHOD FOR PREDICTION OF OPERATIONAL SAFETY OF METALLURGICAL VESSELS

      
Application Number US2023064081
Publication Number 2023/173049
Status In Force
Filing Date 2023-03-10
Publication Date 2023-09-14
Owner PANERATECH, INC. (USA)
Inventor Bayram, Yakup

Abstract

Disclosed is a system and a method for estimating a level of risk of operation of a metallurgical vessel used in the formation of metals. The system and method are operative to determine a condition and level of degradation of the refractory material of the vessel to early warn a user of the operational risk of continuing operating the vessel, based on thermal scanning and the use of artificial intelligence. The system is capable of determining the presence of certain flaws within the refractory material and the remaining thickness of such material by correlating the results of processing thermal data corresponding to the external surface of the vessel with a machine learning-based mathematical model, according to a set of operational parameters related to the melting process, data from the user, and residual thickness of the refractory material.

IPC Classes  ?

  • G01N 25/72 - Investigating presence of flaws
  • F27D 21/00 - Arrangement of monitoring devicesArrangement of safety devices
  • G01B 15/02 - Measuring arrangements characterised by the use of electromagnetic waves or particle radiation, e.g. by the use of microwaves, X-rays, gamma rays or electrons for measuring thickness
  • G01N 22/02 - Investigating the presence of flaws
  • G06N 20/00 - Machine learning

6.

Antenna-grating coupled sensing system for clutter reduction during evaluation of a status of a material

      
Application Number 18003930
Grant Number 12276620
Status In Force
Filing Date 2020-06-30
First Publication Date 2023-08-24
Grant Date 2025-04-15
Owner PANERATECH, INC. (USA)
Inventor
  • Bayram, Yakup
  • Ruege, Alexander

Abstract

Disclosed is a sensing system to evaluate and monitor the status of a material forming part of a refractory furnace, integrating an antenna and a grating structure that might be part of the furnace. The system is operative to identify flaws and measure the erosion profile and thickness of different materials, including refractory materials of an industrial furnace, using radiofrequency signals. The system is designed to integrate the antenna with a grating adjacent to an external furnace wall to improve the overall performance of the sensing system as compared to that of the antenna alone during an inspection of the furnace, even in regions of difficult access. Furthermore, the system comprises a mechanism to physically attach the antenna to the furnace grating or to modify the grating configuration around the antenna to improve the system performance for better estimating the remaining operational life and maintenance plan of the furnace.

IPC Classes  ?

7.

Method and apparatus for evaluation of a status of a material in metallurgical vessels

      
Application Number 17916895
Grant Number 12061155
Status In Force
Filing Date 2021-04-05
First Publication Date 2023-05-18
Grant Date 2024-08-13
Owner PaneraTech, Inc. (USA)
Inventor Bayram, Yakup

Abstract

Disclosed is an apparatus and method for evaluating a status of a refractory material in metallurgical vessels, including furnaces and ladles, wherein an external structure at least partly surrounding the refractory material impairs the propagation of radiofrequency signals. The apparatus and method are operative to identify flaws and determine the erosion profile and thickness of refractory material and the level or rate of penetration of molten material into the refractory material, using radiofrequency signals. The apparatus comprises an antenna embedded in the refractory material or positioned inside the chamber of the vessel designed to collect data associated with the propagation of radiofrequency signals transmitted by the antenna into the refractory material. Moreover, signal processing techniques allow determining the status of the internal wall of the vessel due to operational wear, age, and presence of flaws, cracks, corrosion, and erosion to improve the operational life and maintenance of the vessel.

IPC Classes  ?

  • G01N 22/02 - Investigating the presence of flaws
  • G01B 15/02 - Measuring arrangements characterised by the use of electromagnetic waves or particle radiation, e.g. by the use of microwaves, X-rays, gamma rays or electrons for measuring thickness

8.

SYSTEM AND METHOD FOR EVALUATING A STATUS OF A MATERIAL IN METALLURGICAL VESSELS

      
Application Number US2021063960
Publication Number 2022/133173
Status In Force
Filing Date 2021-12-17
Publication Date 2022-06-23
Owner PANERATECH, INC. (USA)
Inventor Bayram, Yakup

Abstract

Disclosed is a system and method for evaluating a status of a refractory material in metallurgical vessels, including furnaces and ladles, wherein a slag buildup is formed on the surface of such material as a result of scrap accumulation and chemical reactions occurring during the melting of metals in such vessels. The system and method are operative to determine both a rate of degradation of the material under evaluation, including the thickness of such material, and a measure of the slag buildup to predict and extend the operational life and improve the maintenance plan of the vessel. The system is capable of determining the thickness of and the slag buildup on the entire material under evaluation by sampling a number of regions of such material with different types of sensors, characterizing the surface profile of such material, and using appropriate signal processing techniques and artificial intelligence algorithms.

IPC Classes  ?

  • G01N 22/02 - Investigating the presence of flaws
  • G01M 3/16 - Investigating fluid tightness of structures by using fluid or vacuum by detecting the presence of fluid at the leakage point using electric detection means
  • G01M 3/40 - Investigating fluid tightness of structures by using electric means, e.g. by observing electric discharges

9.

SYSTEM AND METHOD FOR EVALUATING A STATUS OF A MATERIAL IN METALLURGICAL VESSELS

      
Document Number 03201699
Status Pending
Filing Date 2021-12-17
Open to Public Date 2022-06-23
Owner PANERATECH, INC. (USA)
Inventor Bayram, Yakup

Abstract

Disclosed is a system and method for evaluating a status of a refractory material in metallurgical vessels, including furnaces and ladles, wherein a slag buildup is formed on the surface of such material as a result of scrap accumulation and chemical reactions occurring during the melting of metals in such vessels. The system and method are operative to determine both a rate of degradation of the material under evaluation, including the thickness of such material, and a measure of the slag buildup to predict and extend the operational life and improve the maintenance plan of the vessel. The system is capable of determining the thickness of and the slag buildup on the entire material under evaluation by sampling a number of regions of such material with different types of sensors, characterizing the surface profile of such material, and using appropriate signal processing techniques and artificial intelligence algorithms.

IPC Classes  ?

  • G01M 3/40 - Investigating fluid tightness of structures by using electric means, e.g. by observing electric discharges
  • G01N 22/02 - Investigating the presence of flaws

10.

System and method for evaluating a status of a material in metallurgical vessels

      
Application Number 17553903
Grant Number 12085384
Status In Force
Filing Date 2021-12-17
First Publication Date 2022-06-23
Grant Date 2024-09-10
Owner PANERATECH, INC. (USA)
Inventor Bayram, Yakup

Abstract

Disclosed is a system and method for evaluating a status of a refractory material in metallurgical vessels, including furnaces and ladles, wherein a slag buildup is formed on the surface of such material as a result of scrap accumulation and chemical reactions occurring during the melting of metals in such vessels. The system and method are operative to determine both a rate of degradation of the material under evaluation, including the thickness of such material, and a measure of the slag buildup to predict and extend the operational life and improve the maintenance plan of the vessel. The system is capable of determining the thickness of and the slag buildup on the entire material under evaluation by sampling a number of regions of such material with different types of sensors, characterizing the surface profile of such material, and using appropriate signal processing techniques and artificial intelligence algorithms.

IPC Classes  ?

  • G01B 15/02 - Measuring arrangements characterised by the use of electromagnetic waves or particle radiation, e.g. by the use of microwaves, X-rays, gamma rays or electrons for measuring thickness
  • G01B 11/30 - Measuring arrangements characterised by the use of optical techniques for measuring roughness or irregularity of surfaces
  • G06N 20/00 - Machine learning

11.

ANTENNA-GRATING SENSING SYSTEM

      
Document Number 03183841
Status Pending
Filing Date 2020-06-30
Open to Public Date 2022-01-06
Owner PANERATECH, INC. (USA)
Inventor
  • Bayram, Yakup
  • Ruege, Alexander

Abstract

Disclosed is a sensing system to evaluate and monitor the status of a material forming part of a refractory furnace, integrating an antenna and a grating structure that might be part of the furnace. The system is operative to identify flaws and measure the erosion profile and thickness of different materials, including refractory materials of an industrial furnace, using radiofrequency signals. The system is designed to integrate the antenna with a grating adjacent to an external furnace wall to improve the overall performance of the sensing system as compared to that of the antenna alone during an inspection of the furnace, even in regions of difficult access. Furthermore, the system comprises a mechanism to physically attach the antenna to the furnace grating or to modify the grating configuration around the antenna to improve the system performance for better estimating the remaining operational life and maintenance plan of the furnace.

IPC Classes  ?

  • B29C 43/36 - Moulds for making articles of definite length, i.e. discrete articles
  • B29C 43/42 - Moulds for making articles of definite length, i.e. discrete articles for undercut articles
  • B29C 43/52 - Heating or cooling
  • F41A 3/10 - Block action, i.e. the main breech opening movement being transverse to the barrel axis with sliding breech-block, e.g. vertically
  • F41A 3/66 - Breech housings or framesReceivers
  • F41C 27/00 - AccessoriesDetails or attachments not otherwise provided for

12.

ANTENNA-GRATING SENSING SYSTEM

      
Application Number US2020040253
Publication Number 2022/005456
Status In Force
Filing Date 2020-06-30
Publication Date 2022-01-06
Owner PANERATECH, INC. (USA)
Inventor
  • Bayram, Yakup
  • Ruege, Alexander

Abstract

Disclosed is a sensing system to evaluate and monitor the status of a material forming part of a refractory furnace, integrating an antenna and a grating structure that might be part of the furnace. The system is operative to identify flaws and measure the erosion profile and thickness of different materials, including refractory materials of an industrial furnace, using radiofrequency signals. The system is designed to integrate the antenna with a grating adjacent to an external furnace wall to improve the overall performance of the sensing system as compared to that of the antenna alone during an inspection of the furnace, even in regions of difficult access. Furthermore, the system comprises a mechanism to physically attach the antenna to the furnace grating or to modify the grating configuration around the antenna to improve the system performance for better estimating the remaining operational life and maintenance plan of the furnace.

IPC Classes  ?

  • F41C 27/00 - AccessoriesDetails or attachments not otherwise provided for
  • B29C 43/36 - Moulds for making articles of definite length, i.e. discrete articles
  • B29C 43/42 - Moulds for making articles of definite length, i.e. discrete articles for undercut articles
  • B29C 43/52 - Heating or cooling
  • F41A 3/10 - Block action, i.e. the main breech opening movement being transverse to the barrel axis with sliding breech-block, e.g. vertically
  • F41A 3/66 - Breech housings or framesReceivers

13.

METHOD AND APPARATUS FOR EVALUATION OF A STATUS OF A MATERIAL IN METALLURGICAL VESSELS

      
Application Number US2021025706
Publication Number 2021/207044
Status In Force
Filing Date 2021-04-05
Publication Date 2021-10-14
Owner PANERATECH, INC. (USA)
Inventor Bayram, Yakup

Abstract

Disclosed is an apparatus and method for evaluating a status of a refractory material in metallurgical vessels, including furnaces and ladles, wherein an external structure at least partly surrounding the refractory material impairs the propagation of radiofrequency signals. The apparatus and method are operative to identify flaws and determine the erosion profile and thickness of refractory material and the level or rate of penetration of molten material into the refractory material, using radiofrequency signals. The apparatus comprises an antenna embedded in the refractory material or positioned inside the chamber of the vessel designed to collect data associated with the propagation of radiofrequency signals transmitted by the antenna into the refractory material. Moreover, signal processing techniques allow determining the status of the internal wall of the vessel due to operational wear, age, and presence of flaws, cracks, corrosion, and erosion to improve the operational life and maintenance of the vessel.

IPC Classes  ?

  • G01N 22/00 - Investigating or analysing materials by the use of microwaves or radio waves, i.e. electromagnetic waves with a wavelength of one millimetre or more
  • G01N 22/02 - Investigating the presence of flaws
  • G01B 15/00 - Measuring arrangements characterised by the use of electromagnetic waves or particle radiation, e.g. by the use of microwaves, X-rays, gamma rays or electrons
  • G01B 15/02 - Measuring arrangements characterised by the use of electromagnetic waves or particle radiation, e.g. by the use of microwaves, X-rays, gamma rays or electrons for measuring thickness
  • G01B 15/04 - Measuring arrangements characterised by the use of electromagnetic waves or particle radiation, e.g. by the use of microwaves, X-rays, gamma rays or electrons for measuring contours or curvatures

14.

SMARTAUDIT

      
Serial Number 88644955
Status Registered
Filing Date 2019-10-07
Registration Date 2021-04-13
Owner PaneraTech, Inc. ()
NICE Classes  ? 42 - Scientific, technological and industrial services, research and design

Goods & Services

Electronic inspection, measurement, quality evaluation, quality monitoring, and reporting of thickness, density, dielectric permittivity, and conductivity properties of molten, refractory, and insulating materials in furnaces for industrial purposes, using radar-enabled sensors and computer software for radar imaging and computer tomography along with identifying weak furnace spots through visual means using camera, endoscopy, and thermal sensors

15.

DISPLAY DEVICE

      
Application Number JP2019013609
Publication Number 2019/189577
Status In Force
Filing Date 2019-03-28
Publication Date 2019-10-03
Owner
  • NISSHA CO.,LTD. (Japan)
  • PANERATECH, INC. (USA)
Inventor
  • Moon, Inyeol
  • Sebastian, Tom
  • Bayram, Yakup

Abstract

The display device 1 is provided with a display 5, a ground plate 3, and a transparent antenna element 2a. In a plan view, the ground plate 3 is disposed so as to correspond to the display 5, the transparent antenna element 2a is disposed so as to correspond to a portion of a display area of the display 5, and the ground plate 3 has a cutout part 3a corresponding to the transparent antenna element 2a.

IPC Classes  ?

  • H01Q 1/24 - SupportsMounting means by structural association with other equipment or articles with receiving set
  • G09F 9/00 - Indicating arrangements for variable information in which the information is built-up on a support by selection or combination of individual elements
  • H01Q 7/00 - Loop antennas with a substantially uniform current distribution around the loop and having a directional radiation pattern in a plane perpendicular to the plane of the loop

16.

MATERIAL EROSION MONITORING SYSTEM AND METHOD

      
Document Number 03043161
Status Pending
Filing Date 2017-04-25
Open to Public Date 2018-05-17
Owner PANERATECH, INC. (USA)
Inventor
  • Ruege, Alexander C.
  • Bayram, Yakup

Abstract

Disclosed is an improved system and method to evaluate the status of a material. The system and method are operative to identify flaws and measure the erosion profile and thickness of different materials, including refractory materials, using electromagnetic waves. The system is designed to reduce a plurality of reflections, associated with the propagation of electromagnetic waves launched into the material under evaluation, by a sufficient extent so as to enable detection of electromagnetic waves of interest reflected from remote discontinuities of the material. Furthermore, the system and method utilize a configuration and signal processing techniques that reduce clutter and enable the isolation of electromagnetic waves of interest. Moreover, the launcher is impedance matched to the material under evaluation, and the feeding mechanism is designed to mitigate multiple reflection effects to further suppress clutter.

IPC Classes  ?

  • F27D 21/00 - Arrangement of monitoring devicesArrangement of safety devices
  • G01B 7/06 - Measuring arrangements characterised by the use of electric or magnetic techniques for measuring length, width, or thickness for measuring thickness
  • G01B 11/06 - Measuring arrangements characterised by the use of optical techniques for measuring length, width, or thickness for measuring thickness
  • G01B 15/02 - Measuring arrangements characterised by the use of electromagnetic waves or particle radiation, e.g. by the use of microwaves, X-rays, gamma rays or electrons for measuring thickness
  • G01B 15/04 - Measuring arrangements characterised by the use of electromagnetic waves or particle radiation, e.g. by the use of microwaves, X-rays, gamma rays or electrons for measuring contours or curvatures

17.

MATERIAL EROSION MONITORING SYSTEM AND METHOD

      
Application Number US2017029309
Publication Number 2018/089044
Status In Force
Filing Date 2017-04-25
Publication Date 2018-05-17
Owner PANERATECH, INC. (USA)
Inventor
  • Ruege, Alexander C.
  • Bayram, Yakup

Abstract

Disclosed is an improved system and method to evaluate the status of a material. The system and method are operative to identify flaws and measure the erosion profile and thickness of different materials, including refractory materials, using electromagnetic waves. The system is designed to reduce a plurality of reflections, associated with the propagation of electromagnetic waves launched into the material under evaluation, by a sufficient extent so as to enable detection of electromagnetic waves of interest reflected from remote discontinuities of the material. Furthermore, the system and method utilize a configuration and signal processing techniques that reduce clutter and enable the isolation of electromagnetic waves of interest. Moreover, the launcher is impedance matched to the material under evaluation, and the feeding mechanism is designed to mitigate multiple reflection effects to further suppress clutter.

IPC Classes  ?

  • G01B 15/02 - Measuring arrangements characterised by the use of electromagnetic waves or particle radiation, e.g. by the use of microwaves, X-rays, gamma rays or electrons for measuring thickness
  • F27D 21/00 - Arrangement of monitoring devicesArrangement of safety devices
  • G01B 7/06 - Measuring arrangements characterised by the use of electric or magnetic techniques for measuring length, width, or thickness for measuring thickness
  • G01B 9/02 - Interferometers
  • G01B 11/06 - Measuring arrangements characterised by the use of optical techniques for measuring length, width, or thickness for measuring thickness
  • G01B 15/04 - Measuring arrangements characterised by the use of electromagnetic waves or particle radiation, e.g. by the use of microwaves, X-rays, gamma rays or electrons for measuring contours or curvatures
  • G01K 1/02 - Means for indicating or recording specially adapted for thermometers

18.

Material erosion monitoring system and method

      
Application Number 15346161
Grant Number 09880110
Status In Force
Filing Date 2016-11-08
First Publication Date 2017-08-17
Grant Date 2018-01-30
Owner PANERATECH, INC. (USA)
Inventor
  • Ruege, Alexander C.
  • Bayram, Yakup

Abstract

Disclosed is an improved system and method to evaluate the status of a material. The system and method are operative to identify flaws and measure the erosion profile and thickness of different materials, including refractory materials, using electromagnetic waves. The system is designed to reduce a plurality of reflections, associated with the propagation of electromagnetic waves launched into the material under evaluation, by a sufficient extent so as to enable detection of electromagnetic waves of interest reflected from remote discontinuities of the material. Furthermore, the system and method utilize a configuration and signal processing techniques that reduce clutter and enable the isolation of electromagnetic waves of interest. Moreover, the launcher is impedance matched to the material under evaluation, and the feeding mechanism is designed to mitigate multiple reflection effects to further suppress clutter.

IPC Classes  ?

  • G01N 22/02 - Investigating the presence of flaws
  • G01B 15/02 - Measuring arrangements characterised by the use of electromagnetic waves or particle radiation, e.g. by the use of microwaves, X-rays, gamma rays or electrons for measuring thickness
  • F27D 21/00 - Arrangement of monitoring devicesArrangement of safety devices
  • G01N 33/38 - ConcreteLimeMortarGypsumBricksCeramicsGlass

19.

Asset life optimization and monitoring system

      
Application Number 15337851
Grant Number 10054367
Status In Force
Filing Date 2016-10-28
First Publication Date 2017-05-11
Grant Date 2018-08-21
Owner PANERATECH, INC. (USA)
Inventor
  • Bayram, Yakup
  • Ruege, Alexander
  • Knowles, Justin

Abstract

Disclosed is a system to evaluate and monitor the status of a material forming part of an asset, such as a refractory furnace. The system is operative to identify flaws and measure the erosion profile and thickness of different materials, including refractory materials of an industrial furnace, using radiofrequency signals. The system is designed to integrate software with a plurality of sensors and additional hardware to collect data during an inspection of the furnace, even in regions of difficult access. Furthermore, the system comprises a software management subsystem configured to implement signal processing techniques to process the data collected and generate reports to visualize the status, estimate the remaining operational life, and determine the level of penetration of molten material into the surrounding layers of the furnace. Moreover, the system's software enables a user to monitor the status of the furnace both locally and remotely.

IPC Classes  ?

  • G01N 22/02 - Investigating the presence of flaws
  • F27D 21/00 - Arrangement of monitoring devicesArrangement of safety devices
  • G01B 15/02 - Measuring arrangements characterised by the use of electromagnetic waves or particle radiation, e.g. by the use of microwaves, X-rays, gamma rays or electrons for measuring thickness

20.

ASSET LIFE OPTIMIZATION AND MONITORING SYSTEM

      
Document Number 02998778
Status In Force
Filing Date 2016-10-28
Open to Public Date 2017-05-04
Grant Date 2024-02-27
Owner PANERATECH, INC. (USA)
Inventor
  • Bayram, Yakup
  • Ruege, Alexander
  • Knowles, Justin

Abstract

Disclosed is a system to evaluate and monitor the status of a material forming part of an asset, such as a refractory furnace. The system is operative to identify flaws and measure the erosion profile and thickness of different materials, including refractory materials of an industrial furnace, using radiofrequency signals. The system is designed to integrate software with a plurality of sensors and additional hardware to collect data during an inspection of the furnace, even in regions of difficult access. Furthermore, the system comprises a software management subsystem configured to implement signal processing techniques to process the data collected and generate reports to visualize the status, estimate the remaining operational life, and determine the level of penetration of molten material into the surrounding layers of the furnace. Moreover, the system's software enables a user to monitor the status of the furnace both locally and remotely.

IPC Classes  ?

  • G01R 27/28 - Measuring attenuation, gain, phase shift, or derived characteristics of electric four-pole networks, i.e. two-port networksMeasuring transient response

21.

ASSET LIFE OPTIMIZATION AND MONITORING SYSTEM

      
Application Number US2016059469
Publication Number 2017/075453
Status In Force
Filing Date 2016-10-28
Publication Date 2017-05-04
Owner PANERATECH, INC. (USA)
Inventor
  • Bayram, Yakup
  • Ruege, Alexander
  • Knowles, Justin

Abstract

Disclosed is a system to evaluate and monitor the status of a material forming part of an asset, such as a refractory furnace. The system is operative to identify flaws and measure the erosion profile and thickness of different materials, including refractory materials of an industrial furnace, using radiofrequency signals. The system is designed to integrate software with a plurality of sensors and additional hardware to collect data during an inspection of the furnace, even in regions of difficult access. Furthermore, the system comprises a software management subsystem configured to implement signal processing techniques to process the data collected and generate reports to visualize the status, estimate the remaining operational life, and determine the level of penetration of molten material into the surrounding layers of the furnace. Moreover, the system's software enables a user to monitor the status of the furnace both locally and remotely.

IPC Classes  ?

  • G01R 27/28 - Measuring attenuation, gain, phase shift, or derived characteristics of electric four-pole networks, i.e. two-port networksMeasuring transient response

22.

SMARTMELTER

      
Serial Number 87174048
Status Registered
Filing Date 2016-09-16
Registration Date 2017-05-02
Owner PaneraTech, Inc. ()
NICE Classes  ?
  • 09 - Scientific and electric apparatus and instruments
  • 42 - Scientific, technological and industrial services, research and design

Goods & Services

Electronic monitoring and control systems for use with industrial furnaces, comprised primarily of radar-enabled sensors and computer software for radar imaging and computer tomography; electronic sensing, measuring, monitoring and control systems for determining the thickness of refractory or insulating material used in industrial furnaces, comprised primarily of radar-enabled sensors and computer software for radar imaging and computer tomography; remote electronic monitoring and control systems for determining the presence of molten material within a refractory or insulating material used in industrial furnaces, comprised primarily of radar-enabled sensors and computer software for radar imaging and computer tomography; remote electronic leak detection systems for identifying a leakage of molten material in industrial furnaces, comprised primarily of radar-enabled sensors and computer software for radar imaging and computer tomography; electronic inspection, measuring, monitoring, control, and reporting systems for predicting maintenance and remaining operational life of industrial furnaces, comprised primarily of radar-enabled sensors and computer software for radar imaging and computer tomography Electronic inspection, measurement evaluation, monitoring, and reporting of thickness, density, dielectric permittivity, and conductivity properties of molten, refractory, and insulating materials in furnaces for industrial purposes, using radar-enabled sensors and computer software for radar imaging and computer tomography

23.

Device and method for evaluation of a material

      
Application Number 14732831
Grant Number 10151709
Status In Force
Filing Date 2015-06-08
First Publication Date 2015-12-17
Grant Date 2018-12-11
Owner PaneraTech, Inc. (USA)
Inventor
  • Bayram, Yakup
  • Ruege, Alexander
  • Walton, Eric
  • Hagan, Peter

Abstract

Disclosed is an improved device and method to evaluate the status of a material by scanning an area that overlaps a region of the material under evaluation. The device and method are operative to identify a leakage of a first material into a second material, such as a molten material surrounded by a refractory material, to measure the thickness of the second material, using electromagnetic waves, and to generate images. The device is designed to reduce a plurality of reflections associated with the propagation of electromagnetic waves launched into the material under evaluation, by a sufficient extent so as to enable detection of electromagnetic waves of interest reflected from remote discontinuities present in between the device and the enclosed material. Furthermore, the device can be configured to scan areas of interest in either a portable or fixed configuration, manually in a standalone mode or as part of an automated system.

IPC Classes  ?

  • G01N 22/02 - Investigating the presence of flaws
  • G01M 3/16 - Investigating fluid tightness of structures by using fluid or vacuum by detecting the presence of fluid at the leakage point using electric detection means
  • G01M 3/40 - Investigating fluid tightness of structures by using electric means, e.g. by observing electric discharges

24.

DEVICE AND METHOD FOR EVALUATION OF A MATERIAL

      
Application Number US2015034620
Publication Number 2015/191415
Status In Force
Filing Date 2015-06-08
Publication Date 2015-12-17
Owner PANERATECH, INC. (USA)
Inventor
  • Bayram, Yakup
  • Ruege, Alexander
  • Walton, Eric
  • Hagan, Peter

Abstract

Disclosed is an improved device and method to evaluate the status of a material by scanning an area that overlaps a region of the material under evaluation. The device and method are operative to identify a leakage of a first material into a second material, such as a molten material surrounded by a refractory material, to measure the thickness of the second material, using electromagnetic waves, and to generate images. The device is designed to reduce a plurality of reflections associated with the propagation of electromagnetic waves launched into the material under evaluation, by a sufficient extent so as to enable detection of electromagnetic waves of interest reflected from remote discontinuities present in between the device and the enclosed material. Furthermore, the device can be configured to scan areas of interest in either a portable or fixed configuration, manually in a standalone mode or as part of an automated system.

IPC Classes  ?

  • G01B 9/02 - Interferometers
  • G01B 11/06 - Measuring arrangements characterised by the use of optical techniques for measuring length, width, or thickness for measuring thickness
  • G01B 15/02 - Measuring arrangements characterised by the use of electromagnetic waves or particle radiation, e.g. by the use of microwaves, X-rays, gamma rays or electrons for measuring thickness

25.

DEVICE AND METHOD FOR EVALUATION OF A MATERIAL

      
Document Number 02950181
Status Pending
Filing Date 2015-06-08
Open to Public Date 2015-12-17
Owner PANERATECH, INC. (USA)
Inventor
  • Bayram, Yakup
  • Ruege, Alexander
  • Walton, Eric
  • Hagan, Peter

Abstract

Disclosed is an improved device and method to evaluate the status of a material by scanning an area that overlaps a region of the material under evaluation. The device and method are operative to identify a leakage of a first material into a second material, such as a molten material surrounded by a refractory material, to measure the thickness of the second material, using electromagnetic waves, and to generate images. The device is designed to reduce a plurality of reflections associated with the propagation of electromagnetic waves launched into the material under evaluation, by a sufficient extent so as to enable detection of electromagnetic waves of interest reflected from remote discontinuities present in between the device and the enclosed material. Furthermore, the device can be configured to scan areas of interest in either a portable or fixed configuration, manually in a standalone mode or as part of an automated system.

IPC Classes  ?

  • G01B 15/02 - Measuring arrangements characterised by the use of electromagnetic waves or particle radiation, e.g. by the use of microwaves, X-rays, gamma rays or electrons for measuring thickness
  • G01N 22/02 - Investigating the presence of flaws

26.

MATERIAL EROSION MONITORING SYSTEM AND METHOD

      
Document Number 02940471
Status In Force
Filing Date 2014-03-27
Open to Public Date 2015-10-01
Grant Date 2021-05-18
Owner PANERATECH, INC. (USA)
Inventor
  • Ruege, Alexander C.
  • Bayram, Yakup
  • Walton, Eric K.

Abstract

Disclosed is an improved system and method to evaluate the status of a material. The system and method are operative to identify flaws and measure the erosion profile and thickness of different materials, including refractory materials, using electromagnetic waves. The system is designed to reduce a plurality of reflections, associated with the propagation of electromagnetic waves launched into the material under evaluation, by a sufficient extent so as to enable detection of electromagnetic waves of interest reflected from remote discontinuities of the material. Furthermore, the system and method utilize a configuration and signal processing techniques that reduce clutter and enable the isolation of electromagnetic waves of interest. Moreover, the launcher is impedance matched to the material under evaluation, and the feeding mechanism is designed to mitigate multiple reflection effects to further suppress clutter.

IPC Classes  ?

  • G01B 15/02 - Measuring arrangements characterised by the use of electromagnetic waves or particle radiation, e.g. by the use of microwaves, X-rays, gamma rays or electrons for measuring thickness
  • G01N 22/00 - Investigating or analysing materials by the use of microwaves or radio waves, i.e. electromagnetic waves with a wavelength of one millimetre or more
  • G01N 22/02 - Investigating the presence of flaws
  • G01S 13/88 - Radar or analogous systems, specially adapted for specific applications

27.

Material erosion monitoring system and method

      
Application Number 14226102
Grant Number 09488601
Status In Force
Filing Date 2014-03-26
First Publication Date 2015-10-01
Grant Date 2016-11-08
Owner PANERATECH, INC. (USA)
Inventor
  • Ruege, Alexander C.
  • Bayram, Yakup
  • Walton, Eric K.

Abstract

Disclosed is an improved system and method to evaluate the status of a material. The system and method are operative to identify flaws and measure the erosion profile and thickness of different materials, including refractory materials, using electromagnetic waves. The system is designed to reduce a plurality of reflections, associated with the propagation of electromagnetic waves launched into the material under evaluation, by a sufficient extent so as to enable detection of electromagnetic waves of interest reflected from remote discontinuities of the material. Furthermore, the system and method utilize a configuration and signal processing techniques that reduce clutter and enable the isolation of electromagnetic waves of interest. Moreover, the launcher is impedance matched to the material under evaluation, and the feeding mechanism is designed to mitigate multiple reflection effects to further suppress clutter.

IPC Classes  ?

  • G01N 17/02 - Electrochemical measuring systems for weathering, corrosion or corrosion-protection measurement
  • G01B 7/06 - Measuring arrangements characterised by the use of electric or magnetic techniques for measuring length, width, or thickness for measuring thickness
  • G01N 27/61 - Investigating the presence of flaws
  • G01N 22/02 - Investigating the presence of flaws
  • G01B 15/02 - Measuring arrangements characterised by the use of electromagnetic waves or particle radiation, e.g. by the use of microwaves, X-rays, gamma rays or electrons for measuring thickness
  • F27D 21/00 - Arrangement of monitoring devicesArrangement of safety devices

28.

MATERIAL EROSION MONITORING SYSTEM AND METHOD

      
Application Number US2014031981
Publication Number 2015/147827
Status In Force
Filing Date 2014-03-27
Publication Date 2015-10-01
Owner PANERATECH, INC. (USA)
Inventor
  • Ruege, Alexander C.
  • Bayram, Yakup
  • Walton, Eric K.

Abstract

Disclosed is an improved system and method to evaluate the status of a material. The system and method are operative to identify flaws and measure the erosion profile and thickness of different materials, including refractory materials, using electromagnetic waves. The system is designed to reduce a plurality of reflections, associated with the propagation of electromagnetic waves launched into the material under evaluation, by a sufficient extent so as to enable detection of electromagnetic waves of interest reflected from remote discontinuities of the material. Furthermore, the system and method utilize a configuration and signal processing techniques that reduce clutter and enable the isolation of electromagnetic waves of interest. Moreover, the launcher is impedance matched to the material under evaluation, and the feeding mechanism is designed to mitigate multiple reflection effects to further suppress clutter.

IPC Classes  ?

  • G01B 7/06 - Measuring arrangements characterised by the use of electric or magnetic techniques for measuring length, width, or thickness for measuring thickness

29.

ADAPTIVE ANTENNA FEEDING AND METHOD FOR OPTIMIZING THE DESIGN THEREOF

      
Application Number US2014037776
Publication Number 2014/186320
Status In Force
Filing Date 2014-05-13
Publication Date 2014-11-20
Owner PANERATECH, INC. (USA)
Inventor
  • Bayram, Yakup
  • Villarroel, Wladimiro
  • Ruege, Alexander
  • Walton, Eric

Abstract

Disclosed is an antenna feeding system and method to optimize the design of the feeding system to feed an antenna made of a resistive sheet. The system and method are operative to design a topology of the antenna feeding system to adapt to a topology of the resistive sheet antenna to mitigate the adverse effects caused by the inherent losses of resistive sheets while operating as antennas. The system is designed to reduce a convergence of radiofrequency currents that may create a localized high density current concentration, such as hot spots and pinch points, on the resistive sheet, by a sufficient extent so as to prevent power losses that substantially decrease the radiation efficiency of the antenna as compared with feeding systems designed using traditional design techniques.

IPC Classes  ?

  • H01Q 1/00 - Details of, or arrangements associated with, antennas

30.

ANTENNA AND METHOD FOR OPTIMIZING THE DESIGN THEREOF

      
Application Number US2014034235
Publication Number 2014/172383
Status In Force
Filing Date 2014-04-15
Publication Date 2014-10-23
Owner PANERATECH, INC. (USA)
Inventor
  • Bayram, Yakup
  • Villarroel, Wladimiro
  • Ruege, Alexander C.
  • Walton, Eric

Abstract

Disclosed is an antenna system and method to optimize the design of an antenna using resistive sheets. The system and method are operative to design a topology of a resistive sheet to mitigate the adverse effects caused by the inherent losses of resistive sheets while operating as antennas. The system is designed to reduce a plurality of radiofrequency current "hot spots" and "pinch points," associated with the flow of a current on a resistive sheet, by a sufficient extent so as to enable radiation of electromagnetic waves at substantially higher radiation efficiency as compared with antennas designed using traditional design techniques.

IPC Classes  ?

  • H01Q 1/38 - Structural form of radiating elements, e.g. cone, spiral, umbrella formed by a conductive layer on an insulating support

31.

MICROWAVE PROBE FOR FURNACE REFRACTORY MATERIAL

      
Application Number US2012068158
Publication Number 2013/086126
Status In Force
Filing Date 2012-12-06
Publication Date 2013-06-13
Owner
  • PANERATECH, INC. (USA)
  • BAYRAM, Yakup (USA)
Inventor Walton, Eric

Abstract

A method and system for evaluating the condition of a remote surface of a material, especially a refractory material, including the steps of providing a wide band coherent radar antenna that is selected based upon an impedance match with the material to be evaluated, wherein said antenna is provided a physical configuration adapted to delay receipt of a signal of interest reflected from said remote surface of said material by a time period sufficient to distinguish between said reflected signal of interest and reflected spurious signals from a near surface of said material, placing said antenna adjacent said near surface of said material, irradiating said material with coherent microwave radiation tuned over a frequency range, detecting reflected microwave radiation from said remote surface of said material, and determining the thickness of the material based upon a determined distance traveled by said signal of interest.

IPC Classes  ?

32.

Microwave probe for furnace refractory material

      
Application Number 13706787
Grant Number 09255794
Status In Force
Filing Date 2012-12-06
First Publication Date 2013-06-06
Grant Date 2016-02-09
Owner PANERATECH, INC. (USA)
Inventor
  • Walton, Eric
  • Bayram, Yakup

Abstract

Disclosed is a system and method to aid in these inspections that avoid the disadvantages of the prior art. The system and method are operative to take thickness measurements of, and thus evaluate the condition of, materials including but not limited to refractory materials, operating in frequency bands that result in less loss than previously known technologies, and utilizing a system configuration and signal processing techniques that isolate the reflected signal of interest from other spurious antenna reflections, particularly by creating (through the configuration of the antenna assembly) a time delay between such spurious reflections and the actual reflected signal of interest, thus enabling better isolation of the signal of interest. Still further, the antenna assembly is intrinsically matched to the material to be probed, such as by impedance matching the antenna to the particular material (through knowledge of the dielectric and magnetic properties of the material to be evaluated) to even further suppress spurious reflections.

IPC Classes  ?

  • G06F 15/00 - Digital computers in generalData processing equipment in general
  • G01B 15/02 - Measuring arrangements characterised by the use of electromagnetic waves or particle radiation, e.g. by the use of microwaves, X-rays, gamma rays or electrons for measuring thickness
  • F27D 21/00 - Arrangement of monitoring devicesArrangement of safety devices
  • G01N 22/02 - Investigating the presence of flaws