The present invention provides a wing sail, for a boat, that uses a soft sail. The present invention comprises: a mast 1; a double sail comprising a first mainsail 2 and a second mainsail 3; a first furling device 4 which furls and unfurls the first mainsail 2; a second furling device 5 which furls and unfurls the second mainsail 3; and a tightening mechanism 6 which tightens leeches 20, 30 at the back end of the double sail, wherein a luff at the front end of the double sail comprises a first luff 21 of the first mainsail 2 and a second luff 31 of the second mainsail 3 which are positioned behind the mast 1 and move away from each other in the width direction of the mast 1, and a wing sail is formed from the first mainsail 2, the second mainsail 3, and the mast 1.
An organic waste recycling apparatus comprises: a catalyst for making the carbonization of an organic waste targeted for waste disposal; a UV irradiation member for irradiating UV at a wavelength capable of breaking a bond in a molecule constituting the organic waste; a processed object housing member whereof the interior space houses the catalyst; a heating member provided in the interior space; and a stirring member provided in the interior space. The organic waste is one that has undergone crushing into small pieces. The processed object housing member is such that the catalyst and the organic waste that has been UV-irradiated by the UV irradiation member and introduced into the interior space are in contact with one another and stirrable in this state by the stirring member.
C08J 11/28 - Recovery or working-up of waste materials of polymers by chemically breaking down the molecular chains of polymers or breaking of crosslinks, e.g. devulcanisation by treatment with organic material by treatment with organic compounds containing nitrogen, sulfur or phosphorus
C01B 32/05 - Preparation or purification of carbon not covered by groups , , ,
B09B 3/50 - Destroying solid waste or transforming solid waste into something useful or harmless involving radiation, e.g. electro-magnetic waves
B09B 3/40 - Destroying solid waste or transforming solid waste into something useful or harmless involving thermal treatment, e.g. evaporation
B09B 3/70 - Chemical treatment, e.g. pH adjustment or oxidation
3.
ORGANIC WASTE RECYCLING DEVICE, AND RECYCLING METHOD THEREFOR
This organic waste recycling device comprises: a catalyst for promoting the carbonization of an organic waste targeted for waste disposal; a UV irradiation means for irradiating UV at a wavelength capable of breaking a bond in a molecule constituting the organic waste; a processing target housing means whereof the interior space houses the catalyst; a heating means provided in the interior space; and a stirring means provided in the interior space. The organic waste is one that has undergone crushing into small pieces. The processing target housing means is such that the catalyst and the organic waste that has been UV-irradiated by the UV irradiation means and introduced into the interior space are in contact with one another and stirrable in this state by the stirring means.
B09B 3/00 - Destroying solid waste or transforming solid waste into something useful or harmless
C08J 11/12 - Recovery or working-up of waste materials of polymers by chemically breaking down the molecular chains of polymers or breaking of crosslinks, e.g. devulcanisation by dry-heat treatment only
C08J 11/16 - Recovery or working-up of waste materials of polymers by chemically breaking down the molecular chains of polymers or breaking of crosslinks, e.g. devulcanisation by treatment with inorganic material
C10B 47/32 - Other processes in ovens with mechanical conveying means
4.
LAMINATED SHEET FOR FORMWORK, AND FORMWORK ATTACHED THEREWITH
[Problem] To provide a laminated sheet which is for a concrete formwork, has excellent water absorption and water drainage properties, and can make the surface of deposited concrete smooth and flat without pinholes, pockmarks etc. [Solution] Provided is a laminated sheet 10 for a concrete formwork in which a surface layer 10a in contact with deposited concrete, and a back layer 10b as a drainage layer are laminated by thermocompression bonding, wherein the surface layer is a non-woven fabric sheet composed of only sheath-core-type fibers having a hydrophilic agent in the gaps between the fibers. Also provided is a formwork which is for depositing concrete, in which the laminated sheet for a concrete formwork is attached to a formwork 30, a surface layer is a non-woven fabric sheet composed of only sheath-core-type fibers having a hydrophilic agent in the gaps between the fibers, and the surface layer is attached to a formwork such that the surface layer abuts the surface of concrete to be deposited.
E04G 9/10 - Forming or shuttering elements for general use with additional peculiarities such as surface shaping, insulating or heating, permeability to water or air
Provided is a rudder arrangement structure for a ship, whereby both maneuvering performance and propelling performance can be achieved while simplifying a stern arrangement by reducing the chord length of a rudder. A rudder arrangement structure for a ship having one propeller and multiple rudders, wherein rotary shafts for the multiple rudders are disposed with left-right asymmetry within the propeller area, and the multiple rudders are arranged with left-right asymmetry within the propeller area. For a ship having one propeller 1 and two rudders 10, 11, rotary shaft A10 for one of the two rudders 10 is disposed at the center of the propeller rotation plane 3, and rotary shaft A11 for the other rudder 11 is disposed within the propeller area 3 and on the side (starboard S side) where the propeller 1 rotates downward.
The purpose of the present invention is to provide a wavy sheet having excellent air permeability and excellent safety during construction work, and a method for producing said wavy sheet. A long meshed sheet (20) having meshes is wound around the outer circumference of a first toothed roller (31), and is then meshed between the first toothed roller (31) and a second toothed roller (32) and is made into a wavy sheet (10) having mountain-fold sections (11) and valley-fold sections (12) formed in said meshed sheet (20). The area of each of penetrating sections (21) in the mountain-fold sections (11) and the valley-fold sections (12) of the formed wavy sheet (10) is enlarged by folding the sheet at mountain sections and corresponding valley sections of the toothed rollers (31, 32). Projections (13) are formed in the longitudinal direction of the wavy sheet (10) by fitting the wavy sheet (10) into roller encircling grooves (32a) that are provided in the outer circumference of the second toothed roller (32) so as to encircle the same in a plane perpendicular to the axial direction of the roller.
B32B 3/28 - Layered products comprising a layer with external or internal discontinuities or unevennesses, or a layer of non-planar shapeLayered products comprising a layer having particular features of form characterised by a particular shape of the outline of the cross-section of a continuous layerLayered products comprising a layer with external or internal discontinuities or unevennesses, or a layer of non-planar shapeLayered products comprising a layer having particular features of form characterised by a layer with cavities or internal voids characterised by a layer comprising a deformed thin sheet, e.g. corrugated, crumpled
Provided is a method for manufacturing a dried combustible substance, the method being characterized by comprising: a mixing step (S1) in which a mixture (3) is formed by mixing numerous particulate bodies that contain water and are made of a combustible substance (1) and a dewatering fluid (2) made of an emulsion that contains a synthetic resin, and the dewatering fluid (2) is brought into contact with the surfaces of the particulate bodies in the mixture (3); and a drying step (S3) in which coated particulate bodies, which comprise particulate bodies with reduced water content and a synthetic resin film coating the surface of the particulate bodies, are formed by forming the synthetic resin film formed by drying the dewatering fluid (2) on the surface of the particulate bodies and allowing the water content of the particulate bodies to evaporate, and in which a dried combustible substance (31) comprising the coated particulate bodies is obtained.
A method for manufacturing dried combustible material includes: a mixing step of mixing a number of particles made of combustible material containing moisture and a dehydrating liquid made of an emulsion containing synthetic resin to form a mixture in which surfaces of the particles are made contact with the dehydrating liquid; and a drying step of forming a synthetic resin coating made of the dehydrating liquid dried on the surfaces of the particles and evaporating the moisture of the particles, to form coated particles including the particles having a reduced moisture content percentage and the synthetic resin coating that covers the surfaces of the particles, and produce dried combustible material made up of the coated particles.
Provided is a punching device for accurately forming punch holes in sheet members as well as for facilitating peeling and removal of punched chips after punching, particularly when punching thin sheet members. When forming punch holes by bringing the tips of multiple punching members (13), the base ends of which are disposed on a punching assembly (12) and are supported to face a liner tray (11), into contact with a sheet member (S) supplied on the liner tray, the punching device is configured so that: an elastic member (17) enclosing the periphery of the punching members is pressed against the supplied sheet member to immobilize the sheet member on the liner tray; the punching assembly is lowered further to form punch holes (A) in the sheet member; and after the punched chips (K) punched from the sheet member are suctioned and removed from inside the pipes of the punching members, the punching assembly is raised; the sheet member that was immobilized on the liner tray by the elastic member is released; and the sheet member in which punch holes have been formed is conveyed from the liner tray by a sheet member conveying unit (20).
B26D 7/18 - Means for removing cut-out material or waste
B26D 5/26 - Arrangements for operating and controlling machines or devices for cutting, cutting-out, stamping-out, punching, perforating, or severing by means other than cutting with interrelated action between the cutting member and work feed wherein control means on the work feed means renders the cutting member operative
Provided is a method for producing an elongate material such that an embossed pattern is formed on the surface of the elongate material by passing the elongate material between a heated embossing roll and a receiving roll, and pressing projections protruding from a base surface of the embossing roll onto the elongate material. When the elongate material passes through the embossing roll, the base surface of the embossing roll is kept from contacting the surface of the elongate material, thus enabling an embossed pattern to be efficiently formed on a sheet cloth surface without defects caused by contact with the high temperature heated roll.
A wooden frame structure, wherein reassembly, replacement, and addition of frames and frame panels constituting the frames can be made at high degree of freedom. Linear members (21) are joined to each other by joint fittings (31) each having joint surfaces (32) to which end surfaces (22) of the linear members (21) can be joined, each adapted to be provided between the linear members (21), and each integrating, without contact, the linear members (21) with each other at the end surfaces thereof in the longitudinal direction in such a manner that the linear members (21) project toward each other. Frame panels (longitudinal frame panels (12, 13), transverse frame panels (14, 15)) are formed by joining the linear members (21) to each other by the joint fittings (31) and fixing surface members (41) onto the linear members (21). Frames are formed by separably joining the frame panels to each other using the joint fittings (31).
E04B 1/348 - Structures composed of units comprising at least considerable parts of two sides of a room, e.g. box-like or cell-like units closed or in skeleton form
E04B 1/26 - Structures comprising elongated load-supporting parts, e.g. columns, girders, skeletons the supporting parts consisting of wood