Patent classifications
B32B2433/00
Hybrid fabric-laminated belt for elevator system
A traction-driven belt for moving a load includes a plurality of tension elements extending longitudinally along a length of the belt, and a plurality of yarns interlaced with the plurality of tension elements forming a composite belt structure. A laminate material layer is affixed to at least one surface of the composite belt structure to improve one or more performance properties of the composite belt structure. A belt for suspending and/or driving an elevator car includes a plurality of tension elements extending longitudinally along a length of the belt, and a plurality of yarns interlaced with the plurality of tension elements forming a composite belt structure. A sheath encloses at least one tension element of the plurality of tension elements. The sheath is formed from a flowable material to bind the tension element to the plurality of yarns, and/or adjacent tension elements.
INTERMEDIATE TRANSFER MEMBER AND METHOD OF PRODUCTION THEREOF
An intermediate transfer member for digital offset printing is described, comprising a UV cured silicone release formulation. There is also described a method of producing an intermediate transfer member, and a UV curable release formulation for an intermediate transfer member.
INTERMEDIATE TRANSFER MEMBER AND METHOD OF PRODUCTION THEREOF
An intermediate transfer member for digital offset printing is described, comprising a UV-A cured silicone release formulation. There is also described a method of producing an intermediate transfer member, and a UV-A curable silicone release formulation for an intermediate transfer member.
INTERMEDIATE TRANSFER MEMBER AND METHOD OF PRODUCTION
Herein is disclosed an intermediate transfer member for liquid electrophotographic printing. The intermediate transfer member comprises a silicone release layer bonded to a layer comprising a thermoplastic polyester polyurethane. A method of producing an intermediate transfer member is also described.
WRAPPABLE PROTECTIVE SLEEVE WITH CLOSURE AND LOCATING FEATURE AND METHODS OF CONSTRUCTION AND USE THEREOF
A wrappable protective sleeve for providing protection to at least one elongate member contained therein and methods of construction and use thereof are provided. The sleeve includes a flexible textile wall having opposite inner and outer faces bounded by opposite edges and opposite ends. The opposite edges extend generally parallel to one another between the opposite ends. A pair of adhesive layers is bonded to the inner face, with each of the adhesive layers being spaced from one another. The adhesive layers extend between the opposite ends adjacent the opposite edges. Further, a release paper is releasably adhered to the pair of adhesive layers for subsequent removal and use of the sleeve.
Belay Loop
A load bearing belay loop includes a load bearing inner structural ring that is formed by winding a single filament in many windings to form a coil, and an outer sheath made from a sheet material that is tubular in configuration and that is rolled axially to cover the ring. The outer sheath is not load bearing. The inner ring may be formed by winding a single filament in many windings to form a coil.
Friction transmission belt
A pulley contacting portion of a friction transmission belt is made of a rubber composition containing an EPDM mixture as a rubber component. The EPDM mixture as the rubber component includes a first EPDM with an ethylene content of 67% by mass or more and a second EPDM with an ethylene content of 57% by mass or less. A content of the second EPDM in the EPDM mixture is larger than a content of the first EPDM in the EPDM mixture. An average ethylene content of the EPDM mixture is 54% by mass or more and 59% by mass or less.
Friction Transmission Belt and Method for Producing Same
A frictional power transmission belt includes a tension layer forming a belt back surface, a compression rubber layer to be in contact with a pulley and frictionally engaged with the pulley, and a tension member embedded between the tension layer and the compression rubber layer along a belt length direction. The compression rubber layer has a surface to be in contact with the pulley. At least a part of the surface is coated with a fiber layer via a fiber/resin mixture layer. The fiber/resin mixture layer contains a resin component and heat-resistant fibers having a softening point or a melting point higher than a vulcanization temperature of a rubber forming the compression rubber layer. The fiber layer contains hydrophilic heat-resistant fibers having a softening point or a melting point higher than the vulcanization temperature and does not contain a resin component.
Wrappable protective sleeve with closure and locating feature and methods of construction and use thereof
A wrappable protective sleeve for providing protection to at least one elongate member contained therein and methods of construction and use thereof are provided. The sleeve includes a flexible textile wall having opposite inner and outer faces bounded by opposite edges and opposite ends. The opposite edges extend generally parallel to one another between the opposite ends. A pair of adhesive layers is bonded to the inner face, with each of the adhesive layers being spaced from one another. The adhesive layers extend between the opposite ends adjacent the opposite edges. Further, a release paper is releasably adhered to the pair of adhesive layers for subsequent removal and use of the sleeve.
Inflatable-Body Pull Belt Structure, Pull Belt, and Inflatable Product
Provided are inflatable-body pull belt structure and inflatable product. The inflatable-body pull belt structure includes annular belt body having hollow region, plural meshes all in communication with the hollow region are provided on the annular belt body, the annular belt body has first connecting end and second connecting end arranged in lengthwise direction of the hollow region, the plural meshes are located between the first connecting end and the second connecting end, which are both connected to the inflatable body. By providing the meshes on the annular belt body, the consumables are reduced, and the costs are reduced. Moreover, by providing the pull belt as combined structure constituted by the pvc membranes and the mesh sheets, the mesh sheets can increase the tensile strength, and the mesh sheets can reduce the consumables, thereby reducing the costs.