Abstract:
644,858. Compound sheet materials. BOSTON WOVEN HOSE & RUBBER CO. Oct. 4, 1946, No. 29615. Convention date, March 4, 1944. [Class 140] Two or more strips of thermoplastic material are laminated together by applying them under pressure on to an endless moving metal belt heated to a temperature at which the thermoplastic material adheres, heating the thermoplastic material while subjected to pressure to a non-decomposing, strain-relieving temperature above the heat-forming temperature, cooling the unitary laminated sheet to a non-adherent condition, and then stripping it from the belt. An endless pad of rubbercoated fabric may be interposed between the metal belt or the pressure - applying device and the thermoplastic material. As shown, strips 28 of thermoplastic material are fed to the bite between a heated drum 10 and an endless metal band 12 which presses the strips 28 against a substantial arcuate portion of the drum and also passes around rollers 14, 15 and 16. The metal band is heated by a heating jacket 22 and roller 16 may also be heated. From the drum 10 the united layers adhering to the steel band 12 are carried around roller 14 which is cooled and beneath a cooling jacket 24. Further cooling of the band 12 and the adhering thermoplastic strip may be effected by a water-circulating jacket 26. The thermoplastic strip, which becomes non-adherent on cooling, is stripped from the belt 12 and wound up into a roll 38. A second metal band 30 supported on rollers 32 and 34 may be provided to contact the other side of the thermoplastic material. The thermoplastic material may be vinyl chloride polymerized by itself, with vinyl acetate or vinylidene chloride, or a polyvinyl acetal. Specification 473,899 is referred to.
Abstract:
A nonwoven composite felt that is a dissipative acoustic insulation material that may be molded inside molds featuring high draw mold areas into acoustically insulating pads or sheets that provide good sound dampening characteristics and have no tears of thinning in the high draw areas.
Abstract:
In one or more aspects of the present disclosure, a mandrel is disclosed. The mandrel having a shape memory alloy (SMA) shell having a longitudinal axis, an interior extending along the longitudinal axis and an exterior contour, the SMA shell being configured to interface with a structure to be cured, and at least one SMA actuation member disposed within the interior and connected to the SMA shell, where the at least one SMA actuation member is configured to exert pressure against the SMA shell effecting an interface pressure between the exterior contour of the SMA shell and the structure to be cured where the exterior contour has a predetermined actuated shape that corresponds to a predetermined cured shape of the structure to be cured.
Abstract:
An article having an inner article layer and an outer article layer to be worn by a mammal comprising a thermally insulating layer of a reflective metalized polymeric insulation material having moisture vapour transference properties adjacent to at least one of the inner and outer article layers. An apparatus and method for producing a reflective metalized polymeric thermally insulating assembly having moisture vapour transference properties suitable for use in the article is also provided. The insulation material provides enhanced thermal retention.
Abstract:
A device for punching labels from a substrate web having a carrier layer and a label layer includes a punching installation for punching labels. The punching installation has a delaminating installation for separating the label layer from the carrier layer, a metallic non-suction revolving counterpunching belt for conveying the label layer during a punching operation, and a relaminating installation for reconnecting the label layer, provided with punchings, to the carrier layer. A method for punching self-adhesive labels is also provided. In this way, a thin carrier layer can be used, and it is ensured that the carrier layer is not damaged during punching.
Abstract:
A device for punching labels from a substrate web having a carrier layer and a label layer includes a punching installation for punching labels. The punching installation has a delaminating installation for separating the label layer from the carrier layer, a metallic non-suction revolving counterpunching belt for conveying the label layer during a punching operation, and a relaminating installation for reconnecting the label layer, provided with punchings, to the carrier layer. A method for punching self-adhesive labels is also provided. In this way, a thin carrier layer can be used, and it is ensured that the carrier layer is not damaged during punching.
Abstract:
The invention relates to an arrangement for producing a corrugated board web. The arrangement comprises corrugating rollers to produce a corrugated web. It also has a glue application mechanism and a pressure belt module, which comprises a deflection roller with a deflection roller longitudinal centre axis, a belt tensioning and belt running regulating roller with a belt tensioning and belt running regulating roller longitudinal centre axis and a pressure belt, which is guided about the deflection roller and the belt tensioning and belt running regulating roller, to press a cover web onto the corrugated web provided with glue. The arrangement also comprises a belt tensioning and belt running regulating roller adjustment device with a belt tensioning adjustment mechanism for tensioning the pressure belt by uniformly changing the spacing of the belt tensioning and belt running regulating roller longitudinal centre axis from the deflection roller longitudinal centre axis and a belt running regulating adjustment mechanism to adjust the course of the pressure belt by tilting the belt tensioning and belt running regulating roller longitudinal centre axis. Furthermore, the arrangement has an adjusting device to adjust the belt tensioning and belt running regulating roller depending on regulating signals.
Abstract:
A method for folding a fastener during a high speed manufacturing process and maintaining the fastener in a folded configuration throughout the high speed manufacturing process. The method includes obtaining an article that has a foldable fastener and moving the article in the machine direction during the high speed manufacturing process. The foldable fastener has first and second opposing surfaces, a web and at least one engaging member joined to the web. The method includes applying a frangible bonding agent to a first portion of the first surface of the fastening system; folding the fastening system such that the frangible bonding agent contacts a second portion of the first surface of the fastening system; and allowing the frangible bonding agent to cool at a temperature of less than 60° C.
Abstract:
The invention provides a method of producing a recording medium, the method having: providing a support, the support having: a resin layer having a polyolefin resin and provided on one side or both sides of a base paper; and a latex-containing layer formed by applying at least a latex on the resin layer; subjecting a latex-containing layer-side surface of the support to a cooling-separation treatment using a cooling-separation belt-fixing smoother apparatus, the apparatus having a heating and pressurizing unit, the unit having a belt member, and the cooling-separation treatment having separating the latex-containing layer-side surface of the support from the belt member; and forming an image recording layer on the latex-containing layer-side surface of the support which has been subjected to the cooling-separation treatment.
Abstract:
There is provided a device for bonding ceramic structural bodies. In the state in which a set of ceramic structural bodies provided with a bonding agent between bonding surfaces and provided with elastic sleeves disposed on a peripheral surface of the set of the structural bodies are placed in a tubular container with an elastic sheet disposed between the elastic sleeves and the tubular container, the device is able to charge a hydrostatic pressure medium between the tubular container and the elastic sheet to press and bond the structural bodies. By bonding the ceramic structural bodies with the device, it may provide accurate positioning of the bonding surfaces. It may also provide a uniform distance between bonded surfaces, and reduce the number of bonding operations, thereby affording an excellent working efficiency.