ALMOHADA DE SOPORTE FORMADA CON MULTIPLES CAPAS.

    公开(公告)号:MX9704571A

    公开(公告)日:1997-10-31

    申请号:MX9704571

    申请日:1995-12-22

    Inventor: WAGNER ROBERT F

    Abstract: La presente invencion se refiere a una almohada de soporte laminada e incluye capas de material que tiene diferentes densidades en el cual se forman huecos que se extienden a través de por lo menos secciones transversales parciales de por lo menos dos capas adyacentes para formar zonas de la almohada que tienen diferentes características de soporte determinadas por la colocacion y la extension de las cavidades en las capas laminadas. La laminacion de una capa de material de alta densidad en la parte superior de una capa de material de relativamente baja densidad produce una almohada relativamente firme, la cual tiene diferentes grados de firmeza dependiente de la colocacion y extension de las cavidades. La almohada puede ser cortada para conformarse a los tamaños convencionales del colchon, y las zonas formadas en las áreas de la almohada que corresponden a los requerimientos de soporte de peso para el soporte optimo del cuerpo humano en posicion prona.

    LAYER STRUCTURE
    2.
    发明申请
    LAYER STRUCTURE 审中-公开
    层结构

    公开(公告)号:WO1994017994A1

    公开(公告)日:1994-08-18

    申请号:PCT/FI1993000118

    申请日:1993-03-23

    Inventor: PARMA OY

    Abstract: In this publication a layer structure is described that can be used for manufacturing doors, walls of the cabin elements, and other analogous products of ships and offshore constructions. The layer comprises metal plate (3) that is attached by gluing to the layer of desired coating material (1). A fireproof glue is used. The invention is based on making holes (5) into the metal plate (3) forming the frame of the structure through which the gases evolving during hardening of glue (2) can flow out from between plates (1, 3) and do not detach the plates (1, 3) from each other.

    Abstract translation: 在本出版物中,描述了可用于制造门,客舱元件的壁和船舶和海上结构的其他类似产品的层结构。 该层包括通过粘合到所需涂层材料(1)的层上而附着的金属板(3)。 使用防火胶。 本发明基于在金属板(3)中形成孔(5),形成结构的框架,通过该结构的框架,在胶(2)的硬化期间放出的气体可以从板(1)流出并且不分离 板(1,3)彼此。

    PRESSURE TOLERANT FUEL TANK PANELS
    3.
    发明申请
    PRESSURE TOLERANT FUEL TANK PANELS 审中-公开
    压力容器燃油面板

    公开(公告)号:WO1994016882A1

    公开(公告)日:1994-08-04

    申请号:PCT/US1993012681

    申请日:1993-12-30

    Abstract: A pressure tolerant composite panel has an inner fiber reinforced layer, an outer fiber reinforced layer and a core disposed therebetween. In one embodiment of the invention, the inner layer (25) has weakening structures (30) incorporated at the peripheral edges thereof, and has an outer layer (26) of a different and lower modulus of elasticity than the inner layer to provide some degree of elongation. When high internal forces are encountered, the weakening structures allow the inner layer to separate, with the outer layers stretching to absorb the forces without failure. Optionally, strengthening straps (28, 29) are positioned about the panel such that it is compartmentalized into discrete sections to contain damage in localized areas. In an alternative embodiment of the invention, the inner core (27) is produced of a crushable material which has a yield strength sufficient to provide structural support under normal operating conditions. When a high pressure is encountered which exceeds the yield limit, the core is crushed to prevent force transmission to the outer layer. Such a composite panel assures survivability of the panel when subjected to impact damage.

    Abstract translation: 耐压复合板具有内纤维增强层,外纤维增强层和设置在其间的芯。 在本发明的一个实施例中,内层(25)具有结合在其外围边缘处的弱化结构(30),并且具有与内层不同的和较低的弹性模量的外层(26),以提供一定的程度 的伸长率。 当遇到高内力时,弱化结构允许内层分离,外层伸展以吸收力而不发生故障。 可选地,加强带(28,29)围绕面板定位,使得其被划分成离散部分以在局部区域中包含损伤。 在本发明的替代实施例中,内芯(27)由可压碎材料制成,其具有足以在正常操作条件下提供结构支撑的屈服强度。 当遇到超过屈服极限的高压时,芯被压碎以防止力传递到外层。 这样的复合板在受到冲击损坏时确保了板的生存性。

    CARPET CUSHION WITH ADHESIVE
    7.
    发明申请
    CARPET CUSHION WITH ADHESIVE 审中-公开
    地毯与粘合剂

    公开(公告)号:WO1991009725A1

    公开(公告)日:1991-07-11

    申请号:PCT/US1990007648

    申请日:1990-12-26

    Abstract: A carpet cushion (10) of compressible materials (24) such as urethane foam, natural fibers or felt material has a pressure sensitive adhesive (12) pre-coated on only one side (14), preferably the side which will be adhered down to a floor. A scrim webbing or other spacer element (18) is laid into the pressure sensitive adhesive after the adhesive has been applied. The spacer element enables the movement of the carpet cushion around on the floor for positioning prior to sticking down to the floor, and when the cushion is rolled for storage and shipment, the spacer element enables the cushion to be rolled without any release film between the rolled layers. In the rolled form of the cushion, the spacer element or scrim webbing prevents the adhesive from strongly adhering to the adjacent opposite surface of the cushion in roll.

    Abstract translation: 如聚氨酯泡沫,天然纤维或毛毡材料的可压缩材料(24)的地垫(10)具有仅在一侧(14)上预涂覆的压敏粘合剂(12),优选地将粘合到 一楼 在施加粘合剂之后,将松紧带织带或其他间隔元件(18)铺设在压敏粘合剂中。 间隔元件能够使地毯垫在地板上移动,以便在粘贴到地板之前进行定位,并且当衬垫被卷起以进行储存和运输时,间隔元件使得衬垫能够滚动而没有任何释放膜 卷层。 在衬垫的卷绕形式中,间隔元件或织物织带防止粘合剂牢固地附着在衬垫的相邻相对表面上。

    COATING PROCESS FOR MAKING NON-IRIDESCENT GLASS STRUCTURE
    8.
    发明申请
    COATING PROCESS FOR MAKING NON-IRIDESCENT GLASS STRUCTURE 审中-公开
    用于制造非透明玻璃结构的涂层工艺

    公开(公告)号:WO1985000555A1

    公开(公告)日:1985-02-14

    申请号:PCT/US1984001025

    申请日:1984-06-27

    CPC classification number: C03C17/3417 C03C17/3435

    Abstract: Novel method of coating a substrate, e.g., a transparent glass substrate (64), with a very thin inorganic coating of predetermined varying composition, e.g. an electrically-conductive tin oxide coating (62). The coating is carried out in such a way that quality control problems associated with leakage of the coating reactants from the reaction zone (16) are virtually eliminated. The resulting coating (60, 62) can exhibit excellent non-iridescent properties even at thicknesses well below on micrometer.

    Abstract translation: 用非常薄的预定变化组成的无机涂层例如透明玻璃基底(64)涂覆基底的新方法,例如。 导电氧化锡涂层(62)。 涂层以这样的方式进行,从而实质上消除了与反应区(16)的涂层反应物的泄漏相关的质量控制问题。 所得到的涂层(60,62)即使在远低于千分尺的厚度下也能表现出优异的非虹彩性。

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