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    • 1. 发明授权
    • Self-extinguishing blanket enclosed with plastic films
    • 自动灭菌包装用塑料薄膜
    • US5108821A
    • 1992-04-28
    • US477269
    • 1990-02-07
    • Michael J. DooleyEugene F. LopezRobert T. Zajdel
    • Michael J. DooleyEugene F. LopezRobert T. Zajdel
    • B32B17/02B32B17/10B32B27/04B64C1/00B64C1/38F16L59/02
    • B64C1/38B32B17/10Y10S428/902Y10S428/91Y10S428/92Y10S428/921Y10T428/237Y10T428/239Y10T428/24091Y10T428/24099Y10T428/24124Y10T428/24132Y10T428/24826Y10T428/24843Y10T428/24851Y10T428/24926Y10T428/31616Y10T428/31645Y10T442/674
    • A self-extinguishing blanket comprises an insulating layer of glass fiber strands which include air spaces within the layer. Each surface of the layer has a bi-directional strand reinforced plastic film which extends continuously along the surface for keeping moisture out of the layer. Each plastic film is attached to the associated surface of the insulation layer by non-contiguous, longitudinally and laterally spaced apart areas of a thermoplastic adhesive. The adhesive areas provide attachment between the strand reinforcement and the layer of glass fiber strands. Each area of adhesive attachment provides sufficient retention to prevent shifting of the film during the sewing together of peripheral edge portions of the sandwiched plastic films and inner insulation layer as required to produce a selected, peripheral configuration of a blanket package. Each area of adhesive attachment is however small enough to permit ready detachment of the strand reinforcement and associated film from the layer of glass fiber strands upon exposure to the heat of a flame. Each plastic film has a composition and embodies a stress condition which enables a portion of the plastic film, when subjected to a direct flame or to the heat developed by an adjacent flame, to soften, to pull apart, and to shrink and curl back and to continue to curl back sufficiently far so as to prevent heating of that portion of the plastic film to the ignition temperature. This blanket construction leaves only the non-flammable layer of glass fiber strands exposed to the heat of the flame, and the shrinking and curl back of the plastic film prevent both ignition of the plastic film and propagation of the flame through the plastic film.
    • 自熄灭的毯子包括玻璃纤维束的绝缘层,其包括层内的空气空间。 层的每个表面具有双向股线加强塑料膜,其沿着表面连续延伸以将水分保持在该层之外。 每个塑料膜通过热塑性粘合剂的不连续,纵向和横向间隔的区域连接到绝缘层的相关表面。 粘合剂区域提供在股线加强件和玻璃纤维束层之间的附接。 粘合剂附着的每个区域提供足够的保持以防止在夹持塑料膜和内绝缘层的周边边缘部分的缝合期间膜的移动,以产生毯子包装的选定的周边构造。 然而,粘合剂附着的每个区域足够小,以允许在暴露于火焰的热量时,将钢丝束加强件和相关薄膜从玻璃纤维丝束层准备好分离。 每个塑料薄膜都具有组成并且体现了一种应力状态,当受到直接火焰或相邻火焰展开的热量时,塑料薄膜的一部分能够软化,拉开和收缩并卷曲, 继续卷曲得足够远,以防止塑料薄膜的那部分加热到点火温度。 这种毯子结构仅留下暴露于火焰热的玻璃纤维束的不可燃层,并且塑料膜的收缩和卷曲防止塑料膜的点燃和火焰通过塑料膜的传播。
    • 6. 发明授权
    • Dimensionally stable reinforced film
    • 尺寸稳定的增强膜
    • US5236761A
    • 1993-08-17
    • US756464
    • 1991-09-09
    • T. Kregg Cammack, IIEugene F. Lopez
    • T. Kregg Cammack, IIEugene F. Lopez
    • B29C70/08B29C70/22B32B5/08
    • B29C70/22B29C70/086B32B5/08B29K2277/00Y10T428/24058Y10T428/24074Y10T428/24083Y10T428/24091Y10T428/28Y10T428/2813Y10T428/2848Y10T428/2852
    • The invention provides a substantially flat film or metallized film, reinforced with regularly spaced reinforcing yarns in the fill and warp direction having a residual shrinkage of less than about 2.0%, which is dimensionally stable over a wide range of temperatures, along with a process for producing the same. Synthetic reinforcing yarns, including nylon yarns, can be preshrunk by heating the spooled yarn in an inert atmosphere for a sufficient period of time to reduce the residual shrinkage in the spooled yarn to less than about 2.0%. This preshrunk yarn can then be bonded to a film or metallized film substrate using a wide variety of adhesives, including hot melt adhesives, or water-based adhesives cured by application of heat. Because the residual shrinkage in the reinforcing fibers has been reduced, subsequent application of heat during manufacturing processes, or in the use environment, will not produce the curling or puckering of the film or separation of the metal layer.
    • 本发明提供了基本上平坦的薄膜或金属化膜,其在填充和经向方向上以规则间隔的增强纱线增强,其残余收缩率小于约2.0%,其在宽的温度范围内尺寸稳定, 生产相同。 包括尼龙纱线在内的合成增强纱线可以通过在惰性气氛中加热缠绕纱线足够长的时间来预先缠绕,从而将缠绕纱线中的残余收缩率降至小于约2.0%。 然后可以使用各种各样的粘合剂(包括热熔粘合剂)或通过施加热固化的水性粘合剂将该预浸纱线粘合到膜或金属化膜基材上。 由于增强纤维中的残余收缩已经减少,在制造过程中或在使用环境中随后的加热不会产生膜的卷曲或起皱或金属层的分离。
    • 9. 发明授权
    • Adhesives and devices coated therewith
    • 粘合剂和涂覆的装置
    • US4507340A
    • 1985-03-26
    • US173946
    • 1980-07-31
    • James A. RindeEugene F. LopezLeon C. Glover
    • James A. RindeEugene F. LopezLeon C. Glover
    • B29C61/06C08G59/38C09J163/00F16L11/00
    • B29C61/0616C08G59/38C09J163/00Y10S138/01Y10S174/08Y10T428/1328Y10T428/31529
    • Novel curable adhesives are solid, substantially free of cross-linking and substantially tack-free at 25.degree. C.; remain substantially uncured when maintained for extended periods at 80.degree. C.; have an initial viscosity of 10.sup.3 to 10.sup.4 poise at 150.degree. C. and cure relatively slowly at 150.degree. C.; and cure rapidly at 200.degree. C. The adhesives preferably contain at least one epoxy resin, particularly an epoxy resin having a softening point of at least 50.degree. C. and an epoxy equivalent weight of at least 200 in combination with an epoxy resin which is liquid at 25.degree. C. or an elastomer or other compatible high molecular weight polymer. The adhesive preferably also contains a high temperature curing agent and preferably also a filler, which may be particulate or fibrous. The novel adhesives are particularly useful in combination with heat-recoverable devices, e.g. devices comprising components made of heat-recoverable metal.
    • 新型可固化粘合剂是固体,基本上不含交联并且在25℃基本上无粘性; 在80℃下长时间保持基本未固化; 在150℃下的初始粘度为103〜104泊,150℃下相对缓慢地固化。 并在200℃下快速固化。粘合剂优选含有至少一种环氧树脂,特别是软化点至少为50℃,环氧当量至少为200的环氧树脂与环氧树脂组合,其中环氧树脂是 25℃的液体或弹性体或其它相容的高分子量聚合物。 粘合剂优选还含有高温固化剂,优选还含有可以是颗粒状或纤维状的填料。 新型粘合剂特别适用于热可回收装置,例如, 装置包括由热可回收金属制成的部件。
    • 10. 发明授权
    • Heat-recoverable articles and their use
    • 热回收制品及其用途
    • US4251304A
    • 1981-02-17
    • US31388
    • 1979-04-19
    • Bruce D. CampbellEugene F. Lopez
    • Bruce D. CampbellEugene F. Lopez
    • B29C61/00H02G15/04H02G15/18B29C27/00B32B31/00
    • H02G15/1806B29C61/003H02G15/043B29K2023/00Y10S174/08Y10T428/1331
    • A method of making a composite structure comprising an elongate substrate, especially an insulated electrical cable, and a covering member which has been heat-recovered and sealed around the substrate. A heat-recoverable article of a cross-linked crystalline polymer composition which transmits 5-50% of infra-red radiation incident thereon is placed around a substrate whose exterior is composed of a polymeric composition which is at most lightly cross-linked, which absorbs infra-red radiation and which has a crystalline melting point below that of the heat-recoverable article. The assembly is exposed to infra-red radiation such that the heat-recoverable article is heated to its recovery temperature and the exterior of the substrate is heated to its crystalline melting point, preferably before it is contacted by said article as it recovers. In this way an excellent seal can be created between the substrate and the recovered article without the need for any auxiliary fusible material such as a hot melt adhesive.
    • 一种制造复合结构的方法,该复合结构包括细长衬底,特别是绝缘电缆,以及已被热回收并围绕衬底密封的覆盖构件。 将其中入射到其上的透射5-50%的红外辐射的交联结晶聚合物组合物的热可回收制品放置在其外部由至少轻度交联的聚合物组合物组成的基材周围,其吸收 红外辐射,其结晶熔点低于可热回收物品的熔点。 组件暴露于红外辐射,使得可热回收的制品被加热到其恢复温度,并且衬底的外部被加热到其结晶熔点,优选在所述制品恢复之前被所述制品接触之前。 以这种方式,可以在基材和回收制品之间产生良好的密封,而不需要任何辅助的易熔材料,例如热熔粘合剂。