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    • 1. 发明授权
    • Non-abrasive skin friendly mechanical fastening system
    • 非磨蚀性皮肤友好的机械紧固系统
    • US5392498A
    • 1995-02-28
    • US988636
    • 1992-12-10
    • David J. K. GoulaitDennis A. Thomas
    • David J. K. GoulaitDennis A. Thomas
    • A44B18/00A61F13/62
    • A44B18/0049A61F13/625Y10T24/2742Y10T24/2775Y10T24/2792
    • The invention is a hook fastening material for use with a complementary loop fastening material, which hook fastening material has from about 1600 to about 2500 prongs per square inch and is substantially non-abrasive and non-irritating to human skin. In one embodiment the hook fastening material has prongs with an engaging means at an angle of about 90.degree. to about 160.degree. relative to the extension of the perpendicular to the plane of the substrate. In another embodiment the hook fastening material is formed on a compressible substrate. In still another embodiment the hook fastening material has prongs made of an ethylene vinyl acetate based polymer or a polyethylene based polymer. Methods for making such hook fastening materials and articles of use are also disclosed.
    • 本发明是与互补环紧固材料一起使用的钩紧固材料,该钩紧固材料具有约1600至约2500个叉/平方英寸,并且对人体皮肤基本上是非磨蚀性且不刺激的。 在一个实施例中,钩紧固材料具有相对于垂直于衬底平面的延伸约90度至约160度角的接合装置的插脚。 在另一个实施例中,钩紧固材料形成在可压缩基底上。 在另一个实施例中,钩紧固材料具有由乙烯 - 乙酸乙烯酯基聚合物或聚乙烯基聚合物制成的尖头。 还公开了制造这种钩紧固材料和使用制品的方法。
    • 6. 发明授权
    • Refastenable mechanical fastening system having particular viscosity and
rheology characteristics
    • 具有特定粘度和流变特性的可重新紧固的机械紧固系统
    • US5325569A
    • 1994-07-05
    • US969604
    • 1992-10-30
    • David J. K. GoulaitDennis A. Thomas
    • David J. K. GoulaitDennis A. Thomas
    • A44B18/00B29C43/22
    • A44B18/0049B29C43/222B29L2031/729Y10T24/2758Y10T24/2775Y10T24/2792
    • A process for making a refastenable mechanical fastening system comprising the steps of providing a depositing member having at least one aperture having a diameter of between about 0.008 inches to about 0.040 inches; providing a molten thermally sensitive material having a storage modulus less than about 5000 dynes/centimeter.sup.2 at the application temperature and a storage modulus of at least about 1.times.10.sup.6 dynes/centimeter.sup.2 at a temperature no more than 40.degree. Celsius less than the application temperature; providing a substrate; forcing the molten thermally sensitive material through the aperture; depositing a discrete amount of the molten thermally sensitive material from the aperture onto the substrate; stretching a portion of the discrete amount of the molten thermally sensitive material in a direction having a vector component parallel to the plane of the substrate so as to form a prong; and solidifying the molten thermally sensitive material of the prong, the prong having a base, a shank, and an engaging means, the engaging means forming an included angle of at least 180.degree..
    • 一种用于制造可重复连续的机械紧固系统的方法,包括以下步骤:提供具有至少一个直径在约0.008英寸至约0.040英寸之间的孔的沉积构件; 提供在施用温度下具有小于约5000达因/厘米2的储能模量的熔融热敏材料,并且在不超过40℃的温度下小于施加温度的储能模量为至少约1×10 6达因/厘米2; 提供衬底; 迫使熔融的热敏材料通过该孔; 将来自孔的离散量的熔融热敏材料沉积到衬底上; 在具有平行于基板的平面的矢量分量的方向上拉伸一部分熔融热敏材料的离散量以形成尖头; 并且固定分叉的熔融热敏材料,该尖头具有基部,柄部和接合装置,该接合装置形成至少180°的夹角。
    • 8. 发明授权
    • Process for producing a mechanical fastener
    • 制造机械紧固件的工艺
    • US5116563A
    • 1992-05-26
    • US546198
    • 1990-06-28
    • Dennis A. ThomasDavid J. K. Goulait
    • Dennis A. ThomasDavid J. K. Goulait
    • A44B18/00B29C43/22
    • B29C43/222A44B18/0049B29L2031/729Y10T24/27
    • An improved process for forming a mechanical fastening prong and the prongs produced thereby. The prongs are produced by deposition of a heated, thermally sensitive material onto a substrate, which is transported at a differential velocity relative to the heated material being deposited to form the prongs. Also, the transported substrate may be drawn away from the point of deposition at an angle. By varying the velocity differential between the substrate and the heated, thermally sensitive material as it is deposited and by varying the angle between the substrate and the point of deposition of the heated thermally sensitive material, the fastening characteristics, particularly the shear strength, of the fastening system formed of these prongs may be advantageously modified.
    • 一种用于形成机械紧固插脚和由此产生的插脚的改进方法。 尖头是通过将加热的热敏材料沉积在基底上产生的,该基底以相对于被沉积以形成尖头的被加热材料的差速运送。 此外,运输的基板可以以一定角度从沉积点拉开。 通过改变衬底和加热的热敏材料沉积之间的速度差异,并且通过改变衬底与被加热的热敏材料的沉积点之间的角度,可以改变衬底和加热的热敏材料的紧固特性,特别是剪切强度 可以有利地改进由这些插脚形成的紧固系统。
    • 10. 发明授权
    • Vacuum insulated sorbent-driven refrigeration device
    • 真空绝缘吸附剂驱动制冷装置
    • US5197302A
    • 1993-03-30
    • US639036
    • 1991-01-08
    • Cullen M. SabinDennis A. ThomasGary V. Steidl
    • Cullen M. SabinDennis A. ThomasGary V. Steidl
    • F25B17/08F25B39/02F25D5/00
    • F25B39/026F25B17/08F25D5/00
    • Disclosed is a self-contained, rapid cooling device that retains heat produced from the cooling process and can be stored for indefinite periods without losing its cooling potential. A liquid in a first chamber undergoes a change of phase into vapor which cools the first chamber. A second chamber forms a vacuum insulation about a third chamber which contains a sorbent. The sorbent in the third chamber is in fluid communication with the vapor and removes the vapor from the first chamber. The device is self-contained because a material in contact with the sorbent removes the heat from the sorbent to prevent the reduction in the cooling effect produced by the first chamber. In addition, a vacuum insulation about the third chamber keeps the heated sorbent from diminishing that cooling effect.
    • 公开了一种独立的快速冷却装置,其保持从冷却过程产生的热量,并且可以无限期地储存而不会失去其冷却潜力。 第一室中的液体经历将相变为蒸发第一室的蒸汽。 第二室围绕包含吸附剂的第三室形成真空绝热。 第三室中的吸附剂与蒸汽流体连通,并从第一室中除去蒸汽。 该装置是独立的,因为与吸附剂接触的材料从吸附剂中除去热量,以防止由第一室产生的冷却效果的降低。 此外,关于第三室的真空绝热使得加热的吸附剂不会降低该冷却效果。