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    • 61. 发明申请
    • Method for manufacturing composite shoe insole
    • 复合鞋垫制造方法
    • US20070126146A1
    • 2007-06-07
    • US11294594
    • 2005-12-05
    • Kuo-Nan Yang
    • Kuo-Nan Yang
    • B29C41/22B29C41/42
    • B29C39/10A43B13/16B29C37/0078B29C70/745B29D35/122
    • A method for manufacturing a composite shoe insole includes a) placing EVA material having at least one bonding zone into a die, b) applying a PU film around a peripheral wall of the bonding zone of the EVA material, c) heating the EVA material, d) placing PU material at a liquid state into the bonding zone, e) solidifying the PU material so that the PU material is combined with the bonding zone to form a shoe insole, and f) stripping the shoe insole from the die to remove the shoe insole. Thus, the composite shoe insole closely combine the EVA material with the PU material, so that the composite shoe insole has a lighter weight by the EVA material and has a soft elastic feature by the PU material.
    • 一种制造复合鞋内底的方法包括:a)将具有至少一个粘合区的EVA材料放入模具中,b)在EVA材料的接合区的周壁周围施加PU膜,c)加热EVA材料, d)将PU材料以液体状态放置到粘合区域中,e)固化PU材料,使得PU材料与粘合区域结合以形成鞋内底,以及f)从模具剥离鞋垫以除去 鞋垫。 因此,复合鞋内底将EVA材料与PU材料紧密结合,使得复合鞋内底由EVA材料具有较轻的重量,并且由PU材料具有柔软的弹性特征。
    • 64. 发明申请
    • Reinforcement system utilizing a hollow carrier
    • 利用中空载体的增强系统
    • US20030184121A1
    • 2003-10-02
    • US10423801
    • 2003-04-25
    • L&L Products, Inc.
    • Michael J. CzaplickiJon Riley
    • B32B005/20B32B005/18
    • B62D29/002B29C44/18B29C70/745B62D29/04
    • A system and method for reinforcing at least a portion of a structural member, including at least one hollow carrier, having an exterior shell and an interior portion, which substantially conforms to the dimensions and geometry of the structural member being reinforced; and a lightweight, low density material for filling the interior portion of one or more of the carriers. The material filling one or more of the carriers of the present invention can be a reinforcement material, self-curing material, or a heat activated expandable material. The carrier can be produced by blow molding or rotational molding and has an adhesive material disposed along at least a portion of the exterior shell used to place, adhere, and affix the carrier to a targeted portion of the structural member selected to be structurally reinforced.
    • 一种用于加强包括至少一个中空载体的结构构件的至少一部分的系统和方法,所述至少一个中空载体具有外壳和内部部分,其基本上符合被加固的结构构件的尺寸和几何形状; 以及用于填充一个或多个载体的内部的轻质,低密度材料。 填充本发明的一个或多个载体的材料可以是增强材料,自固化材料或热活化的可膨胀材料。 载体可以通过吹塑或旋转模塑制造,并且具有沿着外壳的至少一部分设置的粘合材料,其用于将载体放置,粘附并固定到被选择为结构增强的结构构件的目标部分。