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    • 51. 发明申请
    • METHOD OF DEFORMING A MICROCELLULAR POLYURETHANE COMPONENT
    • 改变微晶聚氨酯组分的方法
    • US20080012178A1
    • 2008-01-17
    • US11457835
    • 2006-07-17
    • Daniel G. DicksonGary M. Lawrence
    • Daniel G. DicksonGary M. Lawrence
    • B29C43/02
    • B29C43/027B29C43/021B29C2043/3613B29K2105/0002B29K2105/04B29L2031/3044B29L2031/7096B29L2031/721B29L2031/7742
    • A method of deforming a component includes the step of forming the component from thermosetting, elastomeric microcellular polyurethane. The method further includes the step of heating at least a first portion of the component to a first temperature. The method further includes the step of compressing the first portion of the component while maintaining the first portion at the first temperature and while maintaining the second portion of the component at an undeformable state. The method of deforming the component shapes the first portion of the component. Preferably the method shapes the first portion of the component into a thin and/or complexly shape. The method of deforming the component also increases the first portion of the component relative to the second portion of the component, i.e. to densifying the component such that the component has varying density.
    • 组分变形的方法包括从热固性弹性体微孔聚氨酯形成组分的步骤。 该方法还包括将组件的至少第一部分加热到第一温度的步骤。 该方法还包括在将第一部分保持在第一温度并同时保持部件的第二部分处于不可变形状态的同时压缩部件的第一部分的步骤。 组件变形的方法使组件的第一部分成形。 优选地,该方法将部件的第一部分形成为薄的和/或复杂的形状。 使部件变形的方法还增加了部件相对于部件的第二部分的第一部分,即增加部件的密度,使得部件具有变化的密度。
    • 52. 发明申请
    • Apparatus for reshaping footwear and the method thereof
    • 用于整形鞋类的装置及其方法
    • US20070200264A1
    • 2007-08-30
    • US11710105
    • 2007-02-24
    • Paul J. PrutzmanCullen L. Speakman
    • Paul J. PrutzmanCullen L. Speakman
    • B29C43/02B29C43/52B29C43/58A43D11/00
    • A43B5/0415A43B5/0435A43D3/08A43D95/10B29C33/30B29C43/02B29C43/52B29C2043/3613B29C2043/3639
    • The present invention is directed to apparatus and a method for reshaping a footwear shell, the apparatus includes a support structure, a drive mechanism and external mold arrangement that drives the external mold toward or away from the shell being reshaped; and an internal mold assembly that includes an angled support arm having a first leg adapted to couple to one of a selection of couplings provided in the support structure and a second leg offset from the first leg at an angle θ. The internal mold assembly also includes an adapter that is rotatably fixed to the second leg of the angled support arm, and a static mold removably fixed to the adapter and coaxially aligned with a common axis extending through the external mold and static mold, the support arm angle θ provides an improved support shape that improves placement of the static mold within the footwear shell during reshaping.
    • 本发明涉及一种用于整形鞋类外壳的装置和方法,该装置包括支撑结构,驱动机构和外部模具装置,其将外部模具朝着或远离被重塑的壳体驱动; 以及内部模具组件,其包括成角度的支撑臂,所述支撑臂具有适于联接到设置在所述支撑结构中的联接器选择中的一个的第一腿部和以角度θ从所述第一腿部偏移的第二腿部。 内部模具组件还包括可旋转地固定到成角度的支撑臂的第二腿部的适配器,以及可移除地固定到适配器并与延伸穿过外部模具和静态模具的公共轴线同轴对准的静态模具,支撑臂 角度θ提供了改进的支撑形状,其改进了整形期间静态模具在鞋壳内的放置。
    • 54. 发明授权
    • Multi-point compression molding process
    • 多点压缩成型工艺
    • US06471902B1
    • 2002-10-29
    • US09471079
    • 1999-12-23
    • Matthew Snyder
    • Matthew Snyder
    • B29C3310
    • B29C33/10B29C43/361B29C2043/3613B29C2043/3615B29C2043/3621B29C2043/5883
    • A multi-point thin portion compression molding method and apparatus in which a plurality of ultra thin portions can be formed by compression molding. Mold apparatuses are opened/close to each other to form a cavity space having a molded material therebetween, at least one movable telescopic member passes through one metal mold and protrudes toward the other metal mold, the central and outer periphery of the telescopic member are provided with vent portions, and recess portions are formed on the metal mold contacting the vent portions to allow molten resin to escape, and the recess portions adjust a pressure applied to the cavity space by the compressing operation of the telescopic member.
    • 一种多点薄型压缩成型方法和装置,其中可以通过压缩成型形成多个超薄部分。 模具装置彼此打开/关闭以形成其间具有模制材料的空腔,至少一个可移动伸缩构件穿过一个金属模具并向另一个金属模具突出,提供伸缩构件的中心和外周 具有通气部分,并且在与通气部分接触的金属模具上形成凹陷部分,以允许熔融树脂逸出,并且凹部通过伸缩构件的压缩操作来调节施加到空腔空间的压力。