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    • 3. 发明申请
    • EXTRUSION DIE TENSION ADJUSTER AND METHOD OF USING SAME
    • 挤压成型机调节器及其使用方法
    • US20160271855A1
    • 2016-09-22
    • US14660386
    • 2015-03-17
    • Nordson Corporation
    • Michael K. Truscott
    • B29C47/16B23P15/24
    • B29C47/165B23P15/24B29C47/0021B29C47/0828B29C47/92B29C2947/92133B29C2947/92447B29C2947/92523
    • An extrusion die with fastener tension adjustment assembly can be formed of a die body that includes a first die body portion and a second die body portion. The extrusion die can have a lip body connected to one of the die body portions using the plurality of fasteners. In one configuration, the fastener tension adjustment assembly has an elongated body operatively connected to each of said plurality of fasteners. The fastener tension adjustment assembly is movable towards and away from the lip body, thereby simultaneously adjusting an amount of force applied to each of said plurality of fasteners. Because the fastener tension adjustment assembly can simultaneously adjust the amount of force on each of the plurality of fasteners, it can eliminate time consuming fastener-by-fastener adjustments on the extrusion die.
    • 具有紧固件张力调节组件的挤出模具可以由包括第一模具主体部分和第二模具主体部分的模具主体形成。 挤出模具可以具有使用多个紧固件连接到模具主体部分中的一个的唇体。 在一种构造中,紧固件张力调节组件具有可操作地连接到所述多个紧固件中的每一个的细长主体。 紧固件张力调节组件可朝向和远离唇体移动,从而同时调节施加到所述多个紧固件中的每一个的力的量。 因为紧固件张力调节组件可以同时调节多个紧固件中的每一个上的力的量,所以可以消除挤压模上的紧固件紧固件调整。
    • 4. 发明授权
    • Multi-laminated body manufacturing method and its manufacturing apparatus, and multi-laminated body
    • 多层体制造方法及其制造装置,多层叠体
    • US09381694B2
    • 2016-07-05
    • US13699928
    • 2011-05-16
    • Shimon KanaiToshiyuki ZentoKohta TomiyamaHiromichi Nakata
    • Shimon KanaiToshiyuki ZentoKohta TomiyamaHiromichi Nakata
    • B29C47/70B29C47/06B29C47/00B29C47/14B29C47/56B29C47/12B29L7/00B29L9/00B29L11/00
    • B29C47/065B29C47/0019B29C47/0021B29C47/062B29C47/128B29C47/145B29C47/56B29C47/70B29C47/702B29C47/707B29C2947/92104B29C2947/92152B29C2947/92171B29C2947/92447B29C2947/926B29C2947/92904B29L2007/008B29L2009/00B29L2011/00Y10T428/24174
    • A manufacturing method of a multi-laminated body according to the present invention includes a step 1 (L-flow path) for vertically dividing a laminated flow obtained by arranging at least two molten resins adjacent to each other in a lengthwise direction into two sections, guiding the divided laminated flows to opposite directions relative to the flow direction, and then guiding both laminated flows toward the center of the flow direction, and rearranging the laminated flows adjacent to each other in the horizontal direction and thereby joining the laminated flows together, and a step 2 (R-flow path) for vertically dividing a laminated flow obtained by arranging at least two molten resins adjacent to each other in a lengthwise direction into two sections, guiding the divided laminated flows to directions opposite to the above-mentioned directions relative to the flow direction, and then guiding both laminated flows toward the center of the flow direction, and rearranging the laminated flows adjacent to each other in the horizontal direction and thereby joining the laminated flows together, in which the step 1 (L-flow path) and the step 1 (R-flow path) are alternately repeated in this listed order, and a number of the steps to be performed is at least three. According to this method, it is possible to prevent the layer disappearance at both ends, prevent the layer thickness variations or the disruption in the lengthwise arrangement, and thereby manufacture a multi-laminated body having a more excellent uniformity.
    • 根据本发明的多层叠体的制造方法包括:步骤1(L流路),用于将通过将长度方向上彼此相邻的至少两个熔融树脂排列成两个部分而获得的层叠流程进行垂直分割, 将分割的层叠流体相对于流动方向引导到相反的方向,然后将两个层叠流体朝向流动方向的中心引导,并且在水平方向上重新排列彼此相邻的层压流体,从而将层压流体接合在一起, 将通过将至少两个在长度方向上彼此相邻的熔融树脂排列成两个部分而获得的层压流动的步骤2(R流路),将分割的层压流引导到与上述方向相反的方向 向流动方向移动,然后将两个层叠的流向导向流动方向的中心,并重新排列层压体 在水平方向上彼此相邻地流动,从而将层叠的流体结合在一起,其中步骤1(L流动路径)和步骤1(R流动路径)以该列出的顺序交替重复,并且数量 要执行的步骤至少是三个。 根据该方法,可以防止两端的层消失,防止层厚变化或纵向配置的破坏,从而制造均匀性更好的多层叠体。