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    • 54. 发明授权
    • Arrangement for making a belt made of plasticatable material
    • 制造由可塑性材料制成的皮带的布置
    • US06966763B2
    • 2005-11-22
    • US10440097
    • 2003-05-19
    • Hubert GöserThomas WinklerAndré Kucharczyk
    • Hubert GöserThomas WinklerAndré Kucharczyk
    • F16G1/08B29C43/22B29C43/26B29C43/28B29C47/02B29C70/50B29D29/00B29K105/08F16C13/00F16G1/12B29C59/04B29F47/52
    • B29C43/28B29C43/22B29C43/26B29C47/0021B29C47/027B29C70/504B29C2043/483B29D29/00B29K2075/00B29K2105/06B29K2105/101B29L2029/00F16G1/12
    • The two belt parts (2a, 2b) of a belt (2) made of plasticatable material are produced with the aid of a first station (6) and a second station (8). The first station (6) includes a rotatable mold drum (14) and a continuous mold belt (18). The mold belt (18) is brought together with the mold drum (14) along a peripheral section via an upper pressure roller (20), a lower pressure roller (22) and a tensioning roller (24) in such a manner that a hollow mold space (26) is formed between the mold drum (14) and the mold belt (18). An extruder (10) is mounted forward of the hollow mold space (26). Furthermore, the first station (6) includes a filament feed (28) for forming a reinforcement layer (4) in the first belt part (2a). For a simplified manufacture of the belt (2), the second station (8) includes only a direction-changing roller (30) in addition to the extruder (12) and a mold drum (16). The spacing (32) between the direction-changing roller (30) and the second mold drum (16) equals the thickness of the belt (2) to be manufactured. To limit and guide the first belt part (2a) to be manufactured and/or the belt (2), the first mold drum (14), the second mold drum (16) and/or the direction-changing roller (30) are preferably provided with flange discs (14a, 14b; 16a, 16b and/or 30a, 30b). In order to make possible a targeted softening of the surfaces of the belt parts to be joined, the various rollers (20, 22, 34, 34′, 35, 35′) and the two mold drums (14, 16) can be provided with heating/cooling.
    • 借助于第一工位(6)和第二工位(8)制造由可塑性材料制成的带(2)的两个带部分(2a,2b)。 第一工位(6)包括可旋转的模具滚筒(14)和连续的模具带(18)。 模具带(18)通过上压辊(20),下压力辊(22)和张紧辊(24)沿着周边部分与模具滚筒(14)一起以这样的方式与模制鼓(14) 在模具滚筒(14)和模具带(18)之间形成有模具空间(26)。 挤出机(10)安装在空心模具空间(26)的前方。 此外,第一工位(6)包括用于在第一带部分(2a)中形成加强层(4)的细丝进给(28)。 为了简化皮带(2)的制造,除了挤出机(12)和模具滚筒(16)之外,第二工位(8)仅包括一个换向辊(30)。 方向转换辊(30)与第二成型转鼓(16)之间的间隔(32)等于要制造的带(2)的厚度。 为了限制和引导要制造的第一皮带部分(2a)和/或皮带(2),第一模制滚筒(14),第二模制滚筒(16)和/或方向转换辊(30) 优选地设置有凸缘盘(14a,14b; 16a,16b和/或30a,30b)。 为了能够使要连接的带部件的表面有目标地软化,可以提供各种辊(20,22,34,34',35,35')和两个模制鼓(14,16) 加热/冷却。
    • 57. 发明授权
    • Stress release method
    • 压力释放法
    • US06743390B2
    • 2004-06-01
    • US09973351
    • 2001-10-09
    • Robert C. U. YuJohn A. Bergfjord, Sr.
    • Robert C. U. YuJohn A. Bergfjord, Sr.
    • B29C7100
    • G03G5/10B29C71/0072B29C71/02B29C2071/022B29L2029/00G03G5/047G03G5/14
    • A method of treating a flexible multi-layer member exhibiting a glass transition temperature and including a surface layer, the method composed of: moving the member through a member path including: a contact zone defined by contact of the member with an arcuate surface including a curved contact zone region; a pre-contact member path before the contact zone; and a post-contact member path after the contact zone; heating sequentially each portion of the surface layer such that each of the heated surface layer portions has a temperature above the glass transition temperature while in the curved contact zone region; and cooling sequentially each of the heated surface layer portions while in the contact zone such that the temperature of each of the heated surface layer portions falls to below the glass transition temperature prior to each of the heated surface layer portions exiting the curved contact zone region, thereby defining a cooling region, wherein the heating is accomplished in a heating region encompassing any part or all of the contact zone outside the cooling region and a portion of the pre-contact member path adjacent the contact zone.
    • 一种处理具有玻璃化转变温度并包括表面层的柔性多层构件的方法,所述方法包括:通过构件路径移动所述构件,所述构件路径包括:通过所述构件与弓形表面的接触限定的接触区域,所述接触区域包括 弯曲接触区域; 在接触区之前的预接触构件路径; 以及在接触区之后的接触后构件路径; 依次加热表面层的每个部分,使得每个加热的表面层部分在弯曲的接触区域中具有高于玻璃化转变温度的温度; 并且在接触区域中顺序地冷却每个加热的表面层部分,使得在每个加热的表面层部分离开弯曲的接触区域区域之前,每个加热的表面层部分的温度降至低于玻璃化转变温度, 从而限定冷却区域,其中,加热区域包括在冷却区域外部的接触区域的任何部分或全部的加热区域以及与接触区域相邻的预接触构件路径的一部分。