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Heat supported single point incremental forming of hybrid laminates for orthopedic applications

机译:用于整形外科应用的混合层压板的热支持单点增量形成

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Ecofriendly composite fibers are increasingly applied as a substitutional material instead of the expensive carbon fibers. Within this context a hybrid laminate was developed combining an aluminum sheet with basalt fiber-reinforced thermoplastic polyamide 6 (BFRP). As a condition for the formability it is necessary to transform the polyamide matrix into a semi-fluidized state. Therefore, a single point incremental forming process supported with hot air heating was utilized to form the hybrid laminate into the desired shape. During the forming process the composite was inserted between two metal sheets and two Teflon layers which were used to improve the sliding of the hybrid laminate during the forming operation. Furthermore, the metal sheets were used to ensure an efficient processing and protect the hybrid laminate against wear caused by friction between the forming tool and the composite. In addition, the squeeze out of the melted polymer matrix out of the hybrid laminate was reduced. The results of the investigation of the experimental process parameters are presented. The proposed method offers the possibility to manufacture individual orthopedic products or prototypes of medical implants.
机译:Ecofriendly复合纤维越来越多地应用于替代材料而不是昂贵的碳纤维。在本文中,将杂交层压板与玄武岩纤维增强热塑性聚酰胺6(BFRP)组合。作为可成形性的条件,必须将聚酰胺基质转化成半流化状态。因此,利用热空气加热支撑的单点增量形成过程以将杂交层压材料形成为所需的形状。在形成过程中,复合材料插入两个金属板和两个铁氟龙层之间,其用于改善在成形操作期间的混合层压体的滑动。此外,金属板用于确保有效的加工和保护通过在成形工具和复合材料之间摩擦引起的磨损的混合层压材料。另外,将挤出熔融聚合物基质从混合层压板中挤出。提出了实验过程参数调查的结果。该方法提供了制造医疗植入物的个体矫形产品或原型的可能性。

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