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Characterization of the Fabric/Tool and Fabric/Fabric Friction during the Thermostamping Process

机译:织物/工具和织物/织物摩擦的特征在温液加工过程中

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The thermostamping of quality composite parts using thermoplastic woven fabrics requires the use of in-plane forces to prevent fabric wrinkling for compound curvature surfaces. These in-plane forces are developed during the stamping process by the friction between the fabric and tool. For multilayer stampings, the in-plane force is also a consequence of the interaction of the adjacent layers of fabric. If the in-plane forces are too low, then the stamped parts may wrinkle as the fabric deforms to assume the shape of the punch. If the in-plane forces are too high, then the fabric can become damaged by tearing and yarn separation. Thus, controlling the in-plane forces is critical to achieving a quality part. In the current research, the design of a load-control friction testing apparatus is presented.
机译:使用热塑性织造织物的质量复合材料部件的热痉挛需要使用面内力以防止用于复合曲率表面的织物皱纹。通过织物和工具之间的摩擦,在冲压过程中开发这些面内力。对于多层冲压,面内力也是相邻织物层的相互作用的结果。如果面内力太低,则冲压部件可能皱起皱纹,因为织物变形以呈现冲头的形状。如果面内力太高,则织物可以通过撕裂和纱线分离而损坏。因此,控制面内力对于实现质量部分至关重要。在目前的研究中,提出了负载控制摩擦测试装置的设计。

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