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Numerical predictions of fiber orientation and mechanical properties for injection-molded long-carbon-fiber thermoplastic composites

机译:注塑成型长碳纤维热塑性复合材料纤维取向与机械性能的数值预测

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摘要

The use of long carbon fiber-reinforced thermoplastic composites as lightweight automotive materials offers superior mechanical performance compared to glass fibers. However, the anisotropic fiber orientation distribution with shell-core structure is critical to determine mechanical properties. Recently, both theoretical models of fiber orientationAnisotropic Rotary Diffusion and Reduced Strain Closure and Improved Anisotropic Rotary Diffusion and Retarding Principal Ratehave been significantly developed in the field of fiber suspension rheology. From injection molding simulations, numerical predictions of fiber orientation are derived with related experimental validations, while dramatic changes in orientation distribution are discussed at various fiber concentrations and different polymer matrices. More importantly, the reinforcing ability is discussed in regard to the tensile modulus and the stress-strain response for a variety of long carbon fiber composites. POLYM. COMPOS., 39:3726-3739, 2018. (c) 2017 Society of Plastics Engineers
机译:与玻璃纤维相比,使用长碳纤维增强热塑性复合材料具有优越的机械性能。然而,具有壳芯结构的各向异性纤维取向分布对于确定机械性能至关重要。最近,纤维悬浮流变学领域的纤维方向旋转旋转扩散和降低的各向异性旋转扩散和改善各向异性旋转扩散和延迟主要率的理论模型。从注射成型模拟中,纤维取向的数值预测衍生具有相关的实验验证,而取向分布的巨大变化在各种纤维浓度和不同的聚合物基质中讨论。更重要的是,在各种长碳纤维复合材料的拉伸模量和应力 - 应变响应方面讨论了增强能力。聚合物。 Compos。,39:3726-3739,2018。(c)2017年塑料工程师协会

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