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Additively manufactured continuous carbon fiber-reinforced thermoplastic for topology optimized unmanned aerial vehicle structures

机译:用于拓扑的加载连续碳纤维增强热塑性塑料优化无人驾驶车辆结构

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摘要

The complete mechanical properties (tensile, compressive, and shear properties) of the additively manufactured (AM) continuous carbon fiber-reinforced thermoplastic (CFRTP) fabricated using extrusion-based AM technique were investigated and reported. The fracture modes of the AM CFRTP in various mechanical tests were studied and reported. Anisotropic mechanical properties were observed in all mechanical tests, with the fiber direction having the highest strengths and stiffnesses and the across-the-layer direction having the lowest strengths and stiffnesses. A proof of concept topology optimized unmanned aerial vehicle (UAV) landing gear was designed and fabricated using the mechanical properties obtained experimentally. Finite element analysis and compressive tests conducted show that the UAV landing gear structure fabricated using the AM CFRTP was able to survive the most extreme condition during operation.
机译:研究并报道了使用基于挤出的AM技术制造的加积(AM)连续碳纤维增强热塑性塑料(CFRTP)的完全机械性能(拉伸,压缩和剪切性能)。 研究并报道了AM CFRTP的骨折模式。 在所有机械测试中观察到各向异性机械性能,具有具有最高强度和刚度的纤维方向,并且具有最低强度和刚度的层的跨度方向。 使用实验获得的机械性能设计和制造了概念拓扑优化的无人机轨道(UAV)销钉的证据。 进行有限元分析和压缩试验表明,使用AM CFRTP制造的UAV着陆齿轮结构能够在操作期间最极端的状态存活。

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