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首页> 外文期刊>Latin American Journal of Solids and Structures >Application of Short Fibers Reinforced Composites in Power Transmission Coupling
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Application of Short Fibers Reinforced Composites in Power Transmission Coupling

机译:短纤维增强复合材料在动力耦合中的应用

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In this study the use of short glass, carbon and hybrid glass-carbon fibers reinforced polymeric composites in power transmission coupling is investigated. The presented work is generalized to thermoplastic and thermoset polymeric matrix composites. The effects of the constituents weight percentages, and average fibers length on the composite tensile strength and modulus are studied using the Taguchi design of experiments method. A new approach of Finite Element analysis is introduced to model the effect of the hybrid fibers random distribution and average fibers length among the volume of the matrix. Each fiber is simulated independently in the model as a three dimensional truss element embedded in the matrix. The FEA model is applied on the tensile specimen and then on the power transmission coupling simulation. Finally, the new approach of finite element analysis results on the coupling are validated.
机译:在这项研究中,研究了短玻璃,碳纤维和玻璃碳纤维混合增强聚合物复合材料在动力传输耦合中的应用。提出的工作一般适用于热塑性和热固性聚合物基复合材料。使用Taguchi设计的实验方法研究了成分的重量百分比和平均纤维长度对复合材料拉伸强度和模量的影响。引入了一种新的有限元分析方法,以模拟混合纤维在基体体积中随机分布和平均纤维长度的影响。在模型中,将每个纤维作为嵌入矩阵中的三维桁架元素进行独立仿真。将FEA模型应用于拉伸试样,然后应用于动力传输耦合仿真。最后,验证了对联轴器进行有限元分析的新方法。

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