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Optimization winding design of a composites intermediate shaft

机译:复合材料中间轴优化绕组设计

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摘要

The purpose of this study is to determine the correct estimation of the laminate patterns for composites intermediate shaft. The laminate patterns in the filament winding process are an important factor in determining the strength and life of the final structure. In this study, the structural safety was analyzed for the laminate patterns in four cases. In addition, this work evaluated the range of laminated angles for optimal thickness selection. The laminate patterns and the order of the layers were determined by considering the results of the finite element analysis. The shear stress equation of the hollow shaft for torsional loads showed that the thickness of the structure varied with the diameter ratio. At the maximum diameter ratio (the smallest shaft thickness), the required shear strength for the structure was 36.6 MPa. Also, the most stable stress distribution was selected at 15 degrees to 75 degrees. The shear modulus according to the laminated angle was considered to give the best strength value when stacked at 45 degrees. The research results in this study suggest that the design of an optimized intermediate shaft of composite materials can be supplemented.
机译:本研究的目的是确定复合材料中间轴的层压图案的正确估计。长丝绕组过程中的层压图案是确定最终结构的强度和寿命的重要因素。在这项研究中,在四种情况下分析了层压图案的结构安全性。此外,这项工作评估了层压角的范围,以获得最佳厚度选择。通过考虑有限元分析的结果来确定层压图案和层的顺序。用于扭转载荷的中空轴的剪切应力方程表明,该结构的厚度随着直径比而变化。在最大直径比(最小轴厚),结构的所需剪切强度为36.6MPa。此外,最稳定的应力分布在15度至75度下选择。认为根据层压角的剪切模量在45度堆叠时提供最佳强度值。本研究的研究结果表明,可以补充复合材料的优化中间轴的设计。

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