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Fabrication and Finite Element Analysis of Composite Elbows

机译:复合弯头的制作与有限元分析

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摘要

“Tube beams” are common lightweight structures, which have domestic and industry applications, and are often subjected to complex multidirectional loads. Therefore, metals with mature manufacturing methods and isotropic properties are commonly used in the fabrication of these structures, which are preferred to be lighter in weight. Although polymer matrix composites are generally used for weight reduction, their conventional manufacturing methods, such as pultrusion and filament-winding, cannot meet the isotropic requirements. Moreover, research on bent tube beams (elbows) is rare. Therefore, a self-made glass fiber/epoxy polyvinyl ester fabric prepreg and a self-designed mold were used in this study to prepare an isotropic composite double-bent elbow by a silicone rubber airbag-assisted process. The load capacity of the elbow was tested and validated by the finite element method. A strength and deformation of up to 3448 N and 2.84 mm respectively, were achieved. The simulation and experimental results were consistent: the error for the load capacity and deformation was only 4.15% and 7.75% respectively, under the max stress criterion.
机译:“管状梁”是常见的轻质结构,已在家庭和工业应用中使用,并经常承受复杂的多向载荷。因此,具有成熟制造方法和各向同性性质的金属通常用于这些结构的制造中,优选其重量较轻。尽管聚合物基复合材料通常用于减轻重量,但其常规制造方法(如拉挤成型和长丝缠绕)无法满足各向同性的要求。此外,对弯管梁(弯头)的研究很少。因此,本研究采用自制的玻璃纤维/环氧聚乙烯酯织物预浸料和自行设计的模具,通过硅橡胶气囊辅助工艺制备了各向同性的复合双弯肘。用有限元方法测试并验证了弯头的承载能力。强度和变形分别达到3448 N和2.84 mm。仿真和实验结果是一致的:在最大应力准则下,承载力和变形的误差分别仅为4.15%和7.75%。

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