An Elasto-Plastic Stress Analysis in a Polymer–Matrix Composite Beam Supported from Two Ends under Transverse Linearly Distributed Load by Use of Anisotropic Elasticity Theory

U. Esendemir
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引用次数: 4

Abstract

An analytical elasto-plastic stress analysis is carried out in a low-density polyethylenethermoplastic beam supported from two ends under transverse linearly distributed load reinforced by Cr–Ni steel fibers analytically. The material is assumed to be perfectly plastic for the elasto-plastic solution. The intensity of the uniform force is chosen at a small value; therefore, the normal stress component y is neglected in the elastic–plastic solution. The expansion of the plastic region and the residual stress component of σx and τxy are determined for 0, 30, 45, 60, and 90 orientation angles. The yielding begins at the upper and lower surfaces of the beam at the same distances from the ends. The intensity of residual stress component of x is maximum at the upper and lower surfaces but residual stress component of τxy is maximum on the x axis of the beam. The strength of the beam is increased by residual stresses.
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应用各向异性弹性理论分析横向线性分布荷载作用下两端支撑聚合物基复合材料梁的弹塑性应力
本文对Cr-Ni钢纤维增强低密度聚醚塑性梁在横向线性分布荷载作用下的弹塑性应力进行了解析分析。对于弹塑性溶液,假定材料是完全塑性的。均布力的强度选择在一个较小的值;因此,在弹塑性解中,法向应力分量y可以忽略。测定了0、30、45、60、90个取向角下塑性区的扩展和σx、τxy的残余应力分量。屈服开始于梁的上下表面,距离两端的距离相同。x的残余应力分量强度在梁的上下表面最大,而τxy的残余应力分量在梁的x轴上最大。残余应力增加了梁的强度。
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