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首页> 外文期刊>Journal of Reinforced Plastics and Composites >Stress Analysis of Symmetric Aluminum Composite-laminated Beams under a Bending Moment:Materially Nonlinear Only
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Stress Analysis of Symmetric Aluminum Composite-laminated Beams under a Bending Moment:Materially Nonlinear Only

机译:弯矩作用下对称铝复合材料层合梁的应力分析:仅材料非线性

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摘要

In this study,an elastic-plastic stress analysis is carried out on symmetric laminated composite beams subjected to a bending moment.The composite beam is to be strain hardening.The Bernoulli and Euler hypotheses are assumed to be valid.The Tsai-Hill theory is used as a yield criterion in the solution.The solution is carried out for (90 deg/0 deg)_2,(30 deg/-30 deg)_2,(45 deg/-45 deg)_2,and (60 deg/-60 deg)_2 orientations.The bending moment is to be found the highest for the (30 deg/-30 deg)_2 orientation.The residual stress component of sigma_x is the highest at the upper and lower surfaces.But it becomes the highest at the elastic and plastic boundary for further expansion of the plastic region.The transverse displacement is obtained at the free end,numerically.
机译:本研究对受弯矩作用的对称叠层复合材料梁进行弹塑性应力分析,对复合材料梁进行应变硬化处理,假设伯努利和欧拉假设成立,Tsai-Hill理论为在(90度/ 0度)_2,(30度/ -30度)_2,(45度/ -45度)_2和(60度/- 60度)_2方向。(30度/ -30度)_2方向的弯矩最大.sigma_x的残余应力分量在上,下表面最高,但在弹性和塑性边界,以进一步扩大塑性区域。横向位移在数值上在自由端获得。

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