首页> 外文期刊>Journal of Reinforced Plastics and Composites >Thermal Elastic-Plastic Stress Analysis of Aluminum Metal-Matrix Composite Laminated Plates Under A Parabollically Temperature Distribution
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Thermal Elastic-Plastic Stress Analysis of Aluminum Metal-Matrix Composite Laminated Plates Under A Parabollically Temperature Distribution

机译:抛物线温度分布下铝金属基复合层压板的热弹塑性应力分析

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摘要

In this study,a thermal elastic-plastic stress analysis is carried out on steel-fiber-reinforced aluminum metal-matrix composite laminated plates fixed at all edges.Temperature is chosen to vary parabollically.It is zero and T_0 on the middle axis and at the upper-lower sufaces,respectively.The solution is executed for symmetric cross-ply (0 deg/90 deg)_2 and angle-ply (30 deg/-30 deg)_2,(45 deg/-45 deg)_2,(60 deg/-60 deg)_2 laminated plates.The elastic-plastic solution is carried out for small plastic deformations.The Tsai-Hill Theory is used as a yield criterion.Residual stress distributions aong the thickness of the plates are obtained.All the residual stress components are in static balance with respect to middle plane of the laminates since they are symmetric in opposite signs.
机译:本研究对固定在所有边缘的钢纤维增强铝金属基复合层压板进行了热弹塑性应力分析,选择温度以抛物线形变化。在中轴为零,T_0为零该解决方案分别针对对称交叉层(0度/ 90度)_2和角度层(30度/ -30度)_2,(45度/ -45度)_2,( 60 deg / -60 deg)_2叠层板,对较小的塑性变形采用弹塑性解法,以Tsai-Hill理论为屈服准则,求得了板厚度上的残余应力分布。残余应力分量相对于层压板的中间平面处于静态平衡,因为它们以相反的符号对称。

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