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Elasto-plastic stress analysis of aluminum metal-matrix composite laminated plates under in-plane loading

机译:面内载荷作用下铝金属基复合层压板的弹塑性应力分析

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The study presents an elasto-plastic stress analysis of symmetric and antisymmetric cross-ply, angle-ply laminated metal-matrix composite plates. Long stainless steel fiber reinforced aluminum metal-matrix composite layer is manufactured by using modulds under the action of 30 MPa pressure and heating up to 600degC. A laminated plate consists of four metal-matrix layers bonded symmetrically or antisymmetrically. The first-order shear deformation theory and nine-node Lagrangian finite element is used. The in-plane load is increased gradually.
机译:该研究提出了对称和反对称的交叉层,角层层合的金属-矩阵复合板的弹塑性应力分析。不锈钢长纤维增强铝金属基复合材料层是通过在30 MPa压力作用下调制并加热到600摄氏度来制造的。层压板由对称或反对称粘结的四个金属基体层组成。使用一阶剪切变形理论和九节点拉格朗日有限元。平面内负载逐渐增加。

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