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Elastic-plastic stress analysis and expansion of plastic zone in clamped and simply supported aluminum metal-matrix laminated pates

机译:夹紧和简单支撑的铝金属基层压板的弹塑性应力分析和塑性区扩展

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摘要

An elastic-plastic stress analysis and the expansion of plastic zone in layers of strainess steel fiber-reinforced aluminum metal material laminated plates are studied by using Finite Element Method and First-order shear deformation theory for small deformations. The plate is meshed into 64 elements and 289 nodes with simply supported or camped boundary conditions. Laminated plates of constant thickness are formed by stacking four layers bonded symmetrically or antisymmerically. It is assumed that the laminated plates are subjected to transverse uniform loads. Loading is gradually increased from yield point of the plate as 0.0001 MPa at each load step. Load steps are chosen as 100, 150 and 200.
机译:利用有限元法和一阶剪切变形理论,对小变形钢-纤维增强铝金属材料叠层板的弹塑性应力分析和塑性区扩展进行了研究。板被划分为64个元素和289个节点,并具有简单的支撑或预占边界条件。通过堆叠对称或反对称粘合的四层,可以形成厚度恒定的层压板。假设层压板承受横向均匀载荷。在每个载荷步骤中,载荷从板的屈服点逐渐增加为0.0001 MPa。加载步骤选择为100、150和200。

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