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Finite element analysis of the thermomechanical behavior of metal matrix composites (MMC)

机译:金属基复合材料(MMC)热力学行为的有限元分析

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In this work the finite element method (FEM) was used to analyze the mechanical behavior of the composite materials subjected to the mechanical loading. This behavior is studied in terms of stress intensity factor variation as a function of the applied stress intensity. The residual stresses induced in the composites, during the elaboration of these composites are taken into consideration in this study. The superimposition of these types of stresses (residuals and commissioning) is simulated here by thermomechanical stresses. The results obtained show that in the vicinity very close to the fiber-matrix interface and under the effect of this loading type, the matrix cracks propagate in modes I, II and III, and far from the interface, in mode I. The propagation kinetics is slowed down by the interface-crack interaction.The effects of the crack size, the orientation and propagation of the crack, commissioning stresses, the elaboration temperature, fiber physical properties, matrix stiffness and thermomechanical stresses have been highlighted in this work.
机译:在这项工作中,有限元方法(FEM)被用来分析承受机械载荷的复合材料的机械性能。根据应力强度因子随所施加应力强度的变化来研究此行为。在这项研究中考虑了复合材料在加工过程中在复合材料中引起的残余应力。这些类型的应力(残余和调试)的叠加在此处通过热机械应力进行模拟。所得结果表明,在非常接近纤维-基体界面的附近并且在这种载荷类型的作用下,基体裂纹以模式I,II和III传播,而远离界面以模式I传播。传播动力学界面裂纹的相互作用减缓了裂纹的产生。强调了裂纹尺寸,裂纹的取向和扩展,调试应力,细化温度,纤维物理性能,基体刚度和热机械应力的影响。

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