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INVESTIGATION OF A STRESS FIELD EVALUATED BY ELASTICPLASTIC ANALYSIS IN DISCONTINUOUS COMPOSITES

机译:弹塑性弹塑性分析评价不连续复合材料中的应力场

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摘要

A closed form solution of a composite mechanics system is performed for the investigation of elasticplastic behavior in order to predict fiber stresses, fiber/matrix interfacial shear stresses, and matrix yielding behavior in short fiber reinforced metal matrix composites. The model is based on a theoretical development that considers the stress concentration between fiber ends and the propagation of matrix plasticity and is compared with the results of a conventional shear lag model as well as a modified shear lag model. For the region of matrix plasticity, slip mechanisms between the fiber and matrix which normally occur at the interface are taken into account for the derivation. Results of predicted stresses for the small-scale yielding as well as the large-scale yielding in the matrix are compared with other theories. The effects of fiber aspect ratio are also evaluated for the internal elastic-plastic stress field. It is found that the incorporation of strong fibers results in substantial improvements in composite strength relative to the fiber/matrix interfacial shear stresses, but can produce earlier matrix yielding because of intensified stress concentration effects. It is also found that the present model can be applied to investigate the stress transfer mechanism between the elastic fiber and the elastic-plastic matrix, such as in short fiber reinforced metal matrix composites.
机译:进行复合力学系统的封闭形式解以研究弹塑性行为,以预测短纤维增强金属基复合材料中的纤维应力,纤维/基体界面剪切应力和基体屈服行为。该模型基于理论发展,该理论考虑了纤维末端之间的应力集中和基体塑性的传播,并与常规剪力滞后模型和改进的剪力滞后模型的结果进行了比较。对于基体可塑性区域,考虑了通常在界面处发生的纤维与基体之间的滑动机制。将矩阵中的小规模屈服和大规模屈服的预测应力结果与其他理论进行了比较。还针对内部弹塑性应力场评估了纤维纵横比的影响。已经发现,相对于纤维/基质界面剪切应力,强纤维的掺入导致复合强度的显着提高,但是由于增强的应力集中效应,可以产生较早的基体屈服。还发现本模型可用于研究弹性纤维与弹塑性基体之间的应力传递机制,例如在短纤维增强金属基复合材料中。

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