A Multi-Factor Interaction Model (MFIM) for Damage Initiation and Progression

C. Chamis
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引用次数: 8

Abstract

A Multi-Factor-Interaction-Model (MFIM) is briefly described to represent complex point material behavior in a single equation. The model is of product form in order to represent coupled interactions and to be computationally effective. The model describes a continuum or surface in space that represents the complex material behavior in terms of the various factors that affect a specified material behavior. The material specified behavior is inclusive of all material properties, mechanical, thermal, physical and effects thereon, such as temperature, time, cyclic loadings, etc. Sample cases results simulated by using MFIM are compared with test data to illustrate its versatility and its relevance to reality. These results show the MFIM can accurately predict metal matrix composite fatigue data and mechanical properties of a steel alloy. MFIM predicted results for the damage tolerance of a large shell made from structural steel subjected to internal pressure. Helpful guidelines for its effective use are also included.
损伤发生与发展的多因素相互作用模型(MFIM
简要介绍了一种多因素相互作用模型(MFIM),它可以用单一方程来表示复杂的点材料行为。该模型是乘积形式,以表示耦合相互作用和计算有效。该模型描述了空间中的连续体或表面,它代表了影响特定材料行为的各种因素的复杂材料行为。材料规定的性能包括所有材料性能,机械、热、物理及其影响,如温度、时间、循环载荷等。通过与试验数据的比较,说明了MFIM方法的通用性和与实际的相关性。结果表明,MFIM能较准确地预测金属基复合材料的疲劳数据和力学性能。MFIM预测了由结构钢制成的大型壳体在内压作用下的损伤容限。还包括有效使用它的有用指南。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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