首页> 外文会议>American Society of Mechanical Engineers(ASME) Turbo Expo vol.2; 20040614-17; Vienna(AT) >CUMULATIVE DAMAGE MECHANICS: CHARACTERIZATION, MODELING AND INTERPRETATION OF PROGRESSIVE FAILURE IN CERAMICS AND COMPOSITES
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CUMULATIVE DAMAGE MECHANICS: CHARACTERIZATION, MODELING AND INTERPRETATION OF PROGRESSIVE FAILURE IN CERAMICS AND COMPOSITES

机译:累积损伤机理:陶瓷和复合材料中渐进式破坏的表征,建模和解释

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摘要

Ceramic matrix composites (CMCs) have evolved to exhibit inherent damage tolerance through nonlinear energy absorption mechanisms while retaining the desirable attributes of their monolithic structural ceramic counterparts. Mathematical (analytic and numeric) models together with experimental measurements of this damage absorption have aided in understanding the thermomechanical behavior of CMCs. This understanding has led to improved test methods, better predictive modeling of material behavior, appropriate processing methods, and finally novel design methodologies for implementing CMCs. In this paper, background on CMC damage is presented, damage measurement and damage models are discussed and finally probabilistic aspects of constituent materials that can be used to illustrate the cumulative damage behavior of CMCs are described.
机译:陶瓷基复合材料(CMC)已发展为通过非线性能量吸收机制表现出固有的损伤耐受性,同时保留了其整体结构陶瓷对应物的理想特性。数学模型(解析模型和数值模型)以及这种损伤吸收的实验测量值有助于理解CMC的热机械行为。这种理解导致了改进的测试方法,更好的材料行为预测模型,适当的处理方法以及最终用于实现CMC的新颖设计方法。本文介绍了CMC损伤的背景,讨论了损伤测量和损伤模型,最后描述了可用于说明CMC累积损伤行为的组成材料的概率方面。

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