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Analysis of thermomechanical fatigue of unidirectional titanium metal matrix composites

机译:单向钛金属基复合材料的热机械疲劳分析

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摘要

Thermomechanical fatigue (TMF) data was generated for a Ti-15V-3Cr-3Al-3Sn (Ti-15-3) material reinforced with SCS-6 silicon carbide fibers for both in-phase and out-of-phase thermomechanical cycling. Significant differences in failure mechanisms and fatigue life were noted for in-phase and out-of-phase testing. The purpose of the research is to apply a micromechanical model to the analysis of the data. The analysis predicts the stresses in the fiber and the matrix during the thermal and mechanical cycling by calculating both the thermal and mechanical stresses and their rate-dependent behavior. The rate-dependent behavior of the matrix was characterized and was used to calculate the constituent stresses in the composite. The predicted 0 degree fiber stress range was used to explain the composite failure. It was found that for a given condition, temperature, loading frequency, and time at temperature, the 0 degree fiber stress range may control the fatigue life of the unidirectional composite.
机译:生成了用SCS-6碳化硅纤维增强的Ti-15V-3Cr-3Al-3Sn(Ti-15-3)材料的热机械疲劳(TMF)数据,用于同相和异相热机械循环。对于同相和异相测试,发现了失效机理和疲劳寿命的显着差异。研究的目的是将微机械模型应用于数据分析。该分析通过计算热应力和机械应力及其与速率相关的行为来预测热循环和机械循环过程中纤维和基体中的应力。表征了基体的速率依赖性行为,并将其用于计算复合材料中的组成应力。预测的0度纤维应力范围用于解释复合材料的破坏。发现对于给定的条件,温度,加载频率和温度下的时间,0度纤维应力范围可以控制单向复合材料的疲劳寿命。

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