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Crack Growth Behavior in Titanium Alloy Tc11 at room and high temperature

机译:钛合金Tc11在室温和高温下的裂纹扩展行为

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The paper presents some recent results of a rsearch program on the evaluation of the fatigue crack propagation(FCP) behavior of the titanium alloy--TC11, which is used for gas-turbine engine discs and blades. Crack propagation tests were carried out at room temperature on center cracked tension(CCT) specimens under three stress ratios R=0,0.5,-1, and at 400 degree on compact tension(CT) and single edged specimens understres ratios R=0.1 -1, respectively. The crack growth rates were compared by using stress intensity factor and effective stress intensity factor. THe results show that the effects of stress ratio and ambient temperature are decreased when the crack growth rates were correlated by using the effective stress intensity factor.
机译:本文介绍了用于评估燃气轮机发动机盘和叶片的钛合金TC11的疲劳裂纹扩展(FCP)行为的研究程序的一些最新结果。室温下,在三个应力比R = 0,0.5,-1下,在中心裂纹拉伸(CCT)试样上进行裂纹扩展测试,在紧凑度拉伸(CT)和单边试样在400度下,在中心应力下拉伸比R = 0.1- 1,分别。利用应力强度因子和有效应力强度因子比较了裂纹扩展速率。结果表明,使用有效应力强度因子关联裂纹扩展速率时,应力比和环境温度的影响减小。

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