首页> 外文会议>International Conference on High-Performance Ceramics >Analysis on High Cycle Fatigue Properties and Fatigue Damage Evolution of TC25 Titanium alloy
【24h】

Analysis on High Cycle Fatigue Properties and Fatigue Damage Evolution of TC25 Titanium alloy

机译:TC25钛合金高循环疲劳特性及疲劳损伤演化分析

获取原文

摘要

The high cycle fatigue tests for smooth specimens of TC25 titanium alloy under different stress ratios are carried out on a MTS 809 Material Test Machine at a given maximum stress level of 917MPa at ambient temperature, the high cycle fatigue lifetimes for such alloy are measured, and the effects of stress amplitude and mean stress on high cycle fatigue life are analyzed. The initial resistance is measured at the two ends of smooth specimen of TC25 titanium alloy, every a certain cycles, the fatigue test is interrupted, and the current resistance values at various fatigue cycles are measured. The ratio of resistance change is adopted to characterize the fatigue damage evolution in TC25 titanium alloy, and a modified Chaboche damage model is applied to derive the fatigue damage evolution equation. The results show that the theoretical calculated values agree well with the test data, which indicates that the modified Chaboche damage model can precisely describe the accumulated damage in TC25 titanium alloy at high cycle fatigue under unaxial loading. Finally, the high cycle fatigue lifetimes for TC25 titanium alloy specimens at different strain hardening rates are tested at a given stress ratio of 0.1, the effect of strain hardening on fatigue life is investigated based on a microstructure analysis on TC25 titanium alloy, and an expression between fatigue life and strain hardening rate is derived.
机译:对于在不同应力比TC25钛合金的光滑试样的高周疲劳测试在917MPa的在环境温度下给定的最大压力水平上的MTS 809材料试验机中进行,对于这种合金的高周疲劳寿命被测量,并应力的幅度和平均应力高周疲劳寿命的影响进行了分析。初始电阻在TC25钛合金光滑试样的两端测量的,每一定的周期中,疲劳试验被中断,并在不同的疲劳循环的当前的电阻值进行测量。电阻变化的比例,采用以表征在TC25钛合金疲劳损伤演化和改性Chaboche损伤模型应用到导出疲劳损伤演化方程。结果表明,理论计算值与所述测试数据,这表明改性Chaboche损伤模型能精确地描述在TC25钛合金在高循环疲劳下unaxial载荷的累积损伤一致。最后,高周疲劳寿命为TC25钛合金试样在不同的应变硬化率在0.1给定的应力比,应变的对疲劳寿命硬化效果进行测试进行了研究基于关于TC25钛合金的微结构的分析,以及表达疲劳寿命和应变硬化率之间的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号