首页> 外文期刊>Engineering Fracture Mechanics >A micromechanical model to study the closure stress effect on fatigue life of Ti6Al4V subjected to laser shock peening
【24h】

A micromechanical model to study the closure stress effect on fatigue life of Ti6Al4V subjected to laser shock peening

机译:一种微型力学模型,研究Ti6Al4V疲劳寿命对激光震动的疲劳寿命

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

With the wide application of titanium alloy in various engineering fields, the service life of Ti alloy product has drawn much more attention. It’s been proven that the laser shock peening (LSP) is an effective technology to improve the fatigue performance of titanium alloy by introducing a large and deep compressive residual stress. In this paper, a microstructural fracture mechanics model incorporating the crack closure stress effect is presented to investigate the reinforcement mechanism of laser shock peened (LSPed) titanium alloy. Firstly, a rigid-plastic simplified model is utilized to describe the residual stress characteristics of LSPed Ti6Al4V. Then the extended Navarro-Rios model incorporating crack closure stress effect is established to systematically analyze the crack propagation behavior. Finally, the effect of crack closure stress on fatigue life can be accurately predicted. Result shows that the crack propagation processing is a behavior reflecting the deceleration and acceleration of the crack growth rate. A higher threshold stress is required for LSPed Ti6Al4V to promote the propagation of fatigue crack. The closure stress effect reduces the barrier stress and critical crack length in each grain leading to the highly raised fatigue life of LSPed Ti6Al4V. Besides, the closure stress effect has a greater improvement in fatigue performance for a sample with a shorter crack length and thus can be neglected for a long crack.
机译:随着钛合金在各种工程领域的广泛应用,Ti合金产品的使用寿命更加受到关注。已证明激光震动喷丸(LSP)是一种有效的技术,通过引入大而深的压缩残余应力来提高钛合金的疲劳性能。本文介绍了一种结合裂纹闭合应力效应的微结构破裂力学模型,研究了激光冲击(LSPED)钛合金的增强机理。首先,利用刚性塑料简化模型来描述LSPED Ti6Al4V的残余应力特性。然后建立了包含裂纹闭合应力效果的扩展Navarro-RiOS模型以系统地分析裂缝传播行为。最后,可以准确地预测裂纹闭合应力对疲劳寿命的影响。结果表明,裂缝繁殖处理是反映裂纹生长速率减速和加速度的行为。 LSPED Ti6Al4V需要更高的阈值应力,以促进疲劳裂纹的传播。闭合应力效应降低了导致LSPED Ti6Al4V的高度升高的疲劳寿命的每个谷物中的阻挡应力和临界裂缝长度。此外,闭合应力效应在具有较短裂缝长度的样品的疲劳性能方面具有更大的提高,因此可以忽略长裂纹。

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