首页> 外文会议>International Conference on Structural Integrity >Role of Stacking Fault Energy on Symmetric and Asymmetric Cyclic Deformation Behavior of FCC Metals
【24h】

Role of Stacking Fault Energy on Symmetric and Asymmetric Cyclic Deformation Behavior of FCC Metals

机译:堆叠故障能量对对称和不对称循环变形行为的作用

获取原文

摘要

The present investigation is aimed towards an understanding on cyclic deformation behavior of two FCC metals having different stacking fault energy (SFE); annealed copper and annealed aluminium. Symmetric cyclic loading tests under strain-control mode have been conducted over strain amplitude from 0.2 to 1.0 pct until complete failure of the specimens. Asymmetric cyclic loading tests under stress-control mode, i.e. ratcheting tests, have also been conducted with various combinations of mean stress and stress amplitude till complete failure of the specimen. During symmetric cyclic loading, cyclic hardening response is followed by a stress saturation stage for both FCC metals. Whereas in case of copper, this saturation stage continues till failure, a secondary hardening stage appears at the end of stress saturation stage and continues till complete failure in case of aluminium. Such difference in cyclic hardening phenomenon of two different FCC metals is linked with the different values of SFEs. Asymmetric cyclic loading under stress-control mode results in continuous elongation of specimen in the direction of mean stress for both FCC metals. However, in case of aluminium such accumulation of inelastic strain ceases due to plastic shakedown after certain amount of ratcheting strain during asymmetric cyclic loading with stress combinations having maximum stress of 80 MPa or lower.
机译:目前的调查旨在了解两个FCC金属的循环变形行为,其具有不同堆叠故障能量(SFE);退火铜和退火铝。在应变控制模式下的对称循环加载试验已经通过应变幅度从0.2至1.0pct进行,直到样本的完全失败。在应力控制模式下的不对称循环加载试验,即棘轮试验,也通过各种组合的平均应力和应力幅度进行,直至样本的故障。在对称循环加载期间,循环硬化响应随后是FCC金属的应力饱和级。然而,在铜的情况下,这种饱和阶段继续失败,在应力饱和阶段的结束时出现二级硬化阶段,并且在铝的情况下继续完成故障。两种不同FCC金属的环状硬化现象的这种差异与SFE的不同值连接。在应力控制模式下的不对称循环加载导致标本的连续伸长型FCC金属的平均应力方向。然而,在铝的情况下,由于在不对称的循环载荷期间,在一定量的棘轮菌株后塑料沉淀出的塑料菌株的累积停止,应力组合具有80MPa或更低的最大应力。

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