首页> 外文会议>International Conference on Advances in Experimental Mechanics: Integrating Simulation and Experimentation for Validation >The Effect of Plastic Deformation on the Thermoelastic Constant and the Potential to Evaluate Residual Stress
【24h】

The Effect of Plastic Deformation on the Thermoelastic Constant and the Potential to Evaluate Residual Stress

机译:塑性变形对热弹性恒定的影响及评价残余应力的潜力

获取原文

摘要

In some metals it has been shown that the introduction of plastic deformation or strain modifies the thermoelastic constant, K. If it was possible to define the magnitude of the change in thermoelastic constant over a range of plastic strain, then the plastic strain that a material has experienced could be established based on a measured change in the thermoelastic constant. This variation of the thermoelastic constant and the ability to estimate the plastic strain that has been experienced, has potential to form the basis of a novel non-destructive, non-contact, full-field technique for residual stress assessment using thermoelastic stress analysis (TSA). Recent research has suggested that the change in thermoelastic constant is related to the material dislocation that occurs during strain hardening, and thus the change in K for a material that does not strain harden would be significantly less than for a material that does. In the work described in this paper, the change in thermoelastic constant for three materials (316L stainless steel, AA2024 and AA7085) with different strain hardening characteristics is investigated. As the change in thermoelastic response due to plastic strain is small, and metallic specimens require a paint coating for TSA, the effects of the paint coating and other test factors on the thermoelastic response have been considered.
机译:在一些金属中,已经表明,塑性变形或菌株的引入改变了热弹性常数,K。如果可以在一系列塑料应变范围内定义热弹性恒定的变化的大小,则是一种材料的塑料应变可以基于热弹性常数的测量变化来建立经历。热弹性常数的这种变化和估计已经经历的塑性应变的能力,具有使用热弹性应力分析(TSA)的残留应力评估的新型非破坏性,非接触,全场技术的基础(TSA )。最近的研究表明,热弹性常数的变化与在应变硬化期间发生的材料位错有关,因此对于不菌株硬化的材料的k的变化显着小于其的材料。在本文描述的工作中,研究了三种材料(316L不锈钢,AA2024和AA7085)热弹性常数的变化,具有不同应变硬化特性。随着由于塑性菌株引起的热弹性响应的变化很小,金属样品需要用于TSA的涂料涂层,所考虑了涂料涂层和其他测试因素对热弹性反应的影响。

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