首页> 外文会议>Far East Forum on Nondestructive Evaluation/Testing >Experimental study of alternating current stress measurement under a uniaxial stress
【24h】

Experimental study of alternating current stress measurement under a uniaxial stress

机译:单轴应力下交流应力测量的实验研究

获取原文

摘要

The alternating current stress measurement (ACSM) which is developed from alternating current field measurement(ACFM) is a new and effective electromagnetic non-destructive testing method with greatly application potential for stress measurement. Using this technology to detect the magnetic field disturbance on the specimen caused by the stress can realize the assessment for the degree of stress concentration. In the present paper, the relationship of stress and induced magnetic field was studied by tensile experiments of 20# low carbon steel. Experiment results which are extremely valuable show when the tensile force is less than the yield strength of the specimen, the percentage change of testing signal in the vertical direction of stress can be up to 8% and higher than that in the parallel direction. When the tensile force increases from 0kN to 40 kN, which can exceed the yield strength, the percentage change of testing signal in the vertical direction increases dramatically and can be up to 26%, while that in the parallel direction can be up to 23% too, which can effectively detect the degree of stress concentration of the ferromagnetic specimen. Meanwhile, a mathematical model of the relationship between stress and induced magnetic field was builded under the external magnetic field according to the principle of ferromagnetics, which can provide a reasonable interpretation for experiments.
机译:由交流场测量(ACFM)开发的交流应力测量(ACSM)是一种新的和有效的电磁非破坏性测试方法,具有极大的应力测量潜力。使用该技术来检测由应力引起的样本上的磁场干扰可以实现对应力浓度程度的评估。在本文中,通过20#低碳钢的拉伸实验研究了应力和诱导磁场的关系。实验结果是极其有价值的表现,当拉力小于样本的屈服强度时,测试信号在垂直应力方向上的百分比变化可以高达8%并且高于平行方向的百分比。当拉伸力从0kn增加到40KN时,其可能超过屈服强度,垂直方向上的测试信号的百分比变化显着增加,最高可达26%,而平行方向可以高达23%此外,这可以有效地检测铁磁性标本的应力浓度程度。同时,应力和诱导磁场之间的关系的数学模型根据铁磁体原理在外部磁场下建成了基础,这可以提供对实验的合理解释。

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