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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Numerical and experimental investigation of defect detection in polymer materials by means of digital shearography with thermal loading
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Numerical and experimental investigation of defect detection in polymer materials by means of digital shearography with thermal loading

机译:利用热载荷的数字剪切技术检测聚合物材料中的缺陷的数值和实验研究

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摘要

Laser shearography is a relatively new and useful method for nondestructive testing of many kinds of material that need robust methods to be applicable in industrial environments. To get the best results of this inspection method, adjusting the loading parameters properly and precisely is of a great consideration. In this article, a new numerical-experimental procedure to study the effects of thermal loading parameters in the shearography test of defected materials is presented. In this regard, a numerical procedure was developed to simulate shearographic fringe patterns using finite element analysis and supplementary programming. The modeling method was evaluated using experimental tests in a Plexiglas circle subjected to the thermal and mechanical loadings. Flat-bottom holes indicating internal defects of the test part were simulated and experimented to study the parameters that should be adjusted and controlled to get desirable outcomes from shearography nondestructive testing. It has been showed that for each distinct case of nondestructive testing, a thermal loading diagram can be extracted to get credible results.
机译:激光剪切照相术是一种相对较新的有用的方法,可以对多种材料进行无损检测,这些方法需要适用于工业环境的可靠方法。为了获得这种检查方法的最佳结果,正确而精确地调整加载参数是一个非常重要的考虑因素。本文提出了一种新的数值实验程序,以研究热负荷参数在缺陷材料的剪切测试中的影响。在这方面,开发了一种数值程序,以使用有限元分析和补充编程来模拟剪切图像的条纹图案。使用实验测试在有机玻璃圆承受热和机械载荷的情况下评估了建模方法。模拟并试验了指示测试部件内部缺陷的平底孔,以研究应进行调整和控制的参数,以便从剪切成像无损检测中获得理想的结果。已经表明,对于每种不同的无损检测情况,可以提取热负荷图以获得可靠的结果。

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