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Application of holographic interferometry in he analysis of stress states in a crack root area

机译:全息干涉测量法在裂纹根区域中应力状态分析的应用

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This paper deals with the visualization and analysis of interaction of a cutting wedge disintegrator with plastic at low loads. For exploratory research, a contactless optical holographic interferometry method was used, allowing a comprehensive picture of the stress state when opening microcracks. An experimental model was set up for the purposes of the research. The structure of the model as well as its geometric parameters had to comply with the applied optical method. The method of holographic interferometry enabled us to record even the initial stages of the crack. Pictures of holographic interferograms allowed us to observe stress fields on the cutting wedge as well as on the loaded body in the form of interference fringes. In order to record the interferograms, we used the method of two exposures so that we gained double-exposure interferograms, which represent the state of the object during the second exposure. The first exposure was caused by superposition of object-related and reference wave after the object was subjected to a load; the second exposure occurred after the load was removed. We used quantitative analysis to determine stress intensity coefficients from holographic interferograms as followed by the calculation of stresses with respect to axes x and y. The analysis was done for loading forces 1.57 Nand 3.14 N. As the load applied to the cutting material was increasing, the density of interference fringes was increasing, too. (C) 2020 Optical Society of America
机译:本文涉及将切割楔形粉碎机与塑料在低负荷下的相互作用的可视化和分析。对于探索性研究,使用非接触光学全息干涉方法,在打开微裂纹时允许综合应力状态的图像。为研究的目的建立了一个实验模型。模型的结构以及其几何参数必须符合所施加的光学方法。全息干涉测量法使我们能够记录裂缝的初始阶段。全息干涉图的图片使我们能够观察切割楔子上的应力场,以及造成干涉条纹的形式的装载体。为了记录干涉图,我们使用了两种曝光的方法,以便我们获得了双曝光干扰图,该干扰图在第二次曝光期间表示对象的状态。在对象经受负荷之后,由物体相关和参考波的叠加引起的第一曝光;除去载荷后发生第二曝光。我们使用定量分析来确定来自全息干涉图的应力强度系数,如关于轴x和y的应力计算。为装载力进行分析1.57 NAND 3.14 N.当施加到切削材料的负荷增加时,干涉条纹的密度也增加。 (c)2020美国光学学会

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    《Applied optics》 |2020年第13期|共9页
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