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首页> 外文期刊>Optics and Lasers in Engineering >Combined implementing the hole-drilling method and reflection hologram interferometry for residual stresses determination in cylindrical shells and tubes
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Combined implementing the hole-drilling method and reflection hologram interferometry for residual stresses determination in cylindrical shells and tubes

机译:结合实施钻孔法和反射全息干涉法确定圆柱壳和管中的残余应力

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摘要

Main features inherent in simplified approach to residual stresses determination in cylindrical shells and tubes, external diameter of which is not less than 60 mm, by combing the hole-drilling method and reflection hologram interferometry are discussed in detail. Initial experimental information in a form of hole diameter increments in principal stress directions is derived from high-quality reflection holograms recorded near cylindrical objects of intermediate curvature value. Converting measured parameters into required stress values is based on the transition model that corresponds to plane stress conditions of pure membrane type. The technique developed is capable of determining residual stress component values within 5% accuracy in an absence of stress gradients over the probe hole diameter when a type of residual stress field corresponds to the transition model adopted. The accuracy analysis involved is based on matrix formulation of conventionally direct problem and an assumption on a pure membrane character of residual stress field under study for thin-walled shell. Required error estimations in a case of inspecting thick-walled cylindrical tube are obtained by combining the above-mentioned approach and an analogy of reconstructed fringe patterns with actual and artificial interferograms, which follow from drilling blind hole of the same geometrical parameters in thick-walled plates. Experimental verification of the developed approach is founded upon a determination of actual stresses in thin-walled cylindrical shell and obtaining residual stress distributions at the proximity of welded joint in thick-walled cylindrical tube.
机译:详细讨论了通过结合钻孔方法和反射全息干涉法确定外径不小于60 mm的圆柱壳和管中残余应力的简化方法所固有的主要特征。以主应力方向上的直径增量形式出现的初始实验信息是从记录在中等曲率值的圆柱物体附近的高质量反射全息图得出的。将测量的参数转换为所需的应力值是基于与纯膜类型的平面应力条件相对应的过渡模型。当残余应力场的类型与采用的过渡模型相对应时,在探针孔直径上没有应力梯度的情况下,开发的技术能够确定精度在5%以内的残余应力分量值。涉及的精度分析是基于传统直接问题的矩阵公式以及对薄壁壳体研究中残余应力场的纯膜特性的假设。通过将上述方法与重构条纹图样与实际干涉干涉图和模拟干涉图相结合,获得了在检查厚壁圆柱管的情况下所需的误差估计,这是在厚壁圆柱体上钻了相同几何参数的盲孔之后得出的板。通过确定薄壁圆柱壳中的实际应力并获得厚壁圆柱管中焊接接头附近的残余应力分布,可以对所开发方法进行实验验证。

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