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Comparison of Residual Stress Measurements Conducted by X-ray Stress Analysis and Incremental Hole Drilling Method

机译:X射线应力分析和增量钻探方法进行的残余应力测量比较

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摘要

The level of residual stresses is of great importance for many applications. In this work, the two established residual stress analysis methods x-ray stress analysis and incremental hole-drilling combined with electronic speckle pattern interferometry are compared. Each stress analysis method has its specific limitations. Furthermore, the residual stress state of a material is influenced by its processing history. To compare both methods, aluminum-based specimens (AlCu6Mn, AlZn5.5MgCu) with different processing histories were investigated. Measurements with both methods were conducted on the same specimens and on the same measurement spots. Highest stress levels were found in the mechanically machined specimen, while heat treatment via tempering or deposition welding shows reduced stress levels inside of the specimens. In case of cold spraying, the stresses in the feedstock material are considered negligible. In contrast, cold-spray coatings deposited on construction steel substrate exhibited tensile stresses, which relax over time at room temperature.
机译:对于许多应用,残余应力水平非常重要。在这项工作中,比较了两种成熟的残余应力分析方法X射线应力分析和增量钻孔与电子散斑图案干涉测量相结合。每个应力分析方法具有其特定限制。此外,材料的残余应力状态受其加工历史的影响。为了比较两种方法,研究了具有不同加工历史的铝基样品(Alcu6Mn,Alzn5.5mgcu)。两种方法的测量在相同的样本和相同的测量点上进行。在机械加工标本中发现了最高应力水平,而通过回火或沉积焊接的热处理显示出标本内部的应力水平降低。在冷喷涂的情况下,原料材料中的应力被认为是可忽略的。相比之下,沉积在建筑钢基板上的冷喷涂涂层表现出拉伸应力,在室温下随时间弛豫。

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