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首页> 外文期刊>Proceedings of the Society for Experimental Mechanics >Residual Stress Analysis on Thick Film Systems by the Incremental Hole-Drilling Method - Simulation and Experimental Results
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Residual Stress Analysis on Thick Film Systems by the Incremental Hole-Drilling Method - Simulation and Experimental Results

机译:对厚膜残余应力分析系统增量打眼方法——模拟和实验结果

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摘要

The residual stress state in thick film systems, as for example thermal spray coatings, is crucial for many of the component's properties and for the evaluation of the integrity of the coating under thermal and/or mechanical loading. Therefore it is necessary to be able to determine the local residual stress distribution in the coating, at the interface and in the substrate. The incremental hole-drilling method is a widely used method for measuring residual stress depth profiles, which was already applied for thermally sprayed coatings. But so far no reliable hole-drilling evaluation method exists for layered materials having a stress gradient in depth. The objective was to investigate, how far existing evaluation methods of the incremental hole-drilling method that are only valid for residual stress analysis of homogenous material states can be applied to thick film systems with coating thicknesses between 50 μm and 1000 μm and to point out the application limits for these already existing methods. A systematic Finite Element (FE) study was carried out for coating systems with an axisymmetric residual stress state σ_1 = σ_2. It is shown that conventional evaluation methods developed for homogeneous, non-layered material states can be successfully applied for a stress evaluation in the substrate and the coating for small and for sufficiently large coating thicknesses, respectively, regardless of the type of evaluation algorithm used i.e. the differential or the integral method. The same accounts for material combinations that have a Young's modulus ratio close to one, between 0.8 and 1.2. The studies indicated that outside the given ranges case specific calibration must be applied to calculate reliable results. Further, calibration data were determined case specifically for a selected model coating system. The accuracy of a residual stress determination using these case specific calibration data was examined and the sensitivity of the evaluation with respect to an accurate knowledge of the boundary conditions of the coating system i.e. the coating thickness and the Young modulus was studied systematically. Finally, the calibration data were applied on a thermally sprayed aluminium coating on a steel substrate analysis and the results for using the incremental hole drilling method were compared to results from X-ray stress analysis.
机译:残余应力状态在厚膜系统中,例如热喷涂涂层,是至关重要的和许多组件的属性涂层的完整性的评价热下和/或机械负荷。因此,能够确定是必要的当地的残余应力分布涂料,在接口和衬底。增量打眼是一个广泛的方法方法用于测量残余应力深度概要文件,已经申请了热喷涂料。打眼评价方法存在层状材料应力梯度深度。现有评价方法的增量井孔钻进方法,仅适用同质材料的残余应力分析州可以应用于厚膜系统涂层厚度50μm, 1000μm之间指出应用程序限制已经存在的方法。元素(FE)对涂层进行了研究系统与一个轴对称残余应力州σ_1 =σ_2。评价方法为同类开发的,non-layered材料可以成功申请了衬底应力评估和小的涂层和充分大的涂层厚度,分别无论哪一类型的评估算法即使用微分或积分方法。杨氏模量的组合比例接近一个,在0.8和1.2之间。表明,给定范围以外的情况具体的校准必须应用计算可靠的结果。确定情况下专门为选定的模型涂层系统。使用这些情况具体确定校准数据检查和敏感性评估的准确知识的边界条件即涂层厚度和涂层系统系统地杨氏模量进行了研究。最后,应用在标定数据热喷铝涂层钢底物分析和结果使用增量孔钻探方法进行了比较从x射线应力分析结果。

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