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Non-Destructive Determination of Residual Stress Depth Profiles of Hybrid Components by Energy Dispersive Residual Stress Measurement

机译:通过能量分散残余应力测量的非破坏性测定混合分子的残余应力深度谱

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Through the combination of two or more materials to one compound, for example high-strength steel and aluminum, hybrid massive components can be manufactured, whose properties are specially adapted to the respective application. One of the challenges is the joining zone which is influenced by machining induced residual stresses. In order to examine the residual stress modifications by the machining process and in addition to analyze the influence of these residual stress gradients on the lifespan of hybrid components a non-destructive method of measuring depth-resolved residual stress is necessary. Therefore, an innovative energy dispersive X-ray measurement technique is used in the collaborative research center 1153 (CRC 1153). In this study the suitability of the method is examined by comparing the results with the angle dispersive method both in machined front surface of mono materials and hybrid shafts. A parametrical study shows the possibility to get greater depth information by variation of the measuring parameters Bragg angle, tilting angle, collimator and current. In addition, the results of the energy dispersive method combined with electrolytic removal is shown. Based on these results the evaluation of the reliability and reproducibility of energy dispersive residual stress measurements is completed.
机译:通过两种或多种材料的组合到一种化合物,例如高强度钢和铝,可以制造杂合的大规模组分,其性质专门适用于各自的应用。其中一个挑战是加入区域,其受加工诱导的残余应力影响。为了通过加工过程检查残留应力修改,并且除了分析这些残余应力梯度对混合分量的寿命的影响,需要测量深度分辨的残余应力的非破坏性方法是必要的。因此,在协作研究中心1153(CRC 1153)中使用创新的能量分散X射线测量技术。在该研究中,通过将结果与单声道材料和混合轴的机加工前表面进行比较,通过将结果与角度分散方法进行比较来检查该方法的适用性。参数研究表明,通过测量参数布拉格角度,倾斜角度,准直器和电流的变化,可以获得更大深度信息。此外,显示了能量分散方法与电解除去的能量分散方法的结果。基于这些结果,完成了能量分散残留应力测量的可靠性和再现性的评估。

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