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In Situ X-ray Diffraction Analysis of Stresses during Deep Rolling of Steel

机译:钢深轧过程中应力的原位X射线衍射分析

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Residual stresses originating from elasto-plastic deformation during mechanical processing can be analyzed post-process with various known methods. A new measurement method to measure and evaluate the strain and stress fields in situ under the contact point during a deep rolling process was developed to describe the dependence of the residual stresses from the internal material load. Using synchrotron radiation at European Synchrotron Radiation Facility (ESRF) (ID11), diffraction measurements were performed in transmission geometry during dynamical loading with different process parameters. The strain and stress fields were analyzed with high spatial resolution in an 8 mm × 4 mm area around the contact point during the process using a 13-mm tungsten carbide roller on samples of AISI 4140H steel. Fast data acquisition allowed the reconstruction of full two-dimensional (2D) strain and stress maps. These could be used to determine the response from the initial material state in front of the roller to the mechanically loaded region with plastic deformation up to the processed material with the resulting residual stresses. This comprehensive analysis was then used to link the internal material load with the resulting residual stresses in the final material state.
机译:机械加工过程中源自弹塑性变形的残余应力可以在加工后通过各种已知方法进行分析。开发了一种新的测量方法,用于测量和评估深轧过程中接触点下的应变和应力场,以描述残余应力与内部材料载荷之间的关系。使用欧洲同步加速器辐射设施(ESRF)(ID11)的同步加速器辐射,在动态加载过程中以不同的工艺参数对透射几何形状进行了衍射测量。在8 mm×中以高空间分辨率分析了应变和应力场;在加工过程中,使用13毫米碳化钨辊对AISI 4140H钢样品进行处理,使其接触点周围的面积为4毫米。快速的数据采集可以重建完整的二维(2D)应变和应力图。这些可以用来确定从辊子前面的初始材料状态到具有塑性变形的机械加载区域,直到产生残余应力的已加工材料的响应。然后使用这种综合分析将内部材料负载与最终材料状态下产生的残余应力联系起来。

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