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Effects of flow forming parameters on the development of residual stresses in Cr-Mo-V steel tubes

机译:成形参数对Cr-Mo-V钢管残余应力发展的影响

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Residual stress generation during flow forming tubular components of Cr-Mo-V ferritic steel has been studied in detail using laboratory X-ray and neutron diffraction. In the present work, flow formed tubes were available for a detailed parameter study including level of wall thickness reduction, starting hardness of the preform material, feed rate, and roller geometry. The high sensitivity of the residual stress distributions to the process parameters is showcased by selecting values within relatively short ranges. In general, low wall thickness reduction, low preform hardness, high feed rate, and rollers with a low contact angle were preferable for keeping stresses at a low level. Mohr's circle analysis was employed in order to determine the magnitude and direction of the principal stress, which were found to change depending on the combination of parameters. Finally, the level of stress mitigation by postprocessing heat treatments was also characterised for selected samples.
机译:使用实验室X射线和中子衍射技术,对Cr-Mo-V铁素体钢的管状零件在流动成形过程中产生的残余应力进行了详细研究。在目前的工作中,可使用流动成型管进行详细的参数研究,包括壁厚减小的水平,预成型坯材料的起始硬度,进给速度和辊的几何形状。通过在相对短的范围内选择值,可以显示残余应力分布对工艺参数的高度敏感性。通常,为了将应力保持在较低水平,优选低壁厚减小,低预成型件硬度,高进给速率和具有低接触角的辊。为了确定主应力的大小和方向,采用了莫尔圆分析法,发现主应力的大小和方向随参数的组合而变化。最后,还对选定的样品进行了后处理热处理减轻应力的水平的表征。

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