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首页> 外文期刊>Journal of Mechanical Science and Technology >Experimental study on micro-grinding force and subsurface microstructure of nickel-based single crystal superalloy in micro grinding
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Experimental study on micro-grinding force and subsurface microstructure of nickel-based single crystal superalloy in micro grinding

机译:微磨削镍基单晶超合金微磨力和地下微观结构的试验研究

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摘要

Nickel-based single crystal superalloy has no grain boundary, which leads to the removal mechanism difference between single crystal material and polycrystalline material. Firstly, the removal mechanism of grinding nickel-based single crystal superalloy is analysed. Then, the developed prediction model of the tangential force F-t and the normal force F-n are established. Forthermore, the impacts of grinding parameters on grinding force and microstructure of grinding surface and sub-surface are analysed. Finally, some measurements to reduce or prevent recrystallization are proposed. As a result, the most shear slipping planes of nickel-based single crystal superalloy are {111} planes; with the increasing of the feeding rate and grinding depth, the micro-grinding force and the thickness of subsurface plastic deformation increase; the micro-grinding force and the thickness of subsurface plastic deformation decrease with the increasing of spindle speed. These results have some theoretical and engineering significance to the production of single crystal material parts.
机译:基于镍的单晶高级合金没有晶界,这导致单晶材料和多晶材料之间的去除机理差异。首先,分析了研磨基镍的单晶超合金的去除机理。然后,建立了切向力F-T的发育预测模型和正常力F-N。迈出了,分析了研磨参数对研磨力和研磨表面和亚表面的微观结构的影响。最后,提出了一些减少或防止重结晶的测量。结果,基于镍的单晶高温合金的最多剪切滑动平面是{111}平面;随着饲养速度和研磨深度的增加,微磨力和地下塑性变形的厚度增加;随着主轴速度的增加,微磨力和地下塑性变形的厚度降低。这些结果对单晶材料部件的生产具有一些理论和工程意义。

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