首页> 外文期刊>JSME International Journal. Series C, Mechanical Systems, Machine Elements and Manufacturing >Generation Mechanism of Work Hardened Surface Layer in Metal Cutting (Study of Mechanical Factors Acting on Depth of Work Hardened Surface Layer Using Calculation Model)
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Generation Mechanism of Work Hardened Surface Layer in Metal Cutting (Study of Mechanical Factors Acting on Depth of Work Hardened Surface Layer Using Calculation Model)

机译:金属切削中加工硬化表面层的生成机理(使用计算模型研究作用于加工硬化表面层深度的机械因素)

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摘要

Finish machining used to be carried out in grinding, but it is being replaced by cutting with very small undeformed chip thickness. In ultra precision process, the effects of the cutting conditions and the complicated factors on the machined surface integrity are the serious problems. In this research, work hardened surface layer was dealt with as an evaluation of the machined surface integrity and the effect of the mechanical factors on work hardening was investigated experimentally in orthogonal cutting. As a result, it was found that work hardened surface layer was affected not only by the shear angle varied under the cutting conditions and the thrust force of cutting resistance, but also by the thrust force acting point, the coefficient of the thrust force and the compressive stress equivalent to the bulk hardness. Furthermore, these mechanical factors acting on the depth of the work hardened surface layer were investigated with the calculation model.
机译:精加工曾经在磨削中进行,但现在被切削成很小的未变形切屑厚度所代替。在超精密加工中,切削条件和复杂因素对加工表面完整性的影响是严重的问题。在这项研究中,对加工硬化的表面层进行了处理,以评价加工表面的完整性,并在正交切削中实验研究了机械因素对加工硬化的影响。结果发现,加工硬化的表面层不仅受到切削条件下变化的剪切角和切削阻力的推力的影响,还受到推力作用点,推力系数和切削力的影响。压应力等于整体硬度。此外,利用计算模型研究了影响加工硬化表面层深度的这些机械因素。

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