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Effect of Different Edge Preparation on High Speed Turning Hardened Steel Process

机译:不同刃口处理对高速车削淬火钢工艺的影响

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摘要

Through combining turning experiments and FE simulations, this paper studied the effects of force, temperature and residual stress of machined surface on high speed hard turning GCr15 bearing steel hardened to HRC60-62 with three kinds of ordinary edge preparation (sharp-edge, hone and chamfer). The experiment and simulation results indicated that the diathermanous proportion of chamfered edge preparation to tool and machined surface is less, and this distribution of cutting temperatures is useful for tool life and machined surface quality. The simulation results showed that cutting force had a descending tendency with increasing of cutting speed, which is in accordance with the change rules of machining general rigidity material, and it proved that FE simulations have good precision. The simulation results of residual stress of machined surface showed that residual tensile stress existed in machined surface using both honed and chamfered tools, and a highest compressive stress (about -200MPa) existed among 150-200μm of the depth into the workpiece surface. The difference was that the depth of superficial harden layer with honed tools is larger than that with chamfered tools.
机译:通过车削实验和有限元模拟的结合,研究了加工表面的力,温度和残余应力对高速硬车削用HRC60-62淬硬的HRc60-62高速硬质GCr15轴承钢的影响。倒角)。实验和仿真结果表明,倒角边缘准备在工具和加工表面上的透热比例较小,并且切削温度的这种分布对于工具寿命和加工表面质量很有用。仿真结果表明,切削力随着切削速度的增加而呈下降趋势,这与加工一般刚性材料的变化规律相吻合,证明了有限元模拟具有良好的精度。加工表面残余应力的仿真结果表明,使用珩磨和倒角工具在加工表面都存在残余拉伸应力,并且在进入工件表面深度的150-200μm之间存在最高的压缩应力(约-200MPa)。不同之处在于,使用珩磨工具的表面硬化层的深度大于使用倒角工具的表面。

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