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Experiments and Regression Analysis of Grinding Hardened Layer Depth Based on Transverse Feed

机译:基于横向进料的研磨硬化层深度的实验与回归分析

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Based on orthogonal experiments, the influences of grinding process parameters including depth of cut (a_p), workpiece infeed velocity (v_w) and transverse regrinding value (Cr) on hardened layer depth (HLD) of 40Cr steel are studied in the grind-hardening process. The grind-hardening orthogonal experiments of 3-factors are performed on the 40Cr steel with the L_(16) (4~5) orthogonal table and the experimental optimization design theory. To understand quantitatively the effects of three grinding process parameters, the experimental data are modeled by regression. Among three grinding process parameters, the most important parameter is a_p, followed by v_w and C_r respectively. The experimental results indicate that HLD would increase with the increasing of the depth of cut and the decreasing of the workpiece infeed velocity in grind-hardening process, but HLD would decrease with the increasing of the interaction between the depth of cut and workpiece infeed velocity.
机译:基于正交实验,在研磨硬化过程中,研究了包括40Cr钢的切割(A_P),工件进样速度(V_W),工件进给速度(V_W),工件进给速度(V_W)和横向再生值(CR)的磨削过程参数的影响。用L_(16)(4〜5)正交表和实验优化设计理论,对40Cr钢进行3因子的研磨硬化正交实验。要定量地了解三个研磨过程参数的效果,实验数据被回归建模。在三个研磨过程参数中,最重要的参数是A_P,后跟v_w和c_r。实验结果表明,随着削减深度的增加和研磨硬化过程中的工件进给速度的降低,HLD会增加,但随着切割深度与工件进给速度之间的相互作用的增加,HLD会降低。

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