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Effects of the Tool Angles on the Machined Surface Quality of KDP Crystal in Diamond Turning

机译:金刚石车削中刀具角度对KDP晶体加工表面质量的影响

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摘要

In the ultra-precision machining of KDP crystal, there are many factors affecting the surface quality. The experiments show that the rake angle and back angle of the tool have significant effects on machined surface roughness. Therefore, an efficient way to improve the surface roughness is to select a proper negative rake angle. In this study, the ANSYS static analysis method was employed to analyze the stress field distribution within the whole cutting region. A finite element simulation model was set up to calculate the residual stresses variation with tool's angles, which can be considered to select optimal rake and back angles in the ultra-precision machining of KDP crystal. Results show that the optimal tool rake angle and back angle are -49° and 7°, respectively. Finally, by using different tool angles to process KDP crystal and utilizing AFM to analyze the surface roughness, it can be found that the measurement results agree well with what are deduced from theoretical calculation.
机译:在KDP晶体的超精密加工中,有许多因素会影响表面质量。实验表明,刀具的前角和后角对加工的表面粗糙度有显着影响。因此,改善表面粗糙度的有效方法是选择合适的负前角。在这项研究中,采用ANSYS静态分析方法来分析整个切削区域内的应力场分布。建立了一个有限元模拟模型来计算残余应力随刀具角度的变化,在KDP晶体的超精密加工中,可以考虑选择最佳前角和后角。结果表明,最佳刀具前角和后角分别为-49°和7°。最后,通过使用不同的刀具角度加工KDP晶体,并利用原子力显微镜对表面粗糙度进行分析,可以发现测量结果与理论计算值吻合良好。

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