Study on Surface Integrity of Mn-Zn Ferrite in Ultraprecision Machining

Bingge Li, Huadong Yu, Jinkai Xu, Yiquan Li, Zhanjiang Yu, Qimeng Liu, Zhongxu Lian
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Abstract

This paper primarily analyzed the mechanism of crack propagation in brittle materials micro-grinding, and obtained the empirical formula of the maximum unreformed thickness. Using the grinding rods with diameters of 0.7mm and 1.0mm, the single-factor experiments were carried out, through changing spindle speed, feed speed and depth of cut. We selected different processing parameters to study the general rules that the processing parameters affect the surface quality. The results show that the grinding depth has the most obvious influence on the surface quality, and the surface quality is the best when the grinding depth is 5 μm. The feed speed affects the surface quality secondarily, and the better surface quality can be obtained at 50 mm/min. The effect of spindle speed on surface quality is not obvious, but with the increase of spindle speed, the surface quality first increases and then decreases. We compare the different processing methods in order to study the effect of different processing methods on the surface quality. It can be concluded that in the case of smaller depth of cut, micro- grinding is easier to obtain high-quality machined surface than micro-milling
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锰锌铁氧体在超精密加工中的表面完整性研究
本文初步分析了脆性材料微磨削裂纹扩展机理,得到了最大未变形厚度的经验公式。采用直径为0.7mm和1.0mm的磨棒,通过改变主轴转速、进给速度和切削深度进行单因素实验。选择不同的加工参数,研究加工参数对表面质量影响的一般规律。结果表明:磨削深度对表面质量的影响最为明显,当磨削深度为5 μm时,表面质量最佳;进给速度对表面质量有二次影响,在50 mm/min时,表面质量较好。主轴转速对表面质量的影响不明显,但随着主轴转速的增加,表面质量先增大后减小。通过对不同加工方法的比较,研究不同加工方法对表面质量的影响。结果表明,在切削深度较小的情况下,微磨比微铣更容易获得高质量的加工表面
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