Effect of Electroplastic-Assisted Grinding on Surface Quality of Ductile Iron

Shuo Feng, Dongzhou Jia, Yanbin Zhang, Xiaoqiang Wu, Erkuo Guo, Rui Xue, Taiyan Gong, Haijun Yang, Xiaoxue Li, Xin Jiang
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Abstract

Ductile iron is a heterogeneous material. The presence of spherical graphite and a hard and brittle structure makes the surface of the workpiece easily form pits and crack defects under harsh grinding conditions, which seriously affects the service life and service performance of the workpiece. The new assisted grinding process based on the electroplastic effect is expected to avoid the surface defects of ductile iron. By comparing the surface roughness and microstructure of conventional grinding and electroplastic-assisted grinding, the superiority of electroplastic-assisted grinding surface quality is confirmed. Further discussion is presented on the impact of grinding parameters on the workpiece’s surface quality under the same electrical parameters. The results show that the sensitivity of surface roughness to grinding parameters from strong to weak is grinding wheel speed, feed speed and grinding depth. The optimal combination of grinding parameters is determined as a grinding wheel speed of 30 m/s, a feed speed of 0.5 m/min and a grinding depth of 10 μm.
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电塑性辅助磨削对球墨铸铁表面质量的影响
球墨铸铁是一种异质材料。球状石墨和硬脆结构的存在,使得工件表面在恶劣的磨削条件下容易形成凹坑和裂纹缺陷,严重影响工件的使用寿命和使用性能。基于电塑性效应的新型辅助磨削工艺有望避免球墨铸铁的表面缺陷。通过比较传统磨削和电塑辅助磨削的表面粗糙度和显微组织,证实了电塑辅助磨削表面质量的优越性。进一步讨论了在相同电参数下磨削参数对工件表面质量的影响。结果表明,表面粗糙度对磨削参数的敏感性从强到弱依次为砂轮速度、进给速度和磨削深度。磨削参数的最佳组合为砂轮速度 30 m/s、进给速度 0.5 m/min、磨削深度 10 μm。
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