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Study on the Behavior of the Cast-iron Bonded Grinding Wheel to Machining Properties of Hard and Brittle Materials

机译:铸铁粘合砂轮在硬质材料加工性能下的研究

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Tungsten carbide which is a hard and brittle material was ground by cast-iron bonded diamond wheel with ELID (Electrolytic In-Process Dressing) technique, for the purpose of getting high efficiency, super-precision machining. Three kinds of cast-iron bonded diamond wheels with different grain size were adopted to get different grinding efficiency and surface quality of workpieces. The grinding properties of cast-iron bonded grinding wheels with different grain size and the ground surface quality of tungsten carbide are discussed in this paper. The experiment results indicate that, under the same feeding amount, the grinding efficiency of the wheel with bigger grain size is higher, and it could make the dimension accuracy of the workpiece controllable, but the wheel with smaller grain size could get better ground surface quality. The two grinding phases are decided by the ratio between the size of abrasive grain and the thickness of the oxide layer on the grinding wheel.
机译:碳化钨是一种硬质和脆性材料,采用铸铁粘结金刚石轮,采用ELID(电解工艺敷料)技术,为获得高效率,超精密加工。采用三种具有不同粒度的铸铁粘结金刚石轮,以获得不同的研磨效率和工件表面质量。本文讨论了具有不同晶粒尺寸和碳化钨的地表质量的铸铁粘结砂轮的研磨性能。实验结果表明,在相同的送入量下,具有更大粒度的车轮的研磨效率更高,并且可以使工件可控的尺寸精度,但具有较小粒度的轮子可以获得更好的地面质量。两个研磨相由磨粒尺寸与砂轮上的氧化物层的厚度之间的比率决定。

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