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本文作者预见,电解磨齿可能发展成一种高效率、高精度、工具寿命长的齿轮精加工工艺.试验结果证明.齿形精度可达0.01mm,齿向凸肚修形可通过光电修形方便地达到,表面光洁度比机械珩齿略高。生产率以 m=3.25.Z=32,B=40, =20°27’淬火齿轮为例.机动时间约6分,公法线去除量为0.06mm.本文着重从机理研究上提高精度特性。具体内容有:(1)电解珩齿中,电解珩磨纠正精度的机理及精度特性的提高途径:(2) 电解珩齿过程动力学分析;(3)机械活化中的啮合原理问题。
The authors anticipate that electrolytic grinding may develop into a gear finishing process with high efficiency, high precision and long tool life. Test results prove. Tooth shape accuracy of up to 0.01mm, to the convex belly repair can be easily achieved by photoelectric modification, the surface finish slightly higher than the mechanical honing. The productivity is m = 3.25. Z = 32, B = 40, = 20 ° 27 ’quenching gear, for example. Maneuver about 6 minutes, the public normal removal of 0.06mm. This article focuses on improving the accuracy of the mechanism from the characteristics. The specific contents are as follows: (1) Electrolytic honing, the mechanism of improving the accuracy of electrolytic honing and improving the way of improving the characteristic: (2) kinetic analysis of electrolytic honing process; (3) the principle of meshing in mechanical activation.