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Electrocontact Discharge Dressing of a Resin-bonded CBN Grinding Wheel and its Grinding Performance

机译:树脂结合CBN砂轮的电接触放电修整及其磨削性能

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摘要

A conductive resin-bonded CBN grinding wheel is dressed by means of an electrocontact discharge (ECD) method, and the effects of two discharge patterns, spark discharge and arc discharge, on the grinding wheel surface topography are investigated. It is found that the CBN grains are firmly held with the resin-bond matrix with no erosion of the nickel coating which covers the CBN grains when the open-circuit voltage in the spark discharge area or a voltage lower than 20 V is applied. An alloy steel is plunge ground and the grinding performance is compared between the ECD method and the mechanical dressing method using a GC cup-wheel. When the ECD dressing is applied in spark discharge mode, the grinding force shows the same value as that obtained from the GC cup-wheel method. However, the wheel wear is only one-half of the original value and the deterioration of surface roughness is lower than those in the case of the GC cup-wheel method.
机译:通过电接触放电(ECD)方法对导电树脂粘结的CBN砂轮进行修整,并研究了两种放电方式(火花放电和电弧放电)对砂轮表面形貌的影响。发现当施加火花放电区域中的开路电压或低于20V的电压时,CBN晶粒被树脂键合基体牢固地保持,而覆盖CBN晶粒的镍涂层没有腐蚀。对合金钢进行切入磨削,并在ECD方法和使用GC杯式砂轮的机械修整方法之间比较磨削性能。在火花放电模式下应用ECD修整时,磨削力的显示值与从GC杯轮法获得的值相同。但是,砂轮磨损仅为原始值的一半,并且表面粗糙度的降低要低于GC杯轮法。

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