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Attempt of Electrodischarge Grinding with an Electrically Conductive Diamond-Cutting-Edge Wheel

机译:尝试用导电金刚石切削刃砂轮进行电磨

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摘要

Electro-discharge grinding (hereafter called ED-grinding) was carried out with a trial manufactured metal bond diamond wheel containing electrically conductive diamond grits (hereafter called EC-D-grits-wheel). In this research two effects i.e. removal action of workpiece by electrical discharge machining, and an in-process dressing action of the cutting edges on the grits are expected to take place. The results of ED-grinding with EC-D-grits-wheel (φ 100mm, SDE120Q80M) on tungsten carbide indicated a significant decrease of 21% in the grinding force, when the set discharge current was increased from 0A to 12A. It was also clarified from the alternative-grinding test with and without an electro-discharge action that stable grinding characteristics along with a reduced grinding force could be achieved in the case of the EC-D-grits-wheel with the electro-discharge action. High-speed camera photographs indicated that a stable discharge condition was achieved.
机译:用包含导电性金刚石砂的试制金属结合金刚石砂轮(以下称为EC-D砂轮)进行放电研磨(以下称为ED研磨)。在这项研究中,预期会产生两种效果,即通过放电加工对工件的去除作用以及切削刃对磨粒的加工中修整作用。当设定放电电流从0A增加到12A时,用EC-D砂轮(φ100mm,SDE120Q80M)在碳化钨上进行ED磨削的结果表明,磨削力显着降低了21%。从具有和不具有电火花作用的交替磨削试验中也可以看出,在具有电火花作用的EC-D砂轮的情况下,可以获得稳定的磨削特性,同时具有减小的磨削力。高速相机照片表明达到了稳定的放电条件。

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