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Machining hardmetal with CVD diamond direct coated ceramic tools: effect of tool edge geometryx

机译:使用CVD金刚石直接涂层陶瓷刀具加工硬质合金:刀刃几何形状的影响x

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A new challenge for chemical vapour deposited (CVD) diamond tools is the machining of hardmetal, one of the most difficult tasks a tool has to accomplish due to the extreme hardness of the workpiece. The development of cutting tool inserts made via direct diamond deposition on silicon nitride ceramic substrates for machining WC-Co materials was recently pointed as an alternative to the conventional brazed CVD diamond tips. In the present work, silicon nitride round inserts having different edge geometry, namely sharp, honed and chamfered edges, were produced by pressureless sintering. Turning of hardmetal containing 25 wt. approx Co was conducted in a numerically controlled lathe with approx 15 mu m thick CVD diamond coatings. The effects of depth of cut (0.1 to 0.3 mm), feed rate (0.03 to 0.3 mm center dot rev~(-1)) and wear on the cutting forces were monitored online using a dynamometer and were related to the surface finishing of the workpiece. Honed tools were more prone to diamond film delamination from the cutting edge than the chamfer or sharp edge ones. Adequate finishing quality (Ra<0.2 mu m) can be achieved with the sharp edge tools while machining tolerances are respected.
机译:化学气相沉积(CVD)金刚石工具的新挑战是硬质金属的加工,由于工件的极高硬度,这是工具必须完成的最困难的任务之一。最近指出,通过在氮化硅陶瓷基板上直接金刚石沉积制成的切削刀具刀片,用于加工WC-Co材料,可以替代传统的钎焊CVD金刚石刀尖。在目前的工作中,通过无压烧结生产出具有不同边缘几何形状的氮化硅圆形刀片,即锋利的,珩磨的和倒角的边缘。车削含25 wt。在具有约15微米厚的CVD金刚石涂层的数控车床中进行约Co。使用测力计在线监测切削深度(0.1至0.3 mm),进给速度(0.03至0.3 mm中心点转速〜(-1))和磨损对切削力的影响,并且与切削面的光洁度有关。工件。与倒角或锋利的刀具相比,珩磨的刀具更容易使金刚石膜从切削刃上剥离。使用锋利的刃口刀具可以达到足够的精加工质量(Ra <0.2微米),同时要注意加工公差。

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