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Influence of Reground Tool Sharpness on Micro-cutting Process

机译:台力刀具清真对微切工艺的影响

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Tool edge radius has obvious influences on micro-cutting process. It considers the ratio of the cutting edge radius and the uncut chip thickness as the relative tool sharpness (RST). FEM simulations of orthogonal cutting processes were studied with dynamics explicit ALE method. AISI 1045 steel was chosen for workpiece, and cemented carbide was chosen for cutting tool. Sixteen cutting edges with different RTS values were chosen for analysis. Cutting forces and temperature distributions were calculated for carbide cutting tools with these RTS values. Cutting edge with a small RTS obtains large cutting forces. Ploughing force tend to sharply increase when the RTS of the cutting edge is small. Cutting edge with a reasonable RTS reduces the heat generation and presents reasonable temperature distributions, which is beneficial to cutting life. The force and temperature distributions demonstrate that there is a reasonable RTS range for the cutting edge.
机译:刀具边缘半径对微切割过程具有明显的影响。 它考虑了切削刃半径和未切割芯片厚度的比率作为相对工具清晰度(RST)。 用动力学显式ALE方法研究了正交切割过程的有限元模拟。 选择AISI 1045钢用于工件,选择碳化物碳化物以切削工具。 选择具有不同RTS值的十六个切割边缘进行分析。 针对具有这些RTS值的碳化物切割工具计算切割力和温度分布。 具有小RT的切削刃获得了大的切割力。 当切削刃的RTS小时,犁力趋于急剧增加。 具有合理RTS的切削刃减少了发热并呈现出合理的温度分布,这有利于削减寿命。 力和温度分布表明了切削刃的合理RTS范围。

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