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Effect of tool edge geometry on cutting force and surface roughness when hard turning tool steel

机译:硬车刀钢时刀刃几何形状对切削力和表面粗糙度的影响

摘要

High usage of hardened steel in the automotive, gear, bearing, tool and die making industries, makes it a highly suitable material for industrial production and research. This study was undertaken to investigate the performance of coated ceramic insert with different edge preparations in terms of cutting force and surface roughness. Plain turning experiments were carried out under dry cutting condition at two different cutting speeds and feed rates with a constant depth of cut. The workpiece material is ASSAB DF-3 hardened steel with a 55 ± 1 HRC hardness. Results showed that insert edge preparation had a direct influence on the radial and feed forces but not on the tangential force. The use of T-land edge preparation results in the lowest radial and feed forces. In terms of surface finish, the use of honed with finishing wiper insert results in obtaining the lowest surface roughness values. Feed rate had a significant effect on surface roughness whereby by increasing feed rate, the surface roughness value also increased, whereas the effect of cutting speed was found to be insignificant. Increasing cutting speed resulted in lower feed and tangential forces however by increasing feed rate all cutting forces increased.
机译:硬化钢在汽车,齿轮,轴承,工具和模具制造行业的大量使用,使其非常适合工业生产和研究。进行这项研究是为了研究切削力和表面粗糙度方面不同边缘处理的涂层陶瓷刀片的性能。在干切削条件下以恒定的切削深度在两种不同的切削速度和进给速度下进行平车削实验。工件材料为ASSAB DF-3硬化钢,硬度为55±1 HRC。结果表明,刀片的刃口准备对径向力和进给力有直接影响,但对切向力没有直接影响。使用T形刃口边缘准备可以使径向力和进给力最小。就表面光洁度而言,使用带有精加工刮水刀片的珩磨可得到最低的表面粗糙度值。进给速度对表面粗糙度有显着影响,因此通过提高进给速度,表面粗糙度值也会增加,而切削速度的影响却不明显。切削速度的提高导致进给力和切向力降低,但是,通过提高进给速度,所有切削力都会增加。

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