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Experimental Research on Surface Roughness in High Speed Milling of Complex Surface Mold Steel

机译:复杂表面模具钢高速铣削表面粗糙度的试验研究

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摘要

Complex surface mold has been widely used in various industries, and high efficiency and high quality can been achieved through high-speed CNC milling processing. Surface roughness including transverse and longitudinal roughness is an important criterion for mold quality. A high-speed milling experiment was performed in mold steel P20 using cemented carbide ball-end mill to investigate the surface roughness. The effects of process parameters on roughness including spindle speed, feed per tooth and radial cutting depth were examined, and an analysis on the mechanism for two kinds of roughness of different tool paths was finished. The experimental results show that the longitudinal roughness improve obviously while the spindle speed and the feed per tooth increase on the high-speed conditions, and the transverse roughness increase significantly when the radial cutting depth increases. And for a smaller roughness value, the tool path should be selected along the direction in which the curvature changes evidently.
机译:复杂表面模具已广泛应用于各个行业,通过高速CNC铣削加工可以实现高效率和高质量。包括横向和纵向粗糙度的表面粗糙度是保证模具质量的重要标准。使用硬质合金球头立铣刀在P20模具钢上进行了高速铣削实验,以研究表面粗糙度。研究了加工参数对粗糙度的影响,包括主轴转速,每齿进给量和径向切削深度,并对两种不同刀具路径的两种粗糙度机理进行了分析。实验结果表明,在高速条件下,纵向粗糙度随主轴转速和每齿进给量的增加而明显提高,而横向半径随径向切削深度的增加而明显增加。对于较小的粗糙度值,应沿着曲率明显变化的方向选择刀具路径。

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