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Surface roughness model for end milling: a semi-free cutting carbon casehardening steel (EN32) in dry condition

机译:立铣刀的表面粗糙度模型:干燥状态下的半自由切削碳表面硬化钢(EN32)

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This paper describes the development process of a surface roughness model for the end milling EN32M (a semi-free cutting carbon casehardening steel with improved merchantability). This steel can be carbonized and hardened to produce a hard wear resistant ease, with core strength of approximately 460 N/mm_2, and 160 BHN steel. Typical applications include earns, rollers, spindles, pins, etc. These materials are generally difficult to machine. The mathematical model for the surface roughness has been developed, in terms of cutting speed, feedrate, and axial depth of cut. The effect of these cutting parameters on the surface roughness has been carried out using design of experiments and the response surface methodology (RSM). A first-order equation covering the speed range 30-35 m/min and a second-order generation equation covering the speed range 24-38 m/min were investigated in dry condition.
机译:本文介绍了立铣刀EN32M(具有改进的可加工性的半自由切削碳渗碳钢)的表面粗糙度模型的开发过程。该钢可以碳化和硬化以产生坚硬的耐磨性,其芯强度约为460 N / mm_2,而钢为160 BHN。典型的应用包括金属,辊子,主轴,销等。这些材料通常很难加工。根据切削速度,进给速度和切削轴向深度,已经开发出表面粗糙度的数学模型。这些切削参数对表面粗糙度的影响已使用实验设计和响应表面方法(RSM)进行了。在干燥条件下研究了速度范围为30-35 m / min的一阶方程和速度范围为24-38 m / min的二阶生成方程。

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