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Experimental Investigations on Micro Milling of Stavax Stainless Steel

机译:Stavax不锈钢微铣削的实验研究

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摘要

Micro mechanical milling of Stavax (modified AISI 420) stainless steel which is commonly used in the plastic injection molding industry due to its high corrosion resistance, machinability and wear resistance is studied in this paper. The goal of this study is to investigate the influence of process input parameters such as cutting speed, depth of cut, feed per tooth, radial immersion percentage, and plunging method on process outputs during circular pocketing operation. Tool wear, machining forces and surface roughness measurements are considered to identify the relationships between process inputs and outputs. It is observed that plunging method has a significant influence on tool wear which in turn affects micro milling forces and surface quality. The positive impact of micro milling with a pre-drilled hole is demonstrated. The relationship between radial immersion and feed per tooth is shown to be important in terms of tool wear and surface roughness.
机译:本文研究了Stavax(改进的AISI 420)不锈钢的微机械铣削,该材料由于其高的耐腐蚀性,可加工性和耐磨性而常用于塑料注射成型行业。这项研究的目的是研究在圆形装袋过程中,诸如切削速度,切削深度,每齿进给量,径向浸入百分比和切入方法等工艺输入参数对工艺输出的影响。考虑工具磨损,机加工力和表面粗糙度测量,以识别过程输入和输出之间的关系。可以看出,切入方法对刀具磨损有重要影响,进而会影响微铣削力和表面质量。演示了带有预钻孔的微铣削的正面影响。在刀具磨损和表面粗糙度方面,径向浸入量与每齿进给量之间的关系很重要。

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