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High-speed end-milling of AISI 304 stainless steels using new geometrically developed carbide inserts

机译:使用新型几何开发的硬质合金刀片对AISI 304不锈钢进行高速立铣

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AISI 304 stainless steel possesses some properties, such as low thermal conductivity and high ductility that make them be classified under materials of poor machinability that exhibit a lot of difficulties during cutting. This work reports an experimental study on the performance of multilayered (TiN/TiCN/TiN) carbide inserts recently developed for end-milling of AISI 304 stainless steels. The length of chip-tool contact is small for these inserts as they contain a chip breaker that restricts the chip-tool contact area. In this study, the possible failure modes of tool wear were discussed and the effect of cutting speed and feed rate variation on tool life and tool wear modes was investigated. An increase in tool wear was noticed with increasing the cutting speed, while at the same time, a decrease in tool wear was observed with increasing the cutting feed. The most optimum cutting parameter for end-milling operation using a single end mill was established in terms of maximum productivity and maximum tool life.
机译:AISI 304不锈钢具有一些特性,例如低导热性和高延展性,使它们可归类为可加工性差的材料,这些材料在切割过程中会遇到很多困难。这项工作报告了一项有关最近开发用于AISI 304不锈钢端铣的多层(TiN / TiCN / TiN)碳化物刀片性能的实验研究。这些刀片的切屑工具接触长度很小,因为它们包含限制切屑工具接触面积的断屑槽。在这项研究中,讨论了刀具磨损的可能失效模式,并研究了切削速度和进给速度变化对刀具寿命和刀具磨损模式的影响。随着切削速度的增加,刀具磨损增加,而随着切削进给量的增加,刀具磨损减小。就最大生产率和最长刀具寿命而言,确定了使用单端铣刀进行端铣加工的最佳切削参数。

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