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Wear Reduction of Carbide Tools Observed in Cutting Ca-added Steels for Machine Structural Use

机译:减少切削用于机械结构的加钙钢中的硬质合金刀具的磨损

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摘要

The effect of Ca addition for improving machinability in carbide tool machining operation has been widely known. It has been proposed that oxide inclusions, which would work as "belag" on the tool surface during machining operation, has been responsible for this effect. In recent years, when Ca-treated steels containing higher sulfur are machined, MnS has been observed to form on the rake face, and this "inclusion layer," instead of the oxide belag, would serve favorably for machinability. In this paper, we have investigated the influence of several inclusions and the addition of Ca and/or Mg on rake face wear of carbide tools. The rake face wear of Ca-added steel was appreciably reduced due to the MnS inclusion layer formed on the rake face. However, the concurrent addition of Ca and Mg to the steel did not improve the rake face wear. Combined with a TEM observation in a cross section of MnS layer formed on the rake face, these results are understood by the different nature of oxide inclusions in terms of abrasive wear.
机译:Ca添加对改善硬质合金刀具加工操作中的可切削性的作用已广为人知。已经提出,氧化物夹杂物是这种作用的原因,氧化物夹杂物在机加工操作期间在工具表面上起“焊渣”的作用。近年来,当机加工含硫量更高的经过Ca处理的钢时,已观察到在前刀面上形成MnS,并且这种“夹杂物层”代替了氧化物炉渣,将有利于机加工性。在本文中,我们研究了几种夹杂物以及钙和/或镁的添加对硬质合金刀具前刀面磨损的影响。由于在前刀面上形成了MnS夹杂物层,因此显着降低了添加Ca的前刀面的磨损。但是,同时向钢中添加Ca和Mg并不能改善前刀面的磨损。与在前刀面上形成的MnS层的横截面中的TEM观察相结合,可以从氧化物内含物在磨料磨损方面的不同性质来理解这些结果。

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