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Investigations on Low Environmental Impact Machining Processes of Free Cutting Austenitic Stainless Steels

机译:自由切削奥氏体不锈钢的低环境冲击加工过程的研究

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In the present paper, sulfur, RE (rare earth) and bismuth were added to an austenite stainless steel. Low environmental impact machining processes of free cutting austenitic stainless steels was investigated by machinability testing. The results show that a significant amount of grey and dispersed inclusions were found in steel B. The inclusions are typical sulfide inclusions, and bismuth element is attached to double end of manganese sulfide inclusions. Some inclusions exhibit globular shape due to the presence of rare earths elements in steel B. Chip morphology was improved in steel B under the same turning conditions. The machinability of steel B is much better than that of steel A. This is attributed to the presence of free-cutting additives of sulfur, RE and bismuth in the austenitic stainless steels. Satisfactory mechanical properties were also obtained under the conditions of our experiments. The reasons why satisfactory mechanical properties were obtained may lie in that the sulfides and bismuth are soft phase, and the presence of rare earths elements contributes to the improvement of the toughness of the austenitic stainless steels.
机译:在本文中,将硫,Re(稀土)和铋加入奥氏体不锈钢中。通过可加工性测试研究了自由切削奥氏体不锈钢的低环境冲击加工过程。结果表明,在钢B中发现了大量的灰色和分散的夹杂物。夹杂物是典型的硫化物夹杂物,并且铋元素附着在硫化锰夹杂物的双端。由于钢B中存在稀土元素的存在,一些夹杂物表现出球状形状。在相同的转弯条件下,钢B在钢B中改善了芯片形态。钢B的可加工性远比钢A好多。这归因于奥氏体不锈钢中的硫,Re和铋的自由切割添加剂的存在。在我们的实验条件下也获得了令人满意的机械性能。获得令人满意的机械性能的原因可能位于硫化物和铋是软相的,并且稀土元素的存在有助于改善奥氏体不锈钢的韧性。

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