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High-Machineability Steels

机译:高机加工性钢

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摘要

Collaborations between metallurgists and industrial engineers have led to the development and successful introduction of high-machineability steels that make it possible to significantly improve machining indices at machine factories. The highest level of machineability is seen in free-cutting steels alloyed with sulfur, lead, and bismuth. This article examines aspects of their composition and structure and explains the role of nonmetallic inclusions, the importance of their morphology, and the need to have them distributed uniformly in the metal. A metallurgical technology can be used to improve the machineability of ordinary structural steels through inoculation with calcium or microalloying with sulfur. In the latter case, while sulfur content is kept to the level stipulated by standards for structural steels (S <= 0.04 percent), the machineability of these steels is improved as a result of a change in the morphology of the sulfides. A diagram is presented to show the areas in which different variants of high-machineability steels are used most effectively.
机译:冶金学家和工业工程师之间的合作促成了高可加工性钢的开发和成功引进,从而有可能显着提高机械工厂的加工指数。在与硫,铅和铋形成合金的易切削钢中,可加工性达到最高水平。本文研究了其成分和结构的各个方面,并解释了非金属夹杂物的作用,其形态的重要性以及使它们均匀分布在金属中的必要性。冶金技术可用于通过接种钙或硫微合金化来改善普通结构钢的可加工性。在后一种情况下,尽管硫含量保持在结构钢标准规定的水平(S <= 0.04%),但由于硫化物形态的变化,这些钢的加工性得到了改善。给出了一个图表以显示最有效使用高加工性钢的不同变体的区域。

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