Isothermal Transformations in High-Strength Cast Iron

R. Hasanli, I. Aliyev, Nizami Poladov, Lala Azimova, T. Tagiyev
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引用次数: 3

Abstract

Relevance. The technological process of manufacturing parts from high-strength cast irons is simpler and more economical than the process of manufacturing parts from steel. Cast irons are less sensitive to stress concentrators and strike loads. Spheroidal graphite cast irons can achieve DI 70 grades even in the cast state. Through hardening heat treatment or additional alloying, it is possible to produce cast irons of higher strength (grades DI 80 and above). As the strength properties of cast irons increase, disadvantages in the form of low ductility and plasticity become increasingly apparent. These problems can be compensated by providing an ausferritic, bainite or bainite-austenitic structure of the metal matrix of cast irons. A good solution is to obtain cast irons with a complex structure of the bainite-ausferrite type. In this regard, the relevance of this work is due to the fact that, in the practice of modern mechanical engineering, high-strength cast irons are increasingly used.
高强度铸铁的等温相变
的相关性。用高强度铸铁制造零件的工艺比用钢制造零件的工艺更简单、更经济。铸铁对应力集中物和冲击载荷不太敏感。球墨铸铁即使在铸造状态下也能达到DI 70级。通过淬火热处理或附加合金化,可以生产出更高强度(DI 80及以上)的铸铁。随着铸铁强度性能的提高,其塑性和延展性较差的缺点日益明显。这些问题可以通过提供铸铁金属基体的奥氏体、贝氏体或贝氏体-奥氏体组织来弥补。较好的解决办法是获得具有贝氏体-奥氏体型复杂组织的铸铁。在这方面,这项工作的相关性是由于,在现代机械工程的实践中,越来越多地使用高强度铸铁。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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