Study of the Machinability of Steels Based on Metallurgical Aspects

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Machining represents 50% of the production cost of mechanical components. The study of steels and their respective metallurgical aspects such as chemical composition, cold working, microstructure and inclusions have a marked effect on the machinability of this class of metallic material. The aim of this study is to evaluate the machinability of steel in relation to metallurgical aspects, by means of a survey of the literature. It was found that in cold working, in order to increase the hardness and decrease the ductility of steels, it is necessary to promote their hardening. It was also found that in terms of chemical composition and microstructure, it was possible to verify respectively that the phase change caused by heat treatment affects its machinability and that the increase in the sulphur content of the steel results in the formation of small chips during machining, favouring less flank wear of the cutting tool. It can be seen that knowing the machinability of steel, its characteristics and adding some alloying elements and knowing some process parameters can improve the process.

Autorentext

Il est titulaire d'un diplôme en génie mécanique de l'université d'État du Maranhão - UEMA, d'une maîtrise en génie mécanique de l'UFU et d'un doctorat en génie mécanique de l'UNICAMP. Il est actuellement professeur adjoint au département d'ingénierie mécanique et de production de l'UEMA et coordonne également le cours d'ingénierie mécanique à l'UFMA.

Weitere Informationen

  • Allgemeine Informationen
    • GTIN 09786208019631
    • Genre Mechanical Engineering
    • Sprache Englisch
    • Anzahl Seiten 52
    • Herausgeber Our Knowledge Publishing
    • Größe H220mm x B150mm x T4mm
    • Jahr 2024
    • EAN 9786208019631
    • Format Kartonierter Einband
    • ISBN 620801963X
    • Veröffentlichung 28.08.2024
    • Titel Study of the Machinability of Steels Based on Metallurgical Aspects
    • Autor Jean Robert Pereira Rodrigues , Luana R. Pacheco Bittencourt
    • Untertitel Steel Machinability Assessment
    • Gewicht 96g

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