Strain Hardening Behavior Of Dual Phase, Non-grain Oriented Electrical And Aisi 304 Steels

Associacao Brasileira de Metalurgia,  Materiais e Mineracao
Guilherme Corrêa Soares
Organization:
Associacao Brasileira de Metalurgia, Materiais e Mineracao
Pages:
8
File Size:
1227 KB
Publication Date:
Aug 16, 2017

Abstract

Deeper understanding about the strain hardening behavior of steels has become necessary due to its importance in industrial processes such as mechanical cold forming, rolling and drawing. In this work, the strain hardening behavior of AISI 304, non-grain oriented electrical (NGO) and dual phase steels was investigated. Tensile tests were performed and the strain hardening behavior of each steel was studied by the Hollomon’s equation. X-ray diffraction measurements and hardness tests were also carried out in order to characterize the specimens. Different work hardening stages were observed in each steel during the deformation process. The results obtained are discussed in terms of the relationship among the instantaneous strain hardening coefficient, hardness and eventual phase transformations. The instantaneous strain hardening coefficient of dual phase and NGO increases after the yield point, rapidly reaching its maximum and then steadily decreases until tensile strength is reached. In AISI 304’s case, the strain hardening coefficient keeps raising to high values in response to a large strain and then rapidly decreases before reaching the tensile strength. In comparison to the other steels, AISI 304 shows higher instantaneous strain hardening coefficient value, which persists even in large strains. This is a consequence of its strain hardening mechanism based on stress-induced martensite transformation.
Citation

APA: Guilherme Corrêa Soares  (2017)  Strain Hardening Behavior Of Dual Phase, Non-grain Oriented Electrical And Aisi 304 Steels

MLA: Guilherme Corrêa Soares Strain Hardening Behavior Of Dual Phase, Non-grain Oriented Electrical And Aisi 304 Steels. Associacao Brasileira de Metalurgia, Materiais e Mineracao, 2017.

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