마그네슘 합금의 온간 동적재결정 구성방정식 최적화

Material model optimization for dynamic recrystallization of Mg alloy under elevated forming temperature

초록

A hot forming process is required for Mg alloys to enhance the formability and plastic workability due to the insufficient formability at room temperature. Mg alloy undergoes dynamic recrystallization (DRX) during the hot working process, which is a restoration or softening mechanism that reduces the dislocation density and releases the accumulated energy to facilitate plastic deformation. The flow stress curve shows three stages of complicated strain hardening and softening phenomena. As the strain increases, the stress also increases due to work hardening, and it abruptly decreases work softening by dynamic recrystallization. It then maintains a steady-state region due to the equilibrium between the work hardening and softening. In this paper, an efficient optimization process is proposed for the material model of the dynamic recrystallization to improve the accuracy of the flow curve. A total of 18 variables of the constitutive equation of AZ80 alloy were systematically optimized at an elevated forming temperature(300∘C) with various strain rates(0.001, 0.1, 1, 10/sec). The proposed method was validated by applying it to the constitutive equation of AZ61 alloy.

키워드

AZ80AZ61dynamic recrystallizationmaterial modeloptimizationthermo-mechanical flow curve
제목
마그네슘 합금의 온간 동적재결정 구성방정식 최적화
제목 (타언어)
Material model optimization for dynamic recrystallization of Mg alloy under elevated forming temperature
저자
조윤희윤종헌
DOI
10.5762/KAIS.2017.18.6.263
발행일
2017-06
저널명
한국산학기술학회논문지
18
6
페이지
263 ~ 268