AZ31B 마그네슘 합금 판재의 구성식 개발

Constitutive Modeling of AZ31B Magnesium Alloys

초록

Magnesium alloy sheets in room temperature have unusual mechanical properties such as high in-plane anisotropy/asymmetry of yield stress and hardening behavior. In this paper, the continuum plasticity models considering the plastic behavior of AZ31B Mg alloy sheet were derived. A new hardening law based on modified two-surface model was developed to consider the general stress-strain response of metals including Bauschinger effect, transient behavior and the unusual asymmetry. Three deformation modes observed during the continuous tension/compression tests were mathematically formulated with simplified relations between the state of deformation and their histories. To include the anisotropy and asymmetry of the initial yield stress, the Drucker-Pragers pressure dependent yield surface was modified by adding anisotropic constants.

키워드

AZ31B Magnesium Alloy SheetAnisotropyAsymmetryTwo-surface ModelBauschinger EffectTransient BehaviorModified Drucker-Prager ModelAZ31B Magnesium Alloy SheetAnisotropyAsymmetryTwo-surface ModelBauschinger EffectTransient BehaviorModified Drucker-Prager Model
제목
AZ31B 마그네슘 합금 판재의 구성식 개발
제목 (타언어)
Constitutive Modeling of AZ31B Magnesium Alloys
저자
이명규정관수김헌영
발행일
2007-07
유형
Y
저널명
소성가공
16
4
페이지
234 ~ 238