纸质出版:2011
移动端阅览
[1]李爱群,陈鑫,左晓宝.铁磁形状记忆合金研究进展与展望(Ⅱ):本构模型[J].防灾减灾工程学报,2011,31(02):117-130.
李爱群, 陈鑫, 左晓宝. Progress and Prospect of Ferromagnetic Shape Memory Alloy(Ⅱ):Constitutive Model[J]. 2011, 31(2): 117-130.
[1]李爱群,陈鑫,左晓宝.铁磁形状记忆合金研究进展与展望(Ⅱ):本构模型[J].防灾减灾工程学报,2011,31(02):117-130. DOI: 10.13409/j.cnki.jdpme.2011.02.001.
李爱群, 陈鑫, 左晓宝. Progress and Prospect of Ferromagnetic Shape Memory Alloy(Ⅱ):Constitutive Model[J]. 2011, 31(2): 117-130. DOI: 10.13409/j.cnki.jdpme.2011.02.001.
阐述了铁磁形状记忆合金(Ferromagnetic Shape Memory Alloy
简写为FSMA)本构模型研究的重要性。以时间为顺序
重点介绍了FSMA本构模型研究的发展历程和研究现状。仔细分析了各种FSMA本构模型在理论基础、适用范围、精度以及复杂程度等方面的特点
讨论了各种理论应用于FSMA本构模型的局限性
指出了它们在面向应用时存在的问题。研究表明
由于FSMA兼具磁致形状记忆效应、热弹性形状记忆效应等多种独特性能
使对其本构模型的研究存在一定困难
进一步的研究还有待开展。最后指出
对既能揭示FSMA微观机理又能预测其宏观热磁力学行为的本构模型、描述FSMA所有特性的统一模型、面向应用的FSMA简化本构模型等问题
尚有待深入研究。
The importance of research on ferromagnetic shape memory alloy(FSMA) constitutive model was described.The development course and research status of FSMA constitutive model was emphatically introduced chronologically.The characteristics of various FSMA constitutive models such as basic theories
application scope
precision and complex degree were anatomized.And the limitations of various theories used in FSMA constitutive model were discussed.Then the problems may happen in actual application were pointed out for further research.Thus
it can be concluded that there were some difficulties in the study on the constitutive model owning to the characteristic that FSMA has so many unique properties such as magnetic shape memory effect
thermoelastic shape memory effect
and so on
so it should be improved in this field.Some problems and challenges such as FSMA constitutive model for both micro and macro scope
FSMA united model for its all properties and FSMA simplified constitutive model oriented to application need to be further studied.
铁磁形状记忆合金研究进展与展望(Ⅰ):材料、力学特性 [J]. 李爱群,陈鑫,左晓宝. 防灾减灾工程学报 . 2011(01)
磁控形状记忆合金的形变机理建模与仿真 [J]. 吕婷婷,段玉兵,李庆民. 材料导报 . 2008(06)
A continuum thermodynamics formulation for micro-magneto-mechanics with applications to ferromagnetic shape memory alloys [J] . Chad M. Landis. Journal of the Mechanics and Physics of Solids . 2008 (10)
Temperature dependence of magnetically induced deformation of Ni-Mn-Ga martensite [J] . The European Physical Journal Special Topics . 2008 (1)
A constrained theory on actuation strain in ferromagnetic shape memory alloys induced by domain switching [J] . Y.F. Ma,J.Y. Li. Acta Materialia . 2007 (9)
Model for field-induced reorientation strain in magnetic shape memory alloy with tensile and compressive loads [J] . Yuping Zhu,Guansuo Dui. Journal of Alloys and Compounds . 2007 (1)
Three-dimensional constitutive equations for Ni–Mn–Ga single crystals [J] . Jademond Kiang,Liyong Tong. Journal of Magnetism and Magnetic Materials . 2007 (1)
Micromechanical modeling of the stress-induced superelastic strain in magnetic shape memory alloy [J] . Yuping Zhu,Guansuo Dui. Mechanics of Materials . 2007 (12)
Modelling of rearrangement yield surface under biaxial magneticfield in Ni-Mn-Ga shape memory alloys [J] . Nicolas Creton,Laurent Hirsinger. International Journal of Applied Electromagnetics . 2006 (1,2)
Temperature dependence of reversible field-induced strain in Ni–Mn–Ga single crystal [J] . L. Straka,O. Heczko,S.-P. Hannula. Scripta Materialia . 2006 (8)
Model for temperature dependence of field-induced strain in ferromagnetic shape memory alloys [J] . R.C. O’Handley,D.I. Paul,S.M. Allen,M. Richard,J. Feuchtwanger,B. Peterson,R. Techapiesancharoenkij,M. Barandiarán,P. Lázpita. Materials Science & Engineering A . 2006
Stress effect on field-induced detwinning strain hysteresis loops in 5M martensite of Ni 49.9 –Mn 28.5 –Ga 21.6 alloy [J] . Laurent Hirsinger,Nicolas Creton. Materials Science & Engineering A . 2006
Magnetic field-induced martensitic variant reorientation in magnetic shape memory alloys? [J] . B. Kiefer,D. C. Lagoudas. Philosophical Magazine . 2005 (33-3)
Phase-field model for ferromagnetic shape-memory alloys [J] . J. X. Zhang,L. Q. Chen. Philosophical Magazine Letters . 2005 (10)
Stress–strain behaviour of Ni–Mn–Ga alloys: experiment and modelling [J] . V.A. Chernenko,V.A. L’vov,E. Cesari,J. Pons,A.A. Rudenko,H. Date,M. Matsumoto,T. Kanomata. Materials Science & Engineering A . 2004 (1)
Stress-induced phase transformations in Ni–Mn–Ga alloys: experiments and modelling [J] . L Hirsinger,N Creton,C Lexcellent. Materials Science & Engineering A . 2004 (1)
Different modeling concepts of magnetic shape memory and their comparison with some experimental results obtained in Ni–Mn–Ga [J] . A.A. Likhachev,A. Sozinov,K. Ullakko. Materials Science & Engineering A . 2004 (1)
Phenomenological model of variant change during magnetization of martensite [J] . Hiroyuki Kato,Kazuaki Sasaki. Philosophical Magazine Letters . 2004 (5)
A microscopic approach to the magnetic-field-induced deformation of martensite (magnetoplasticity) [J] . P. Müllner,V.A. Chernenko,G. Kostorz. Journal of Magnetism and Magnetic Materials . 2003 (3)
Statistical model of magnetostrain effect in martensite [J] . N.I. Glavatska,A.A. Rudenko,I.N. Glavatskiy,V.A. L’vov. Journal of Magnetism and Magnetic Materials . 2003 (2)
Internal variable model for magneto-mechanical behaviour of ferromagnetic shape memory alloys Ni-Mn-Ga [J] . L. Hirsinger,C. Lexcellent. Journal de Physique IV (Proceedings) . 2003
A constrained theory of magnetoelasticity [J] . Antonio DeSimone,Richard D. James. Journal of the Mechanics and Physics of Solids . 2002 (2)
Time-dependent magnetostrain effect and stress relaxation in the martensitic phase of Ni–Mn–Ga [J] . N.I. Glavatska,A.A. Rudenko,V.A. L’vov. Journal of Magnetism and Magnetic Materials . 2002 (2)
A phenomenological theory of giant magnetoelastic response in martensite [J] . V.A. L’vov,S.P. Zagorodnyuk,V.A. Chernenko. The European Physical Journal B . 2002 (1)
Magnetic-field-controlled twin boundaries motion and giant magneto-mechanical effects in Ni–Mn–Ga shape memory alloy [J] . A.A. Likhachev,K. Ullakko. Physics Letters A . 2000 (1)
Quantitative model of large magnetostrain effect in ferromagnetic shapell memory alloys [J] . A.A. Likhachev,K. Ullakko. The European Physical Journal B . 2000 (2)
Martensitic transformation in ferromagnets: experiment and theory [J] . V.A. Chernenko,V.A. L’vov,E. Cesari. Journal of Magnetism and Magnetic Materials . 1999
Magnetostriction of martensite [J] . R. D. James,Manfred Wuttig. Philosophical Magazine A . 1998 (5)
0
浏览量
365
下载量
6
CSCD
关联资源
相关文章
相关作者
相关机构
苏公网安备32010202012147号
