OVERALL THERMOMECHANICAL BEHAVIOR OF SHAPE MEMORY ALLOYS : A Micromechanical Approach Based on Mean Field Theory
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概要
- 論文の詳細を見る
Overall thermomechanical behavior of the polycrystalline shape memory alloys is described from the micromechanical point of view by modeling the alloys as a matrix-inclusions material system. The martensite inclusions are assumed to be born in the austenite matrix at the moment when a transformation condition is satisfied there during thermomechanical loading. The macroscopic constitutive equation is derived in rate form by means of Eshelby's inhomogeneous theory. The Mori-Tanaka theory is employed to take into account the interaction of the martensite inclusions. The formula of the overall thermomechanical material parameters, which exhibits the effect of transformation, is derived explicitly.
- 社団法人日本材料学会の論文
- 1995-03-15
著者
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HASEGAWA Daisuke
Department of Pediatrics, St. Luke's International Hospital
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Tanaka Kikuaki
Department of Aerospace Engineering, Tokyo Metropolitan Institute of Technology
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Tanaka Kikuaki
Department Of Aerospace Engineering Tokyo Metropolitan Institute Of Technology
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Hasegawa D
Kanazawa Univ. Kanazawa Jpn
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Hasegawa Daisuke
Department Of Aerospace Engineering Tokyo Metropolitan Institute Of Technology
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BOHM Helmut
Institute of Lightweight Structures and Aerospace Engineering, Vienna University of Technology
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FISCHER Dieter
Christian Doppler Laboratory for Micromechanics of Materials, University for Mining and Metallurgy
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Fischer Dieter
Christian Doppler Laboratory For Micromechanics Of Materials University For Mining And Metallurgy
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Bohm Helmut
Institute Of Lightweight Structures And Aerospace Engineering Vienna University Of Technology
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Bohm Helmut
Institute Of Lightweight Design And Structural Biomechanics Vienna University Of Technology
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