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- W2180815485 abstract "In this chapter, a three-dimensional phenomenological constitutive model for the simulation of shape memory alloys is introduced. The proposed macromechanical model is based on microplane theory. Microplane approach is chosen to have limited material parameters in that all of those are measurable by simple tests. User material subroutine is developed to implement the proposed model in a commercial finite element package. NiTi hollow tube specimens are under various loading conditions in order to experimentally study the superelastic response of shape memory alloys. Comparing experimental data with numerical results in simple tension and pure torsion as well as proportional and nonproportional tension-torsion loadings demonstrates the capability of proposed model in constitutive modeling of shape memory alloys." @default.
- W2180815485 created "2016-06-24" @default.
- W2180815485 creator A5018225291 @default.
- W2180815485 date "2015-11-25" @default.
- W2180815485 modified "2023-09-26" @default.
- W2180815485 title "Modeling and Simulation of Shape Memory Alloys using Microplane Model" @default.
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- W2180815485 doi "https://doi.org/10.5772/61124" @default.
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