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Computer simulation of super-magnetoelastic behavior near critical region of magnetic materials based on phase-field method

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摘要 Since the discovery of ferromagnetic morphotropic phase boundary(MPB)in 2010,the connotation and extension of MPB have been becoming more and more abundant.Over the last dozen years,much experimental work has been done to design magnetostrictive materials based on the MPB principle.However,due to the difficulty in direct experimental observations and the complexity of theoretical treatments,the insight into the microstructure property relationships and underlying mechanisms near the ferromagnetic MPB has not been fully revealed.Here,we have reviewed our recent computer simulation work about the super-magnetoelastic behavior near the critical region of several typical materials.Phase-field modeling and simulation are employed to explore the domain configuration and engineering in single crystals as well as the grain size effect in polycrystals.Besides,a general nano-embryonic mechanism for superelasticity is also introduced.Finally,some future perspectives and challenges are presented to stimulate a deeper consideration of the research paradigm between multiscale modeling and material development.
出处 《Rare Metals》 SCIE EI CAS CSCD 2023年第8期2477-2488,共12页 稀有金属(英文版)
基金 supported by the Natural Science Foundation of China(Nos.51701091,12174210 and 52174346) Shandong Provincial Natural Science Foundation,China(Nos.ZR2020QE028 and ZR2022ME030) the Innovation Team of Higher Educational Science and Technology Program in Shandong Province(No.2019KJA025) the Research Foundation of Liaocheng University(No.318012119) the Science and Technology Innovation Foundation of Liaocheng University(No.CXCY2021139)。
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