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Crystal symmetry and the reversibility of martensitic transformations.晶体对称性与马氏体相变的可逆性。
Nature. 2004 Mar 4;428(6978):55-9. doi: 10.1038/nature02378.

通过固-固相变得到的马氏体材料晶体结构

Derived crystal structure of martensitic materials by solid-solid phase transformation.

作者信息

Karami Mostafa, Tamura Nobumichi, Yang Yong, Chen Xian

机构信息

Mechanical and Aerospace Engineering, Hong Kong University of Science and Technology, Hong Kong.

Advanced Light Source, Lawrence Berkeley National Laboratory, California, USA.

出版信息

Acta Crystallogr A Found Adv. 2020 Jul 1;76(Pt 4):521-533. doi: 10.1107/S2053273320006087. Epub 2020 Jun 30.

DOI:10.1107/S2053273320006087
PMID:32608367
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7331891/
Abstract

A mathematical description of crystal structure is proposed consisting of two parts: the underlying translational periodicity and the distinct atomic positions up to the symmetry operations in the unit cell, consistent with the International Tables for Crystallography. By the Cauchy-Born hypothesis, such a description can be integrated with the theory of continuum mechanics to calculate a derived crystal structure produced by solid-solid phase transformation. In addition, the expressions for the orientation relationship between the parent lattice and the derived lattice are generalized. The derived structure rationalizes the lattice parameters and the general equivalent atomic positions that assist the indexing process of X-ray diffraction analysis for low-symmetry martensitic materials undergoing phase transformation. The analysis is demonstrated in a CuAlMn shape memory alloy. From its austenite phase (L2 face-centered cubic structure), it is identified that the derived martensitic structure has orthorhombic symmetry Pmmn with the derived lattice parameters a = 4.36491, b = 5.40865 and c = 4.2402 Å, by which the complicated X-ray Laue diffraction pattern can be well indexed, and the orientation relationship can be verified.

摘要

提出了一种晶体结构的数学描述,它由两部分组成:基本的平移周期性和晶胞中直至对称操作的不同原子位置,这与《国际晶体学表》一致。根据柯西-博恩假设,这样的描述可以与连续介质力学理论相结合,以计算由固-固相变产生的衍生晶体结构。此外,还推广了母晶格与衍生晶格之间取向关系的表达式。衍生结构使晶格参数和一般等效原子位置合理化,有助于对经历相变的低对称马氏体材料进行X射线衍射分析的指标化过程。在一种CuAlMn形状记忆合金中进行了分析。从其奥氏体相(L2面心立方结构)可以确定,衍生的马氏体结构具有正交对称性Pmmn,衍生晶格参数为a = 4.36491、b = 5.40865和c = 4.2402 Å,据此可以很好地对复杂的X射线劳厄衍射图样进行指标化,并验证取向关系。