Crystallographic orientation and variant selection of trimodal microstructure in dual-phase Mg-Li alloy after solid solution treatment

IF 5.6 2区 材料科学 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY
Xue Zhang , Kun Yang , Weiwu Bai , Guo Li , Guobing Wei , Weidong Xie , Hao Chen , Yan Yang , Xiaodong Peng
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引用次数: 0

Abstract

The orientation relationship (OR) between precipitated needle-shaped α'-Mg and matrix β-Li in a dual-phase Mg–Li alloy has been investigated. Most α'-Mg within the interior of β-Li matrix (αM'-Mg) follow the Burgers OR: {0001}{110},112¯0111, while α'-Mg at phase boundaries (αPB'-Mg) deviate from the Burgers OR, forming specific angles with the original α-Mg in the common 112¯0 direction. When the OR between the original α-Mg and β-Li is closer to the Burgers OR, more αPB′-Mg with the same orientation as the original α-Mg precipitate, which generates a strong variant selection for αM'-Mg that follows the Burgers OR. These αM'-Mg preferentially precipitate when they share common 112¯0 direction with α'-Mg that deviate from the Burgers OR to minimize overall strain. With increasing solid solution time, the increased αM'-Mg that deviate from the Burgers OR reduces deformation compatibility across phase boundaries, leading to diminished ductility.

Abstract Image

固溶处理后双相Mg-Li合金三峰组织的结晶取向及变异选择
研究了双相Mg-Li合金中析出的针状α′-Mg与基体β-Li的取向关系。β-Li基体内部的α'-Mg (α m '-Mg)大部分遵循Burgers OR:{0001}∥{110},< 112¯0 >∥< 111 >,而相界处的α'-Mg (α pb '-Mg)偏离Burgers OR,与原α-Mg在共同< 112¯0 >方向形成特定角度。α-Mg与β-Li之间的OR越接近Burgers OR, α-Mg的取向与α-Mg相同的αPB′-Mg析出量越大,αM′-Mg的变异选择越强。当α m′-Mg与偏离Burgers OR的α′-Mg共用< 112¯0 >方向时,这些α m′-Mg优先析出,使总应变最小。随着固溶时间的延长,αM′-Mg偏离Burgers OR的增加降低了相界的变形相容性,导致塑性降低。
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来源期刊
Scripta Materialia
Scripta Materialia 工程技术-材料科学:综合
CiteScore
11.40
自引率
5.00%
发文量
581
审稿时长
34 days
期刊介绍: Scripta Materialia is a LETTERS journal of Acta Materialia, providing a forum for the rapid publication of short communications on the relationship between the structure and the properties of inorganic materials. The emphasis is on originality rather than incremental research. Short reports on the development of materials with novel or substantially improved properties are also welcomed. Emphasis is on either the functional or mechanical behavior of metals, ceramics and semiconductors at all length scales.
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