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首页> 外文期刊>Materials Science and Engineering >A novel method to enhance CSL fraction, tensile properties and work hardening in complex concentrated alloys - Lattice distortion effect
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A novel method to enhance CSL fraction, tensile properties and work hardening in complex concentrated alloys - Lattice distortion effect

机译:增强复杂浓缩合金中CSL含量,拉伸性能和加工硬化的新方法-晶格畸变效应

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摘要

A framework has been developed to reduce the stacking fault energy of complex concentrated alloys (CCAs) or high entropy alloys based on increasing lattice distortion by choosing principal elements with large differences in moduli and atomic size. The framework and selection criteria have resulted in the inclusion of five CCA compositions for validation of the lattice distortion and three Fe-containing CCAs. Orientation imaging microscopy (OIM) was used to examine the fraction of special boundaries in all of the CCAs. Alloys with large lattice distortion contained high density of annealing twins. Both tensile properties and work hardening rate characteristics were evaluated. CCAs that were designed based on lattice distortion demonstrated improved ultimate tensile strength. Work hardening rate curves revealed the underlying variation in the tensile properties of various CCAs. For selected alloys, post-deformation OIM analysis of the lateral surface was carried out for establishing defect density variation.
机译:通过选择模量和原子尺寸差异较大的主要元素,在增加晶格畸变的基础上,开发了一种框架,以减少复杂的浓合金(CCA)或高熵合金的堆垛层错能。框架和选择标准已导致包括用于验证晶格畸变的五种CCA成分和三种含铁的CCA。定向成像显微镜(OIM)用于检查所有CCA中特殊边界的比例。具有大晶格畸变的合金包含高密度的退火孪晶。评估了拉伸性能和加工硬化速率特性。基于晶格畸变设计的CCA表现出更高的极限拉伸强度。加工硬化率曲线揭示了各种CCA拉伸性能的根本变化。对于选定的合金,对侧面进行了变形后的OIM分析,以建立缺陷密度变化。

著录项

  • 来源
    《Materials Science and Engineering》 |2018年第24期|383-391|共9页
  • 作者单位

    Center for Friction Stir Processing, and Advanced Materials and Manufacturing Processes Institute, Department of Materials Science and Engineering, University of North Texas;

    Center for Friction Stir Processing, and Advanced Materials and Manufacturing Processes Institute, Department of Materials Science and Engineering, University of North Texas;

    Center for Friction Stir Processing, and Advanced Materials and Manufacturing Processes Institute, Department of Materials Science and Engineering, University of North Texas;

    Center for Friction Stir Processing, and Advanced Materials and Manufacturing Processes Institute, Department of Materials Science and Engineering, University of North Texas;

    Weapons and Materials Research Directorate, US Army Research Laboratory;

    Weapons and Materials Research Directorate, US Army Research Laboratory;

    Weapons and Materials Research Directorate, US Army Research Laboratory;

    Center for Friction Stir Processing, and Advanced Materials and Manufacturing Processes Institute, Department of Materials Science and Engineering, University of North Texas;

    Center for Friction Stir Processing, and Advanced Materials and Manufacturing Processes Institute, Department of Materials Science and Engineering, University of North Texas;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Complex concentrated alloys; Lattice distortion; Tensile properties; Work hardening; Twinning;

    机译:复杂浓缩合金;晶格畸变;拉伸性能;加工硬化;孪晶;

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