镁合金中与织构相关的强度-延性权衡:来自准确有效的半解析松弛约束模型的新见解

IF 7.5 2区 材料科学 Q1 ENGINEERING, INDUSTRIAL Journal of Materials Processing Technology Pub Date : 2025-04-01 Epub Date: 2025-02-03 DOI:10.1016/j.jmatprotec.2025.118755
Peike Yang , Yong Hou , Wenzhen Chen , Wenjie Wu , Wenke Wang , Wencong Zhang , Myoung-Gyu Lee
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引用次数: 0

摘要

结合松弛约束理论和Sachs假设,提出了一种描述镁合金塑性变形的半解析模型。该模型能够利用本构方程高效、准确地计算织构对镁合金强度-塑性的影响。该模型有效地捕捉了从强基底到纤维肌理弱化过程中拉伸流动曲线的变化。它解释了散度减弱如何促进孪生和抑制滑移,导致屈服强度降低和均匀伸长率增加。发散和偏差两种主要织构调整方法的强度-延性关系随调整角度的变化而变化。该模型强调,早期变形阶段的非基底滑移优势显著提高了强度,而孪晶对强度的贡献最小。相反,基底滑移优势是改善延性的最佳选择,而非基底滑移证明效果最差。通过调整模型参数,评估合金化对强度-延性权衡的影响,发现减小变形机制的激活差异可以改善材料的整体性能。这些发现为优化镁合金的工艺设计以实现强度和延展性的平衡提供了有价值的见解。
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Texture-related strength-ductility trade-off in Mg alloys: New insights from an accurate and efficient semi-analytical relaxed constraint model
A novel semi-analytical model combining relaxed constraint theory and the Sachs hypothesis was proposed to describe the plastic deformation of magnesium (Mg) alloys. The model stands out by its ability to efficiently and accurately calculate the strength-ductility of Mg alloys influenced by texture using a constitutive equation. The proposed model effectively captures the changes in tensile flow curves during the weakening process from strong basal to fiber texture. It explains how divergence weakening promotes twinning and inhibits slip, leading to reduced yield strength and increased uniform elongation. The strength-ductility relationship for the two main texture adjustment methods, divergence and deviation, is shown to vary with adjustment angles. The model emphasizes that non-basal slip dominance during early deformation significantly enhances strength, while twinning contributes the least. Conversely, basal slip dominance is optimal for improving ductility, whereas non-basal slip proves the least effective. By adjusting model parameters, the impact of alloying on strength-ductility trade-off is evaluated, revealing that reducing the activation differences in deformation mechanisms can improve the overall material performance. These findings provide valuable insights for optimizing process design to achieve a balanced strength and ductility in Mg alloys.
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来源期刊
Journal of Materials Processing Technology
Journal of Materials Processing Technology 工程技术-材料科学:综合
CiteScore
12.60
自引率
4.80%
发文量
403
审稿时长
29 days
期刊介绍: The Journal of Materials Processing Technology covers the processing techniques used in manufacturing components from metals and other materials. The journal aims to publish full research papers of original, significant and rigorous work and so to contribute to increased production efficiency and improved component performance. Areas of interest to the journal include: • Casting, forming and machining • Additive processing and joining technologies • The evolution of material properties under the specific conditions met in manufacturing processes • Surface engineering when it relates specifically to a manufacturing process • Design and behavior of equipment and tools.
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