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Cu-Ag合金细-微观不均匀变形的HRDIC研究
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作者 杨晓乐 庞博 +1 位作者 李文玉 杜三明 《塑性工程学报》 2026年第4期277-288,共12页
采用高分辨数字图像相关技术,结合半原位单轴拉伸实验,系统研究了Cu-4Ag和Cu-20Ag合金细-微观尺度的不均匀变形行为。结果表明:微观尺度下,Cu-4Ag合金滑移带主要在Cu基体内汇聚,形成间隔排列的高应变条纹;Ag颗粒阻碍滑移带扩展,并在Cu-A... 采用高分辨数字图像相关技术,结合半原位单轴拉伸实验,系统研究了Cu-4Ag和Cu-20Ag合金细-微观尺度的不均匀变形行为。结果表明:微观尺度下,Cu-4Ag合金滑移带主要在Cu基体内汇聚,形成间隔排列的高应变条纹;Ag颗粒阻碍滑移带扩展,并在Cu-Ag界面处形成应变集中。Cu-20Ag合金由于Ag相体积分数较高,滑移带集中形成不均匀的局部高应变区,在Ag相中表现出受阻、单侧穿透及完全穿透3种模式,存在协同变形现象。细观尺度上,Cu-4Ag合金的变形均匀性主要由Cu基体变形主导;而Cu-20Ag合金由于Ag含量较高,其变形不均匀性受异质界面影响更为显著。应变统计表明,随着变形量的增加,较软的Cu相应变均值始终高于Ag相,因此承载着更高的应变值,且持续增长的方差反映了应变的分散程度也在持续增大,即变形不均匀程度越来越高。铸态Cu-Ag合金作为异质双相材料,由于Cu相与Ag相的性质不同,二者在界面处产生应变梯度,导致界面处的几何必要位错堆积并产生背应力,引发异构诱导强化来提升材料强度。同时,该强化机制通过协调异质界面的应变分配延缓颈缩,从而协同优化了合金的强度与延展性。 展开更多
关键词 高分辨数字图像相关技术 Cu-Ag合金 应变场 不均匀变形
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Mapping the strain-localization evolution of grain boundary and its interactions with slip/twin at the microscale
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作者 Ran Ni Saijun Huang +6 位作者 Lingling Fan Kang Wei Ying Zeng Jiang Zheng Qudong Wang Hao Zhou Dongdi Yin 《Journal of Magnesium and Alloys》 2026年第1期251-267,共17页
Plastic strain in polycrystalline metals is highly localized in grain boundaries(GBs),slip bands(SBs)and twins.While extensive research has focused on intra-granular deformation mechanisms such as slip and twinning,st... Plastic strain in polycrystalline metals is highly localized in grain boundaries(GBs),slip bands(SBs)and twins.While extensive research has focused on intra-granular deformation mechanisms such as slip and twinning,strain localization at GBs has been largely overlooked.In this study,high-resolution digital image correlation(HRDIC)was employed to capture the strain distribution and its evolution during tension in an extruded pure Mg sheet.Particular attention was paid to strain localization at GBs and its governing factors.Results reveal that,at 3%applied strain,approximately 10%of GBs were categorized as extremely-high-strain GBs(defined as the GB where at least 20 data points have an effective shear strain(ε_(eff))value exceeding the 99th percentile of the overallεeff distribution),and the majority(84%)of them were observed to deform at even 0.5%applied strain.This suggests that early-stage deformation plays a critical role in subsequent GB strain localization.The mean strain value and grain boundary sliding(GBS)displacement of GBs increased significantly with applied strain,with progressively accelerating increasing rates observed in most instances.Most(~62%)GBs exhibiting slip transfer showed low strain,while a small fraction(~8%)of them exhibited extremely high strain.This indicates that slip transfer can mitigate GB strain localization in most cases.However,complex local conditions are also critical,and case-by-case analysis is essential.Moreover,GBs with misorientation angles ranging from 50°to 80°were found to be more likely to exhibit extremely high strain.This work provides valuable insights into GB strain localization,which is critical for further understanding the plastic deformation of polycrystalline Mg. 展开更多
关键词 Polycrystalline Mg Grain boundary Strain-localization evolution Slip transfer hrdic
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