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High density dislocations enhance creep ageing response and mechanical properties in 2195 alloy sheet 被引量:1
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作者 WEI Shuo MA Pei-pei +3 位作者 CHEN Long-hui YANG Jian-shi ZHAN Li-hua LIU Chun-hui 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第7期2194-2209,共16页
The creep strain of conventionally treated 2195 alloy is very low,increasing the difficulty of manufacturing Al-Cu-Li alloy sheet parts by creep age forming.Therefore,finding a solution to improve the creep formabilit... The creep strain of conventionally treated 2195 alloy is very low,increasing the difficulty of manufacturing Al-Cu-Li alloy sheet parts by creep age forming.Therefore,finding a solution to improve the creep formability of Al-Cu-Li alloy is vital.A thorough comparison of the effects of cryo-deformation and ambient temperature large pre-deformation(LPD)on the creep ageing response in the 2195 alloy sheet at 160℃with different stresses has been made.The evolution of dislocations and precipitates during creep ageing of LPD alloys are revealed by X-ray diffraction and transmission electron microscopy.High-quality 2195 alloy sheet largely pre-deformed by 80%without edge-cracking is obtained by cryo-rolling at liquid nitrogen temperature,while severe edge-cracking occurs during room temperature rolling.The creep formability and strength of the 2195 alloy are both enhanced by introducing pre-existing dislocations with a density over 1.4×10^(15)m^(−2).At 160℃and 150 MPa,creep strain and creep-aged strength generally increases by 4−6 times and 30−50 MPa in the LPD sample,respectively,compared to conventional T3 alloy counterpart.The elongation of creep-aged LPD sample is low but remains relevant for application.The high-density dislocations,though existing in the form of dislocation tangles,promote the formation of refined T1 precipitates with a uniform dispersion. 展开更多
关键词 creep ageing Al-Cu-Li alloy high dislocation density cryogenic rolling dislocation strengthening
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结合自然时效和大预变形提升Al-Mg-Si-Cu合金蠕变时效响应研究 被引量:4
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作者 陈凱亮 刘春辉 +2 位作者 杨建使 马培培 湛利华 《塑性工程学报》 CAS CSCD 北大核心 2021年第5期103-112,共10页
通过改变常规冷变形和自然时效顺序,提出一种结合自然时效和大预变形提高Al-Mg-Si-Cu合金蠕变量和力学性能的工艺。通过硬度测试、蠕变时效测试、拉伸力学性能测试和透射电镜观察,对比了常规处理和改进工艺处理的试样在蠕变时效过程中... 通过改变常规冷变形和自然时效顺序,提出一种结合自然时效和大预变形提高Al-Mg-Si-Cu合金蠕变量和力学性能的工艺。通过硬度测试、蠕变时效测试、拉伸力学性能测试和透射电镜观察,对比了常规处理和改进工艺处理的试样在蠕变时效过程中的硬度、蠕变量、力学性能和微观结构的演变规律。结果表明,改进工艺处理能够有效延长合金蠕变时效第1阶段的持续时间,24 h内的总蠕变量比常规处理的试样提高约1.5~3.2倍,也能够显著提高Al-Mg-Si-Cu合金的强度,同时保持合金的断后伸长率不降低。透射电镜观察结果显示,大预变形合金初始位错密度大并在蠕变时效过程中显著降低,在晶格缺陷的诱导下,Al-Mg-Si-Cu合金中形成了壁状析出相,该析出相在经常规蠕变时效的合金中并未被发现。建立了基于位错密度和应力阈值的本构方程,可以准确预测大预变形态Al-Mg-Si-Cu合金的蠕变时效行为。 展开更多
关键词 蠕变时效 位错密度 析出 本构方程 AL-MG-SI-CU合金
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