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非等温回归再时效工艺对7055铝合金组织与性能的影响
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作者 张缓 陈忠家 +1 位作者 陈锦涛 魏心航 《有色金属加工》 CAS 2024年第2期10-14,共5页
文章以7055铝合金为研究对象,通过TEM、力学性能测试、耐腐蚀性能测试等实验手段,探究非等温回归过程中升温速率对合金组织与性能的影响规律,回归升温速率设为40℃/h、60℃/h、600℃/h,升温截止温度为180℃。结果表明,当非等温回归再时... 文章以7055铝合金为研究对象,通过TEM、力学性能测试、耐腐蚀性能测试等实验手段,探究非等温回归过程中升温速率对合金组织与性能的影响规律,回归升温速率设为40℃/h、60℃/h、600℃/h,升温截止温度为180℃。结果表明,当非等温回归再时效工艺为(120℃×24 h)+(60℃/h→180℃)+(120℃×24 h)时,7055铝合金获得了高于T6态的强度,抗拉强度680 MPa,屈服强度641 MPa,延伸率14%。60℃/h升温速率下回归再时效后,晶内析出相细小弥散分布,晶界析出相断续排列,晶界无沉淀析出带(PFZ)明显,剥落腐蚀性能评级为EA,耐腐蚀性能优异。 展开更多
关键词 7055铝合金 非等温回归再时效工艺 升温速率 力学性能 耐腐蚀性能
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非等温回归再时效对Al-8Zn-2Mg-2Cu合金厚板组织及性能的影响 被引量:15
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作者 冯迪 张新明 +2 位作者 陈洪美 金云学 王国迎 《金属学报》 SCIE EI CAS CSCD 北大核心 2018年第1期100-108,共9页
基于铝合金厚板热处理时客观存在的非等温现象,利用非等温回归动力学模型、力学性能测试、电导率测试及TEM观察,研究了非等温回归温度场和时间的耦合效应对Al-8Zn-2Mg-2Cu(质量分数,%)合金厚板组织及性能的影响。结果表明,随着非等温回... 基于铝合金厚板热处理时客观存在的非等温现象,利用非等温回归动力学模型、力学性能测试、电导率测试及TEM观察,研究了非等温回归温度场和时间的耦合效应对Al-8Zn-2Mg-2Cu(质量分数,%)合金厚板组织及性能的影响。结果表明,随着非等温回归时间的延长,合金的电导率逐渐升高,硬度和强度逐渐下降。优化的非等温回归再时效制度使Mg Zn2相的尺寸分布范围宽化。因此,位错切过和位错绕过强化机制的合理匹配有效地降低了硬度的损失,同时合金的电导率得到显著提升。以105℃、24 h为预时效制度,经过慢速升温非等温回归处理120 min后再经120℃、24 h峰时效,Al-8Zn-2Mg-2Cu铝合金厚板的抗拉强度、屈服强度及电导率分别为620 MPa、593 MPa和21.1 MS/m,其综合性能优于单级峰时效(T6)及双级过时效(T73),且包含慢速升温的非等温回归再时效技术更适用于厚板的时效热处理。 展开更多
关键词 AL-ZN-MG-CU合金 厚板 非等温回归再时效 时效动力学
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Effect of non-isothermal retrogression and re-ageing on through-thickness homogeneity of microstructure and properties of Al-8Zn-2Mg-2Cu alloy thick plate 被引量:3
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作者 WU Cai-hong FENG Di +4 位作者 REN Jia-jia ZANG Qian-hao LI Ji-chen LIU Sheng-dan ZHANG Xin-ming 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第3期960-972,共13页
In order to improve the through-thickness homogeneity and properties of aviation aluminum alloy thick plate.The effect of heating-cooling retrogression and re-ageing on the performance of Al-8Zn-2Mg-2Cu alloy thick pl... In order to improve the through-thickness homogeneity and properties of aviation aluminum alloy thick plate.The effect of heating-cooling retrogression and re-ageing on the performance of Al-8Zn-2Mg-2Cu alloy thick plate was investigated by hardness tests, electrical conductivity tests and transmission electron microscopy(TEM) observation.Results revealed that, during retrogression heating, the fine pre-precipitates in surface layer dissolve more and the undissolved η′ or η phases are more coarsened than that of center layer. During slow cooling after retrogression,precipitates continue coarsening but with a lower rate and the secondary precipitation occurs in both layers. Finer precipitates resulting from the secondary precipitation are more in surface. However, the coarsening and secondary precipitation behaviors are restrained in both layers under quick cooling condition. The electrical conductivity and through-thickness homogeneity of precipitates increases while the hardness decreases with cooling rate decreasing. After the optimized non-isothermal retrogression and re-ageing(NRRA) including air-cooling retrogression, the throughthickness homogeneity which is evaluated by integrated retrogression effects has been improved to 94%. The tensile strength, fracture toughness and exfoliation corrosion grade of Al-8Zn-2Mg-2Cu alloy plate is 619 MPa, 24.7 MPa·m^(1/2)and EB, respectively, which indicates that the non-isothermal retrogression and re-aging(NRRA) could improve the mechanical properties and corrosion resistance with higher through-thickness homogeneity. 展开更多
关键词 non-isothermal ageing retrogression and re-ageing Al-8Zn-2Mg-2Cu alloy thick plate HOMOGENEITY
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