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Constitutive equation and hot processing maps of Al-5Ti-1B master alloy 被引量:1
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作者 Fu-Wei Kang Jie Zhou +3 位作者 Zhi-Wei Wang Xue-Min Zhang Yi-Cheng Feng Er-Jun Guo 《Rare Metals》 SCIE EI CAS CSCD 2018年第8期668-674,共7页
The isothermal compression tests of A1-5Ti- 1B master alloy were conducted on the thermal mechanical simulator Gleeble-1500D at the deformation temperature range of 300-450 ℃,the strain rate range of 0.01- 10.00 s^-l... The isothermal compression tests of A1-5Ti- 1B master alloy were conducted on the thermal mechanical simulator Gleeble-1500D at the deformation temperature range of 300-450 ℃,the strain rate range of 0.01- 10.00 s^-l, and the engineering strain of 50 %. The effects of deformation temperatures and strain rates on the flow stress were analyzed by the true stress-true strain curves. The result indicates that the flow stress increases with the increase of strain rate, while it decreases with the increase of temperature. The hot deformation activation energy of A1-5Ti-IB master alloy is calculated to be 250.9 kJ.mol^-1, and the constitutive equation is established as ε=1.97 x lO^19[sinh(O.O15δ)^11.14exp(-250.9/RT), and the validity of this constitutive equation is verified. Based on dynamic material model (DMM) criterion, the hot processing map of AI-5Ti-1B master alloy is obtained. The optimum hot extrusion conditions are determined as deformation temperature of 400℃ and strain rate of 1.00 s^-1, and the flow instability only appears at the temperature range of 300-340℃ at the base of the hot processing map. 展开更多
关键词 al-5ti-1B master alloy Flow stress constitutive equation Hot processing map
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新型Al-5Ti-0.8C中间合金对Al-Cu-Mn合金组织形貌和高温力学性能的影响 被引量:1
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作者 张国伟 牛经纬 +1 位作者 徐宏 贾红敏 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2021年第7期2321-2328,共8页
采用自蔓延燃烧反应法制备了一种新型Al-5Ti-0.8C中间合金,在此基础上采用不同含量(0%,0.1%,0.3%,0.5%,质量分数,下同)的中间合金对Al-Cu-Mn合金进行变质处理,研究该中间合金及其含量对Al-Cu-Mn合金组织形貌和高温力学性能的影响。结果... 采用自蔓延燃烧反应法制备了一种新型Al-5Ti-0.8C中间合金,在此基础上采用不同含量(0%,0.1%,0.3%,0.5%,质量分数,下同)的中间合金对Al-Cu-Mn合金进行变质处理,研究该中间合金及其含量对Al-Cu-Mn合金组织形貌和高温力学性能的影响。结果表明:新型Al-5Ti-0.8C中间合金能够显著细化Al-Cu-Mn合金的晶粒尺寸,提高合金热处理过程中θ′(Al2Cu)相的析出密度,且细化析出相尺寸。其次,变质处理后合金的高温抗拉伸强度显著提高,且随着温度升高,抗拉伸强度的下降程度减小,主要原因在于变质处理后合金中析出均匀分布的细小θ′(Al2Cu)相以及热稳定性高的Al3(Ti,Zr)纳米颗粒。此外,当Al-5Ti-0.8C中间合金含量为0.3%时,Al-CuMn合金的组织形貌和高温力学性能最优。 展开更多
关键词 al-5ti-0.8c中间合金 al-cU-MN合金 晶粒细化 析出强化 高温力学性能
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