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Mg-Nd-Zn-Zr稀土镁合金的热变形行为 被引量:36
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作者 夏长清 武文花 +1 位作者 吴安如 王银娜 《中国有色金属学报》 EI CAS CSCD 北大核心 2004年第11期1810-1816,共7页
采用GLEEBLE 1500热模拟机对Mg Nd Zn Zr稀土镁合金在温度为250~450℃、应变速率为0.002~0.100s-1、最大变形程度为60%的条件下,进行高温压缩模拟实验研究。分析了实验合金在高温变形时的流变应力和应变速率及变形温度之间的关系,计... 采用GLEEBLE 1500热模拟机对Mg Nd Zn Zr稀土镁合金在温度为250~450℃、应变速率为0.002~0.100s-1、最大变形程度为60%的条件下,进行高温压缩模拟实验研究。分析了实验合金在高温变形时的流变应力和应变速率及变形温度之间的关系,计算了变形激活能和应力指数,并研究了在热压缩过程中组织的变化,为确定该稀土镁合金的挤压温度提供了实验依据。结果表明:合金的峰值流变应力随应变速率的增大而增加,随温度的升高而降低;合金的变形激活能在300~400℃内变化不大,而在400~450℃时增加很大;根据实验分析认为该稀土镁合金挤压温度定在350~400℃左右为宜;在350℃左右顺利挤出的实验合金有很好的力学性能:σb=275.5MPa,δ=13.5%。 展开更多
关键词 稀土镁合金 热模拟变形 流变应力 变形激活能 力学性能
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Mg-11.21Gd-2.26Y-0.44Zr稀土镁合金热变形行为 被引量:7
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作者 薛勇 张治民 杨勇彪 《塑性工程学报》 CAS CSCD 北大核心 2011年第6期58-63,共6页
采用差热分析、金相显微镜等手段,分析了Mg-11.21Gd-2.26Y-0.44Zr稀土镁合金的微观组织,结果发现,在温度530℃均匀化热处理4h,可使大部分合金元素固溶。采用Gleeble3800热模拟实验机,在温度为320℃~480℃、应变速率为0.001s-1~0.1s-1... 采用差热分析、金相显微镜等手段,分析了Mg-11.21Gd-2.26Y-0.44Zr稀土镁合金的微观组织,结果发现,在温度530℃均匀化热处理4h,可使大部分合金元素固溶。采用Gleeble3800热模拟实验机,在温度为320℃~480℃、应变速率为0.001s-1~0.1s-1、最大变形程度为60%的条件下,对该镁合金进行热压缩实验,结果表现,材料流变应力行为和显微组织受到变形温度和变形速率的严重影响;合金的流动应力可以采用Sellars方程形式描述;计算出的变形激活能为225.67kJ.mol-1。 展开更多
关键词 稀土镁合金 热模拟变形 流变应力 变形激活能
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Physical simulation of hot deformation of TiAl based alloy 被引量:4
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作者 张俊红 黄伯云 +2 位作者 贺跃辉 周科朝 孟力平 《Journal of Central South University of Technology》 2002年第2期73-76,共4页
In order to establish a model between the grain size and the process parameters, the hot deformation behaviors of Ti 49.5Al alloy was investigated by isothermal compressive tests at temperatures ranging from 800 to 1?... In order to establish a model between the grain size and the process parameters, the hot deformation behaviors of Ti 49.5Al alloy was investigated by isothermal compressive tests at temperatures ranging from 800 to 1?100 ℃ with strain rates of 10 -3 10 -1 s -1 . Within this range, the deformation behavior obeys the power law relationship, which can be described using the kinetic rate equation. The stress exponent, n , has a value of about 5.0, and the apparent activation energy is about 320 J/mol, which fits well with the value estimated in previous investigations. The results show that, the dependence of flow stress on the recrystallized grain size can be expressed by the equation: σ=K 1d rex -0 56 . The relationship between the deformed microstructure and the process control parameter can be expressed by the formula: lg d rex =-0 281?1gZ +3 908?1. 展开更多
关键词 hot deformation TiAl based alloy microstructure refining Zener Hollomon parameter
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Modeling of metadynamic recrystallization kinetics after hot deformation of low-alloy steel Q345B 被引量:3
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作者 马博 彭艳 +1 位作者 刘云飞 贾斌 《Journal of Central South University》 SCIE EI CAS 2010年第5期911-917,共7页
Based on the steady-state strain measured by single-pass hot compression tests,the method by a double-pass hot compression testing was developed to measure the metadynamic-recrystallization kinetics.The metadynamic re... Based on the steady-state strain measured by single-pass hot compression tests,the method by a double-pass hot compression testing was developed to measure the metadynamic-recrystallization kinetics.The metadynamic recrystallization behavior of low-alloy steel Q345B during hot compression deformation was investigated in the temperature range of 1 000-1 100℃,the strain rate range of 0.01-0.10 s -1 and the interpass time range of 0.5-50 s on a Gleeble-3500 thermo-simulation machine.The results show that metadynamic recrystallization during the interpass time can be observed.As the deformation temperature and strain rate increase,softening caused by metadynamic recrystallization is obvious.According to the data of thermo-simulation,the metadynamic recrystallization activation energy is obtained to be Qmd=100.674 kJ/mol and metadynamic recrystallization kinetics model is set up.Finally,the error analysis of metadynamic recrystallization kinetics model proves that the model has high accuracy(correlation coefficient R=0.988 6). 展开更多
关键词 low-alloy steel kinetics model hot deformation metadynamic recrystallization activation energy
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Simulation and experiment analysis on thermal deformation of tool system in single-point diamond turning of aluminum alloy 被引量:4
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作者 ZHANG Yuan-jing DONG Guo-jun ZHOU Ming 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第9期2223-2229,共7页
The aim of this work is to simulate thermal deformation of tool system and investigate the influence of cutting parameters on it in single-point diamond turning(SPDT) of aluminum alloy. The experiments with various cu... The aim of this work is to simulate thermal deformation of tool system and investigate the influence of cutting parameters on it in single-point diamond turning(SPDT) of aluminum alloy. The experiments with various cutting parameters were conducted. Cutting temperature was measured by FLIR A315 infrared thermal imager. Tool wear was measured by scanning electron microscope(SEM). The numerical model of heat flux considering tool wear generated in cutting zone was established. Then two-step finite element method(FEM) simulations matching the experimental conditions were carried out to simulate the thermal deformation. In addition, the tests of deformation of tool system were performed to verify previous simulation results. And then the influence of cutting parameters on thermal deformation was investigated. The results show that the temperature and thermal deformation from simulations agree well with the results from experiments in the same conditions. The maximum thermal deformation of tool reaches to 7 μm. The average flank wear width and cutting speed are the dominant factors affecting thermal deformation, and the effective way to decrease the thermal deformation of tool is to control the tool wear and the cutting speed. 展开更多
关键词 ultra-precision cutting tool wear DIAMOND thermal deformation form accuracy
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Constitutive analysis of AZ31 magnesium alloy plate 被引量:1
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作者 余琨 蔡志勇 +2 位作者 王晓艳 史褆 黎文献 《Journal of Central South University》 SCIE EI CAS 2010年第1期7-12,共6页
The plastic deformation simulation of AZ31 magnesium alloy at different elevated temperatures (from 473 to 723 K) was performed on Gleeble-1500 thermal mechanical simulator at the strain rates of 0.01, 0.1, 1, 5 and... The plastic deformation simulation of AZ31 magnesium alloy at different elevated temperatures (from 473 to 723 K) was performed on Gleeble-1500 thermal mechanical simulator at the strain rates of 0.01, 0.1, 1, 5 and 10 s-t and the maximum deformation degree of 80%. The relationship between the flow stress and deformation temperature as well as strain rate was analyzed. The materials parameters and the apparent activation energy were calculated. The constitutive relationship was established with a Zener-Hollomon (Z) parameter. The results show that the flow stress increases with the increase of strain rate at a constant temperature, but it decreases with the increase of deformation temperature at a constant strain rate. The apparent activation energy is estimated to be 129-153 kJ/mol, which is close to that for self-diffusion of magnesium. The established constitutive relationship can reflect the change of flow stress during hot deformation. 展开更多
关键词 AZ31 magnesium alloy hot deformation flow stress constitutive relationship
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