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中国航空科学基金(2010ZF56019)

作品数:3 被引量:16H指数:3
相关作者:鲁世强王克鲁曹京霞李鑫王方更多>>
相关机构:南昌航空大学中航工业北京航空材料研究院香港理工大学更多>>
发文基金:中国航空科学基金国家自然科学基金江西省教育厅青年科学基金更多>>
相关领域:金属学及工艺一般工业技术更多>>

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挤压温度对Ti40包套挤压过程影响规律的数值模拟被引量:5
2011年
在热力耦合与刚塑性有限元分析的基础上,利用Deform模拟了Ti40阻燃钛合金包套的挤压变形过程,分析了温度场和应变场。结果表明:采用包套挤压可使Ti40合金保持在较高温度的挤压;提高挤压温度还可提高挤压坯料的温度,降低坯料流变应力,增加坯料变形程度并降低包套冷硬层厚度。
刘宗煜王克鲁鲁世强曹京霞
关键词:挤压温度数值模拟载荷应力场应变场
High temperature deformation behavior and optimization of hot compression process parameters in TC11 titanium alloy with coarse lamellar original microstructure被引量:4
2013年
The high temperature deformation behaviors of α+β type titanium alloy TC11 (Ti-6.5Al-3.5Mo-1.5Zr-0.3Si) with coarse lamellar starting microstructure were investigated based on the hot compression tests in the temperature range of 950-1100 ℃ and the strain rate range of 0.001-10 s-1. The processing maps at different strains were then constructed based on the dynamic materials model, and the hot compression process parameters and deformation mechanism were optimized and analyzed, respectively. The results show that the processing maps exhibit two domains with a high efficiency of power dissipation and a flow instability domain with a less efficiency of power dissipation. The types of domains were characterized by convergence and divergence of the efficiency of power dissipation, respectively. The convergent domain in a+fl phase field is at the temperature of 950-990 ℃ and the strain rate of 0.001-0.01 s^-1, which correspond to a better hot compression process window of α+β phase field. The peak of efficiency of power dissipation in α+β phase field is at 950 ℃ and 0.001 s 1, which correspond to the best hot compression process parameters of α+β phase field. The convergent domain in β phase field is at the temperature of 1020-1080 ℃ and the strain rate of 0.001-0.1 s^-l, which correspond to a better hot compression process window of β phase field. The peak of efficiency of power dissipation in ℃ phase field occurs at 1050 ℃ over the strain rates from 0.001 s^-1 to 0.01 s^-1, which correspond to the best hot compression process parameters of ,8 phase field. The divergence domain occurs at the strain rates above 0.5 s^-1 and in all the tested temperature range, which correspond to flow instability that is manifested as flow localization and indicated by the flow softening phenomenon in stress-- strain curves. The deformation mechanisms of the optimized hot compression process windows in a+β and β phase fields are identified to be spheroidizing and dynamic recrystallizing controll
鲁世强李鑫王克鲁董显娟傅铭旺
变形态Ti40合金的高温流变应力模型研究被引量:7
2012年
利用变形态Ti40合金在变形温度范围为1223~1323K和应变速率范围为0.001~1.0s-1的不同应变下的热压缩实验数据研究了该材料的高温流变应力模型。利用实验数据分析了Arrhenius型方程对变形态Ti40合金的适用性,结果表明,采用双曲正弦型Arrhenius方程建立该材料的高温流变应力模型是适宜的,并通过对双曲正弦方程进行温度补偿及引入路径变量因子改进了模型。通过计算复相关系数和平均相对误差绝对值对该模型进行误差分析,经过改进的变形态Ti40合金的高温流变应力模型具有良好的精度。
王方李鑫鲁世强王克鲁黄旭曹京霞
关键词:流变应力模型温度补偿
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