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作 者:Jia-Hao Ye Liu-Jie Xu Ji-Kang Hu
机构地区:[1]School of Materials Science and Engineering,Henan University of Science and Technology,Luoyang 471003,China [2]National Joint Engineering Research Center for Abrasion Control and Molding of Metal Materials,Henan University of Science and Technology,Luoyang 471003,China
出 处:《Tungsten》2024年第3期610-620,共11页钨科技(英文)
基 金:supported by the National Natural Science Foundation of China(Grant Nos.U2004180,52201118);the National Key R&D Program of China(Grant No.2017YFB0306000);the Natural Science Foundation of Henan(Grant No.222300420155)。
摘 要:In this work,isothermal compression experiments of macroporous W-4.8 vol.%ZrO_(2)(W-4.8ZrO_(2))at 1300-1600℃and strain rate of 0.005-1 s^(-1)were carried out on a Gleeble-1500D thermo-mechanical simulator.The dynamic recovery of W-4.8ZrO_(2)is the main"softening"mechanism.On the basis of Arrhenius model,the initial constitutive equation is established by exploring the influence of temperature,strain rate and rheological stress.Based on Arrhenius model,the relationship between flow stress,strain rate and deformation temperature is established.Considering the influence of strain,the improved constitutive equation and the law of material constant changing with the strain are obtained.After that,the hot processing maps were drawn on the basis of the dynamic material model,which is used to analyze the instability mechanism of the W-4.8ZrO_(2),and determine the appropriate hot working process parameters(temperature:1350-1450℃,strain rate:0.1-1 s^(-1)).
关 键 词:Tungsten alloy Flow characteristics Constitutive equation Hot processing maps
分 类 号:TG146.411[一般工业技术—材料科学与工程]
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