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同专业硕导
张斌
赞
的个人主页 http://shi.buaa.edu.cn/zhangbin123/zh_CN/index.htm
硕士生导师
教师拼音名称:
Zhang Bin
电子邮箱:
4f0c3dc7fd7c6a8207de9987d8b2ba848c802cafed78a73aaeb22ea45ec6c59a461bd15e44369d58b8dafeb60a3f887901b00841c9a5bae4b203845d3cf046d3b916583ce86b7193be6e0d5e4d87c0544110070ac33e5200e1b2e91f04d114f8d72716fc929ad1bd691ef802a4285e15c73e433c259b3a34ccbc71f3e29bce74
所在单位:
杭州国际创新研究院
职务:
Associate professor
性别:
男
联系方式:
Email:zhang-bin@buaa.edu.cn
在职信息:
在职
毕业院校:
北京航空航天大学
学科:
航空宇航科学与技术
论文
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论文
[1]
.Constitutive modeling of creep behavior considering microstructure evolution for directionally solidified nickel-based superalloys.[期刊]:Materials Science and Engineering: A,2025,919:147499
[2]
.Creep-fatigue lifetime prediction of GH720Li superalloy considering effect of grain size.[期刊]:Transactions of Nonferrous Metals Society of China,2024,online
[3]
.Freezing of sessile water droplets on titanium alloy surfaces with various roughness: An in-situ experimental study.[期刊]:International Journal of Thermal Sciences,2024,203:109099
[4]
.A phenomenological model for predicting the size of soot primary particles emitted from an aero-engine combustor.[期刊]:Combustion and Flame,2024,260:11325
[5]
.A thickness-sensitive and orientation-related creep lifetime prediction method of nickel-based single crystal superalloy.[期刊]:Fatigue & Fracture of Engineering Materials & Structures,2023,46:13954
[6]
.Low cycle fatigue lifetime and deformation behaviour prediction of nickel-based single crystal superalloy considering thickness debit effect.[期刊]:Engineering Fracture Mechanics,2023,281:109076
[7]
.Stress-controlled LCF experiments and ratcheting behaviour simulation of a nickel-based single crystal superalloy with [001] orientation.[期刊]:Chinese Journal of Aeronautics,2021,34:112-121
[8]
.Damage-based low cycle fatigue lifetime prediction of nickel-based single crystal superalloy considering anisotropy and dwell types.[期刊]:Fatigue & Fracture of Engineering Materials & Structures,2020,43:2956-2965
[9]
.Constitutive modelling of ratcheting behaviour for nickel-based single crystal superalloy under thermomechanical fatigue loading considering microstructure evolution.[期刊]:International Journal of Fatigue,2020,139:105786
[10]
.In-phase thermomechanical fatigue lifetime prediction of nickel-based single crystal superalloys from smooth specimens to notched specimens based on coupling damage on critical plane.[期刊]:International Journal of Fatigue,2019,126:327-334
共12条 1/2
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