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基于有限元计算细观力学的复合材料宏观性能的一体化预测 被引量:3
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作者 吕毅 吕国志 +1 位作者 赵庆兰 熊璇 《西北工业大学学报》 EI CAS CSCD 北大核心 2008年第5期640-644,共5页
基于有限元计算细观力学理论,以MSC.PATRAN为平台,利用PCL实现了RVE的参数化自动建模,建立了RVE库。并根据不同的细观力学方法,通过在后台对RVE边界条件的设置及有限元计算,集成了相应的计算程序,从而实现了复合材料宏观性能的一体化预... 基于有限元计算细观力学理论,以MSC.PATRAN为平台,利用PCL实现了RVE的参数化自动建模,建立了RVE库。并根据不同的细观力学方法,通过在后台对RVE边界条件的设置及有限元计算,集成了相应的计算程序,从而实现了复合材料宏观性能的一体化预测。最后,以单向复合材料的宏观弹性模量预测为例,展示了一体化预测系统。 展开更多
关键词 细观力学 有限元 有限元计算细观力学(FECM) RVE 一体化预测
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Early Crack Propagation Behavior of Laser Metal Deposited Ti-6Al-4V Alloy Under High Cycles Fatigue Loading
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作者 Li Yanping Huang Wei +3 位作者 He Yan Xu Feng Zhao Sihan Guo Weiguo 《稀有金属材料与工程》 北大核心 2025年第1期62-75,共14页
The crack initiation and early propagation are of great significance to the overall fatigue life of material.In order to investigate the anisotropic fracture behavior of laser metal deposited Ti-6Al-4V alloy(LMD Ti64)... The crack initiation and early propagation are of great significance to the overall fatigue life of material.In order to investigate the anisotropic fracture behavior of laser metal deposited Ti-6Al-4V alloy(LMD Ti64)during the early stage,the fourpoint bending fatigue test was carried out on specimens of three different directions,as well as the forged specimens.The results indicate the anisotropic crack initiation and early propagation of LMD Ti64.The direction perpendicular to the deposition direction exhibits a better fatigue resistance than the other two.The crack initiation position and propagation path are dominated by the microstructure in the vicinity of U-notch.LMD Ti64 has a typical small crack effect,and the early crack propagation velocities in three directions are similar.Affected by the slip system of LMD Ti64,secondary cracks frequently occur,which are often found to have an angle of 60°to the main crack.The electron backscatter diffraction analysis indicates that LMD Ti64 has preferred orientations,i.e.,strong 0001//Z texture and 001//Z texture.Their crystallographic orientation will change as the direction of columnarβgrains turns over,resulting in the fatigue anisotropy of LMD Ti64 in crack initiation and early crack propagation process. 展开更多
关键词 fatigue resistance crack propagation behavior microstructure laser metal deposit TI-6AL-4V ANISOTROPY
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