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玉石水库坝体劈头裂缝原因分析
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作者 李昕 刘永林 《工程力学》 EI CSCD 北大核心 2001年第A01期807-812,共6页
本文采用三维有限元对玉石水库6^#坝段进行施工仿真计算, 考虑了混凝土入仓温度、混凝土分区、坝底基础情况和坝段长度等因素的影响,通过分析各模型的温度场-应力场,研究该坝段出现劈头裂缝的原因。
关键词 碾压混凝土重力坝 施工 计算 仿真 温度场-应力场分析 三维有限元 水库 坝体 劈头裂缝
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Finite element analysis of temperature and stress fields during selective laser melting process of Al−Mg−Sc−Zr alloy 被引量:6
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作者 Ru-long MA Chao-qun PENG +4 位作者 Zhi-yong CAI Ri-chu WANG Zhao-hui ZHOU Xiao-geng LI Xuan-yang CAO 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2021年第10期2922-2938,共17页
A 3D finite element model was established to investigate the temperature and stress fields during the selective laser melting process of Al−Mg−Sc−Zr alloy.By considering the powder−solid transformation,temperaturedepe... A 3D finite element model was established to investigate the temperature and stress fields during the selective laser melting process of Al−Mg−Sc−Zr alloy.By considering the powder−solid transformation,temperaturedependent thermal properties,latent heat of phase transformations and molten pool convection,the effects of laser power,point distance and hatch spacing on the temperature distribution,molten pool dimensions and residual stress distribution were investigated.Then,the effects of laser power,point distance and hatch spacing on the microstructure,density and hardness of the alloy were studied by the experimental method.The results show that the molten pool size gradually increases as the laser power increases and the point distance and hatch spacing decrease.The residual stress mainly concentrates in the middle of the first scanning track and the beginning and end of each scanning track.Experimental results demonstrate the accuracy of the model.The density of the samples tends to increase and then decrease with increasing laser power and decreasing point distance and hatch spacing.The optimum process parameters are laser power of 325−375 W,point distance of 80−100μm and hatch spacing of 80μm. 展开更多
关键词 aluminum−magnesium alloy Al−Mg−Sc−Zr alloy selective laser melting finite element analysis temperature field stress field
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