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作 者:Yuan Yinhui Nie Lijun Lu Hao Yu Yang Yan Dejun 袁银辉;聂黎军;路浩;余洋;闫德俊(School of Materials Science and Engineering,Xi’an Shiyou University,Xi’an 510700,China;CSSC Huangpu Shipbuilding,National Defense Advanced Welding Center,Guangzhou 710065,China)
机构地区:[1]School of Materials Science and Engineering,Xi’an Shiyou University,Xi’an 510700,China [2]CSSC Huangpu Shipbuilding,National Defense Advanced Welding Center,Guangzhou 710065,China
出 处:《China Welding》2022年第2期15-22,共8页中国焊接(英文版)
基 金:Project was supported by the Ministry of Industry and Information Technology High-Tech Ship Research Project:Research on Key Common Processes of Ship Intelligent Manufacturing(MC-201704-Z02);Guangdong Special Branch Plans(2019TQ05C752);Marine Economic Development(Six Marine Industries)Special Funding Project of Guangdong Province(Grant number GDNRC[2021]46).
摘 要:At present,conventional flame correction has shortcomings such as random heating route and low efficiency.The welding seam of the aluminum alloy ship frame skin structure is concentrated and the frame restraint is large.It is difficult to control and eliminate the local convex deformation after welding.In order to improve the conventional orthopedic technology and improve the orthopedic efficiency,the pre-elastic deformation technology is proposed.Using the method of combining numerical simulation and experiment,the orthopedic effect of conventional and pre-elastic orthopedic technology is studied,and the influence of pre-deformation variables and heating path on deformation control of the frame skin structure after welding is simulated.The simulation results show that the technical key to the control of convex deformation lies in the control of the pre-elastic deformation and the setting of the heating route.The experimental verification results show that the pre-elastic deformation technology has a better control effect than conventional orthopedics,can significantly improve the orthopedic efficiency,and provides a new method for deformation control in the shipbuilding industry.
关 键 词:prestress-flame correction process frame skin structure aluminum alloy numerical simulation
分 类 号:U671.8[交通运输工程—船舶及航道工程] TG457.14[交通运输工程—船舶与海洋工程]
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