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Laser welding process and strength enhancement of carbon fiber reinforced thermoplastic composites and metals dissimilar joint:A review 被引量:1
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作者 Junke JIAO Jihao XU +3 位作者 Chenghu JING Liyuan SHENG Haolei RU Hongbo XIA 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2023年第12期13-31,共19页
Carbon fiber reinforced thermoplastic composites(CFRTP)and metals hybrid structures have been widely used in aircraft lightweight manufacturing.However,due to the significant difference in physical and chemical proper... Carbon fiber reinforced thermoplastic composites(CFRTP)and metals hybrid structures have been widely used in aircraft lightweight manufacturing.However,due to the significant difference in physical and chemical properties between CFRTP and metals,there are lots of challenges to connect them with high quality.Laser welding has a good application prospect in CFRTP and metals connection,and a significant research progress has been made in the exploration of CFRTP-metal laser joining mechanism,joining process optimization,joining strength improvement and joining defects controlling.However,there are still some problems need to be solved for this technology application.In this paper,the research progress of CFRTP-metal laser joining was summarized in three major aspects:theoretical modeling and simulation analysis,process exploration and parameter optimization,joint performance improvement and process innovation.And,problems and challenges of this technology were discussed,and the outlook of this research was provided. 展开更多
关键词 Carbon fiber reinforced thermoplastic composite and metal hybrid joints Defects controlling Laser welding Numerical simulation
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二次纤维的微波强化碱预处理及其氰乙基化改性研究 被引量:3
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作者 张春红 孙可伟 +1 位作者 陈秋玲 孙珮石 《林产化学与工业》 EI CAS CSCD 北大核心 2012年第4期107-112,共6页
对二次纤维(SF)的微波强化碱预处理及其氰乙基化反应工艺及反应产物氰乙基化二次纤维(CSF)结构、性能和热塑化机理进行探讨。结果表明,在微波辐射功率200、400和600 W的作用条件下,辐射特定时间都能明显提高SF的反应程度、缩短反应时间... 对二次纤维(SF)的微波强化碱预处理及其氰乙基化反应工艺及反应产物氰乙基化二次纤维(CSF)结构、性能和热塑化机理进行探讨。结果表明,在微波辐射功率200、400和600 W的作用条件下,辐射特定时间都能明显提高SF的反应程度、缩短反应时间,微波连续辐射比间歇辐射更有利于提高SF的氰乙基化反应程度;SF的氰乙基化有消晶效果,CSF的结晶度降低随着含氮量的增加而不断降低、晶面间距增大;CSF具有热塑性,可热压成形;SF氰乙基化反应程度越高,CSF的热塑性能和力学性能越好;CSF之所以具有热塑化性,与SF引入取代基团—CH2CH2CN,纤维素的结晶结构遭到破坏而促进纤维素大分子或链段的运动有关。 展开更多
关键词 氰乙基化反应 微波强化 二次纤维 碱预处理 改性 辐射功率 反应产物 反应时间
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Laser joining of CFRTP to titanium alloy via laser surface texturing 被引量:13
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作者 Caiwang TAN Jianhui SU +3 位作者 Ziwei FENG Yifan LIU Bo CHEN Xiaoguo SONG 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2021年第5期103-114,共12页
Grid pattern was textured on Ti-6 Al-4 V alloy(TC4)substrate surface by nanosecond laser system.Laser joining of carbon fiber reinforced thermoplastic composite(CFRTP)to TC4 joints were performed,and the effect of tex... Grid pattern was textured on Ti-6 Al-4 V alloy(TC4)substrate surface by nanosecond laser system.Laser joining of carbon fiber reinforced thermoplastic composite(CFRTP)to TC4 joints were performed,and the effect of texture grid depth was investigated.The contact angle of molten CFRTP on textured TC4 surface was measured and the tensile-shear force was tested.The fracture surface and interface morphology were observed.The results indicated that the wettability of molten CFRTP on TC4 surface improved remarkably after laser textured TC4.Shear force of CFRTP/TC4 joints was increased by 156%after laser textured TC4 surface.When the depth of grid was deeper than 100μm,contact angle increased and incomplete filling of molten CFRTP in grid occurred,the shear force thus decreased gradually.Resin-carbon fibers mixture was adhered on the fracture surface of TC4,and the variation tendency of adhesion ratio was consistent with that of shear force.TC4 matrix was exfoliated from substrate and adhered at the fracture surface of CFRTP,indicating stronger mechanical interlocking occurred at the joining interface after laser textured TC4 surface.Beside mechanical interlocking,compound layer consisted of CTi_(0.42)V_(1.58)carburization phase was also confirmed at interface,suggesting that chemical bonding also occurred at the joining interface. 展开更多
关键词 Carbon fiber reinforced thermoplastic composite(CFRTP) Grid depth Laser joining Laser texturing TC4
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