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超声强化氨基化多壁碳纳米管改性环氧黏接接头性能研究
引用本文:王辉,邱毅,陈一哲,杨柳,曹敏.超声强化氨基化多壁碳纳米管改性环氧黏接接头性能研究[J].精密成形工程,2023,15(6):174-182.
作者姓名:王辉  邱毅  陈一哲  杨柳  曹敏
作者单位:武汉理工大学 汽车工程学院,武汉 430070;现代汽车零部件技术湖北省重点实验室,武汉 430070;湖北隆中实验室,湖北 襄阳 441000;武汉理工大学 汽车工程学院,武汉 430070;现代汽车零部件技术湖北省重点实验室,武汉 430070;江苏新扬新材料股份有限公司,江苏 扬州 225000;襄阳光瑞汽车零部件有限公司,湖北 襄阳 441000
基金项目:国家自然科学基金(51775398,52175360);湖北省重点研发计划(2022BAA073);青年人才托举工程(2021QNRC001);中国博士后科学基金(2022T150278,2022M710062);111计划(B17034);武汉理工大学襄阳技术转移中心产业化项目(WXCJ–20220005)
摘    要:目的 探究超声处理对氨基化多壁碳纳米管(MWCNTs–NH2)改性环氧黏接接头黏接性能和热稳定性的影响,为强化MWCNTs–NH2改性环氧胶黏剂与铝合金的黏接提供参考。方法 通过机械搅拌与声波破碎的方法将质量分数为0.75%的MWCNTs–NH2添加到环氧胶黏剂基体中,使用MWCNTs–NH2改性环氧胶黏剂制备铝合金黏接接头,基于超声辅助黏接工艺在铝合金黏接过程中进行超声处理。通过傅里叶变换红外光谱仪(FTIR)分析MWCNTs–NH2改性环氧胶黏剂基体官能团的变化情况。采用单搭接剪切强度试验测定黏接接头的拉伸剪切强度。通过扫描电子显微镜(Scanning Electron Microscope,SEM)观察黏接接头拉伸失效断面以及铝合金与胶黏剂间的黏接界面。通过热失重分析仪(TGA)测试并记录胶黏剂试样质量随温度变化的曲线。结果 经超声处理后,MWCNTs–NH2与树脂基体间的化学反应增强。与纯环氧黏接接头相比,超声处理后的MWCNTs–NH2...

关 键 词:超声  氨基化多壁碳纳米管  环氧胶黏剂  黏接  强化

Effect of Ultrasonic Treatment on Properties of MWCNTs-NH2 Reinforced Epoxy Bonded Joints
WANG Hui,QIU Yi,CHEN Yi-zhe,YANG Liu,CAO Min.Effect of Ultrasonic Treatment on Properties of MWCNTs-NH2 Reinforced Epoxy Bonded Joints[J].Journal of Netshape Forming Engineering,2023,15(6):174-182.
Authors:WANG Hui  QIU Yi  CHEN Yi-zhe  YANG Liu  CAO Min
Affiliation:College of Automotive Engineering, Hubei Xiangyang 441000, China;Hubei Key Laboratory of Advanced Technology for Automotive Components, Wuhan University of Technology, Wuhan 430070, China;Hubei Longzhong Laboratory, Hubei Xiangyang 441000, China;College of Automotive Engineering, Hubei Xiangyang 441000, China;Hubei Key Laboratory of Advanced Technology for Automotive Components, Wuhan University of Technology, Wuhan 430070, China;Jiangsu Xinyang New Material Co., Ltd., Jiangsu Yangzhou 225000, China;GUANGRUIAUTOPARTS, Hubei Xiangyang 441000, China
Abstract:The work aims to explore the effect of the ultrasonic treatment on the bonding property and the thermal stability of MWCNTs-NH2 reinforced epoxy bonded joints, so as to provide reference for improving the bonding between the adhesive and aluminum alloy. The MWCNTs-NH2 with a mass fraction of 0.75wt% was added to the epoxy adhesive substrate by mechanical stirring and sonication and applied to bond the aluminum alloy joints. Based on the ultrasonic assisted bonding process, the aluminum alloy joints were bonded with the application of the ultrasonic treatment. The changes in functional groups of the epoxy adhesive substrate were analyzed with a Fourier transform infrared spectroscopy (FTIR). Single lap shear tests were applied to test the single lap shear strength of the bonded joints. A SEM was used to observe the tensile failure fracture surface of the adhesive joints, and the bonding interface between aluminum alloy and adhesive. The curve of the continuous change of adhesive samples mass with temperature was tested and recorded with a thermogravimetric analyzer (TGA). The chemical reaction between MWCNTs-NH2 and epoxy resin was enhanced with the ultrasonic treatment. Compared with the neat epoxy bonded joints, the tensile shear strength of the MWCNTs-NH2 reinforced epoxy bonded joints with the ultrasonic treatment increased by 49.2%, and the cohesive failure area on the tensile failure fracture surface increased significantly. Microscopically, the fracture surface of MWCNTs-NH2 reinforced epoxy bonded joints with the ultrasonic treatment showed more complex plastic deformation, and the adhesive was more compact with the surface of aluminum alloy. MWCNTs-NH2 flowed into the groove of aluminum alloy surface with epoxy adhesive. The characteristic temperature of MWCNTs-NH2 reinforced epoxy adhesive at 5%, 10%, 50% weight loss rate and the maximum thermal weight loss rate increased. The results show that the ultrasonic treatment improves the interface bonding properties between MWCNTs-NH2 and resin substrate, promotes the penetration and filling of MWCNTs-NH2 reinforced epoxy adhesive on the surface of aluminum alloy, and forms the bridge between aluminum alloy and adhesive by MWCNTs-NH2. The crosslinking density of MWCNTs-NH2 reinforced epoxy adhesive is increased and the thermal stability is improved with the ultrasonic treatment.
Keywords:ultrasonic  MWCNTs-NH2  epoxy adhesive  bonding  strengthening
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