China Mechanical Engineering ›› 2021, Vol. 32 ›› Issue (12): 1395-1405.DOI: 10.3969/j.issn.1004-132X.2021.12.002
Previous Articles Next Articles
GUO Lei1;LIU Jianhua1;ZHANG Jiapeng1,2;LI Xiayu1;ZHANG Xiumin1;XIA Huanxiong1
Online:
2021-06-25
Published:
2021-07-08
郭磊1;刘检华1;张佳朋1,2;李夏禹1;张秀敏1;夏焕雄1
通讯作者:
夏焕雄(通信作者),男,1987年生,副研究员。研究方向为多相流-多场耦合建模仿真、胶粘连接、精密装配。发表论文20余篇。E-mail:hxia@bit.edu.cn。
作者简介:
郭磊,男,1985年生,博士后研究人员。研究方向为复杂机电产品精密胶接装配基础理论与方法。发表论文8篇。E-mail:guolei828@163.com。
基金资助:
CLC Number:
GUO Lei, LIU Jianhua, ZHANG Jiapeng, LI Xiayu, ZHANG Xiumin, XIA Huanxiong. Research Status Analysis of Adhesively Connection Technology in Aerospace Industry#br#[J]. China Mechanical Engineering, 2021, 32(12): 1395-1405.
郭磊, 刘检华, 张佳朋, 李夏禹, 张秀敏, 夏焕雄. 航天工业中胶接技术的研究现状分析[J]. 中国机械工程, 2021, 32(12): 1395-1405.
Add to citation manager EndNote|Ris|BibTeX
URL: http://www.cmemo.org.cn/EN/10.3969/j.issn.1004-132X.2021.12.002
[1]刘检华,孙清超,程晖,等. 产品装配技术的研究现状、技术内涵及发展趋势[J]. 机械工程学报, 2018, 54(11):2-28. LIU Jianhua, SUN Qingchao, CHENG Hui, et al. The State of the Art, Connotation and Developing Trends of the Products Assembly Technology[J]. Journal of Mechanical Engineering, 2018, 54(11):2-28. [2]MORONI F, PIRONDI A, KLEINER F. Experimental Analysis and Comparison of the Strength of Simple and Hybrid Structural Joints[J]. International Journal of Adhesion and Adhesives, 2010, 30(5):367-379. [3]COSTA M, VIANA G, DA SILVA L F M, et al. Environmental Effect on the Fatigue Degradation of Adhesive Joints:a Review[J]. The Journal of Adhesion, 2017, 93(1/2):127-146. [4]李欣,张晓妮,徐晓沐. 胶接结构和复合材料用于航空航天技术的发展[J]. 化学与粘合, 2006, 28(3):172-175. LI Xin, ZHANG Xiaoni, XU Xiaomu. The Development of Bonding Structure and Composite Materials for the Technology of Aerospace[J]. Chemistry and Adhesion, 2006, 28(3):172-175. [5]赵云峰. 高性能胶黏剂密封剂在航天工业领域的应用[J]. 化学与粘合, 2014, 36(6):446-450. ZHAO Yunfeng. Application of High Performance Adhesives and Sealants in Aerospace Industry[J]. Chemistry and Adhesion, 2014, 36(6):446-450. [6]唐梅,孙丽荣,常青,等. 胶粘剂在航天领域的应用[J]. 化学与粘合, 2002,24(3):171-172. TANG Mei, SUN Lirong, CHANG Qing, et al. Organic Adhesives Applied in Aerospace Industry[J]. Chemistry and Adhesion, 2002,24(3):171-172. [7]郭平军,梁国正,张增平. 胶粘剂在航天工业中的应用[J]. 中国胶粘剂, 2009, 18(3):56-60. GUO Pingjun, LIANG Guozheng, ZHANG Zengping. Application of Adhesives in Aerospace Industry[J]. China Adhesives, 2009, 18(3):56-60. [8]DARYABEIGI K. Heat Transfer in High-temperature Fibrous Insulation[J]. Journal of Thermophysics and Heat Transfer, 2003, 17(1):10-20. [9]胡继东,左小彪,冯志海. 航天器热防护材料的发展概述[J]. 航天返回与遥感, 2011, 32(3):88-92. HU Jidong, ZUO Xiaobiao, FENG Zhihai. Development of Thermal Protection Materials for Space Vehicle[J]. Spacecraft Recovery & Remote Sensing, 2011, 32(3):88-92. [10]刘强,何欣,张峰. 航天光学遥感器指向镜用胶选择[J]. 红外与激光工程, 2014(增刊1):183-187. LIU Qiang, HE Xin, ZHANG Feng. Choice of Adhesive Applying in Pointing Prism for Aerospace Optics Remote Sensor[J]. Infrared and Laser Engineering, 2014(S1):183-187. [11]沃西源,涂彬,夏英伟. 航天器复合材料胶接连接工艺分析[J]. 航天返回与遥感, 2008, 29(4):62-66. WO Xiyuan, TU Bin, XIA Yingwei. Analysis of Adhesive Technology in Spacecraft Composite Materials[J]. Spacecraft Recovery & Remote Sensing, 2008, 29(4):62-66. [12]CHARALAMBIDES M, OLUSANYA A. The Constitutive Models Suitable for Adhesives in Some Finite Element Codes and Suggested Methods of Generating the Appropriate Materials Data[R]. Middlesex, UK:Materials Centre NPL, 1997. [13]MATZENMILLER A, GERLACH S, FIOLKA M. A Critical Analysis of Interface Constitutive Models for the Simulation of Delamination in Composites and Failure of Adhesive Bonds[J]. Journal of Mechanics of Materials and Structures, 2010, 5:185-211. [14]赵飞明,赵云峰,陈江涛. 航天胶粘剂的性能与应用[J]. 粘接, 2014(12):42-45. ZHAO Feiming, ZHAO Yunfeng, CHEN Jiangtao. Performance and Application of Aerospace Adhesives[J]. Adhesion, 2014(12):42-45. [15]吴金林. 低温导热绝缘胶粘剂研究[J]. 低温工程, 1998(3):53-56. WU Jinlin. Study of the Adhesive of Low Temperature Heat Conduction and Insulation[J]. Cryogenics,1998(3):53-56. [16]赵云峰. 航天特种高分子材料研究与应用进展[J]. 中国材料进展, 2013, 32(4):217-228. ZHAO Yunfeng. Progress on Research and Application of Special Polymer Materials in Aerospace Industry[J]. Materials China, 2013, 32(4):217-228. [17]孙丽荣. 复合材料用耐高温胶粘剂[J]. 中国胶粘剂, 2006(4):48-52. SUN Lirong. High-temperature Adhesives for Composite Material[J]. China Adhesives, 2006(4):48-52. [18]李协平,王洪奎. 超低温胶粘剂及其在航天运载器上的应用[J]. 粘接, 1989(2):1-6. LI Xieping, WANG Hongkui. Cryogenic Adhesive and Its Application on Spacecraft[J]. Adhesion, 1989(2):1-6. [19]张峻,孙晓峰,张彬彬,等. 极限温度环境对电子材料及元器件性能的影响[J]. 航天器环境工程, 2018, 35(6):547-554. ZHANG Jun, SUN Xiaofeng, ZHANG Binbin, et al. Effects of Extreme Temperature on the Performance of Electronic Materials and Components in Deep Space[J]. Spacecraft Environment Engineering, 2018, 35(6):547-554. [20]叶培建,肖福根. 月球探测工程中的月球环境问题[J]. 航天器环境工程, 2006(1):1-11. YE Peijian, XIAO Fugen. Issues about Lunar Environment in Lunar Exploration Project[J]. Spacecraft Environment Engineering, 2006(1):1-11. [21]赵云峰. 有机硅材料在航天工业的应用[J]. 有机硅材料, 2013, 27(6):451-456. ZHAO Yunfeng. Application of Silicone Materials in Aerospace Industry[J]. Silicone Material, 2013, 27(6):451-456. [22]杨敏勃,季月月,纪明,等. 某运载器作动器密封设计及实验验证[J]. 液压与气动, 2019(4):121-127. YANG Minbo, JI Yueyue, JI Ming, et al. Sealing Design and Experimental Verification of Actuator for Carrier[J]. Chinese Hydraulics & Pneumatics, 2019(4):121-127. [23]金涛,李贞,李婷,等. 提高光学遥感卫星图像几何精度总体设计分析[J]. 宇航学报, 2013, 34(8):1159-1165. JIN Tao, LI Zhen, LI Ting, et al. System Design and Analysis for Improving Geometric Accuracy of High-resolution Optical Remote Sensing Satellite Image[J]. Journal of Astronautics, 2013, 34(8):1159-1165. [24]姚竹贤,胡建忠,张之敬. 陀螺仪装配结构稳定性控制技术[J]. 机械工程学报, 2018, 54(9):145-152. YAO Zhuxian, HU Jianzhong, ZHANG Zhijing. Assembly Technology of Structure Stability Control for High Precision Gyroscope[J]. Journal of Mechanical Engineering, 2018, 54(9):145-152. [25]POCIUS A V. Adhesion and Adhesives Technology[M]. Munich:Carl Hanser Verlag, 2012. [26]CRITCHLOW G W, BREWIS D M. Review of Surface Pretreatments for Aluminum Alloys[J]. International Journal of Adhesion and Adhesives, 1996, 16(4):255-275. [27]CORREIA S, ANES V, REIS L. Effect of Surface Treatment on Adhesively Bonded Aluminum-aluminum Joints Regarding Aeronautical Structures[J]. Engineering Failure Analysis, 2018, 84:34-45. [28]BANEA M D, DA SILVA L F M. Adhesively Bonded Joints in Composite Materials:an Overview[J]. Proceedings of the Institution of Mechanical Engineers, Part L:Journal of Materials:Design and Applications, 2009, 223(1):1-18. [29]LIU M, DAWOOD M. Reliability Analysis of Adhesively Bonded CFRP-to-steel Double Lap Shear Joint with Thin Outer Adherends[J]. Construction and Building Materials, 2017, 141:52-63. [30]XU Y, LI H, SHEN Y, et al. Improvement of Adhesion Performance between Aluminum Alloy Sheet and Epoxy Based on Anodizing Technique[J]. International Journal of Adhesion and Adhesives, 2016, 70:74-80. [31]KINLOCH A J. Adhesion and Adhesives:Science and Technology[M]. London:Chapman and Hall, 1987:441. [32]MYSHKIN N, KOVALEV A. Adhesion and Surface Forces in Polymer Tribology—a Review[J]. Friction, 2018, 6(2):143-155. [33]BONPAIN B, STOMMEL M. Influence of Surface Roughness on the Shear Strength of Direct Injection Molded Plastic-aluminum Hybrid-parts[J]. International Journal of Adhesion and Adhesives, 2018, 82:290-298. [34]SALEEMA N, GALLANT D. Atmospheric Pressure Plasma Oxidation of AA6061-T6 Aluminum Alloy Surface for Strong and Durable Adhesive Bonding Applications[J]. Applied Surface Science, 2013, 282:98-104. [35]GUO S, CARLSON B E, HECTOR L G, et al. Increasing Strength and Fracture Toughness of AA7075-T6 Adhesively-bonded Joints with Laser Ablation[J]. Journal of Materials Processing Technology, 2018, 259:368-379. [36]李长青,董怀斌,邹育根,等. 低温空气等离子体处理对铝合金表面粘接性能的影响[J]. 中国表面工程, 2017, 30(6):34-42. LI Changqing, DONG Huaibin, ZOU Yugen, et al. Effects of Low Temperature Air Plasma Treatment on Adhesive Property of Aluminum Alloy[J]. China Surface Engineering, 2017, 30(6):34-42. [37]黄馨仪,杜美娜,李凌霄,等. 磷酸阳极化处理对铝合金粘接性能的影响[C]∥北京粘接学会第二十四届学术年会暨粘接剂、密封剂技术发展研讨会.北京, 2015:96-102. HUANG Xinyi, DU Meina, LI Lingxiao, et al. Influences of Phosphoric Acid Anodizing on the Adhesive Behaviors of Aluminum Alloy[C]∥The 24th Annual Meeting of Beijing Adhesive Society and adhesive, Symposium on Sealant Technology Development. Beijing, 2015:96-102. [38]ROTELLA G, ORAZI L, ALFANO M, et al. Innovative High-speed Femtosecond Laser Nano-patterning for Improved Adhesive Bonding of Ti6Al4V Titanium Alloy[J]. CIRP Journal of Manufacturing Science and Technology, 2017, 18:101-106. [39]BOUTAR Y, NAMI S, MEZLINI S, et al. Effect of Surface Treatment on the Shear Strength of Aluminum Adhesive Single-lap Joints for Automotive Applications[J]. International Journal of Adhesion and Adhesives, 2016, 67:38-43. [40]de BARROS S, KENEDI P P, FERREIRA S M, et al. Influence of Mechanical Surface Treatment on Fatigue Life of Bonded Joints[J]. The Journal of Adhesion, 2017, 93(8):599-612. [41]SALEEMA N, SARKAR D K, PAYNTER R W, et al. A Simple Surface Treatment and Characterization of AA 6061 Aluminum Alloy Surface for Adhesive Bonding Applications[J]. Applied Surface Science, 2012, 261:742-748. [42]SHOKRIAN M D, SHELESH-NEZHAD K, NAJJAR R. The Effects of Al Surface Treatment, Adhesive Thickness and Microcapsule Inclusion on the Shear Strength of Bonded Joints[J]. International Journal of Adhesion and Adhesives, 2019, 89:139-147. [43]ZAKARIA A Z, SHELESH-NEZHAD K, CHAKHERLOU T N, et al. Effects of Aluminum Surface Treatments on the Interfacial Fracture Toughness of Carbon-fiber Aluminum Laminates[J]. Engineering Fracture Mechanics, 2017, 172:139-151. [44]KINLOCH A J, WELCH L S, BISHOP H E. The Locus of Environmental Crack Growth in Bonded Aluminum Alloy Joints[J]. The Journal of Adhesion, 1984, 16(3):165-177. [45]BABURAJ E G, STARIKOV D, EVANS J, et al. Enhancement of Adhesive Joint Strength by Laser Surface Modification[J]. International Journal of Adhesion and Adhesives, 2007, 27(4):268-276. [46]ROTELLA G, ALFANO M, ALFANO M, et al. Evaluation of Mechanical and Laser Surface Pretreatments on the Strength of Adhesive Bonded Steel Joints for the Automotive Industry[J]. Journal of Adhesion Science and Technology, 2016, 30(7):747-758. [47]ALFANO M, LUBINEAU G, FURGIUELE F, et al. On the Enhancement of Bond Toughness for Al/Epoxy T-peel Joints with Laser Treated Substrates[J]. International Journal of Fracture, 2011, 171(2):139-150. [48]MANDOLFINO C, LERTORA E, GENNA S, et al. Effect of Laser and Plasma Surface Cleaning on Mechanical Properties of Adhesive Bonded Joints[J]. Procedia CIRP, 2015, 33:458-463. [49]ZHENG R, LIN J, WANG P, et al. Effect of Adhesive Characteristics on Static Strength of Adhesive-bonded Aluminum Alloys[J]. International Journal of Adhesion and Adhesives, 2015, 57:85-94. [50]WU Y, LIN J, CARLSON B E, et al. Effect of Laser Ablation Surface Treatment on Performance of Adhesive-bonded Aluminum Alloys[J]. Surface and Coatings Technology, 2016, 304:340-347. [51]CAMPILHO R D S G, MOURA D C, BANEA M D, et al. Adhesive Thickness Effects of a Ductile Adhesive by Optical Measurement Techniques[J]. International Journal of Adhesion and Adhesives, 2015, 57:125-132. [52]唐大经. 红外导引头中胶接技术的应用[J]. 红外与激光技术, 1994(1):14-16. TANG Dajing. Application of Adhesive Technology in Infrared Seeker[J]. Infrared and Laser Engineering, 1994(1):14-16. [53]许焕宾,施丽铭,肖伟,等. 薄壁密封舱大承载胶接结构设计[J]. 航天器工程, 2016, 25(5):45-50. XU Huanbin, SHI Liming, XIAO Wei, et al. Design of Large Load Bonding Structure of Sealed Cabin with Thin Wall[J]. Spacecraft Engineering, 2016, 25(5):45-50. [54]李蕊. 陀螺仪装配工艺设计[J]. 科技经济导刊, 2016(2):66. LI Rui. Design of Gyroscope Assembly Technology[J]. Technology and Economic Guide, 2016(2):66. [55]ASTM D1002-10(2019). Standard Test Method for Apparent Shear Strength of Single-lap-joint Adhesively Bonded Metal Specimens by Tension Loading (Metal-to-metal)[S]∥ASTM International. Pennsylvania, USA, 2019. [56]BANEA M D, de SOUSA F S M, da SILVA L F M, et al. Effects of Temperature and Loading Rate on the Mechanical Properties of a High Temperature Epoxy Adhesive[J]. Journal of Adhesion Science and Technology, 2011, 25(18):2461-2474. [57]夏美玲,卢超,门平,等. 几何尺寸对胶接接头强度影响的有限元模拟[J]. 宇航材料工艺, 2010, 40(6):38-40. XIA Meiling, LU Chao, MEN Ping, et al. Finite Element Modeling of Effect of Geometry on Adhesive Joints Strength[J]. Aerospace Materials & Technology, 2010, 40(6):38-40. [58]刁常堃,周强,金玮玮,等. 载人航天器光壳结构用胶接支座设计与强度分析[J]. 航天制造技术, 2018(4):17-21. DIAO Changkun, ZHOU Qiang, JIN Weiwei, et al. Design and Bonding Strength Analysis of Scaffold Used on Light Shell Structure of Manned Spacecraft[J]. Aerospace Manufacturing Technology, 2018(4):17-21. [59]陈骁,张之敬,金鑫,等. 温度载荷作用下胶接位置误差对精密马达系统运动精度稳定性影响机理[J]. 导航与控制, 2018, 17(3):69-74. CHEN Xiao, ZHANG Zhijing, JIN Xin, et al. Effects of Bonding Position Error on the Motion Precision Stability of Precision Motor System under Temperature Load[J]. Navigation and Control, 2018, 17(3):69-74. [60]刘明尧,季冬亮,肖爽,等. 胶黏剂黏弹性对粘贴式FBG应变传递的影响[J]. 光学精密工程, 2016, 24(6):1307-1318. LIU Mingyao, JI Dongliang, XIAO Shuang, et al. Effect of Adhesive Viscoelasticity on Strain Transfer Mechanism of Bonded FBG[J]. Optics and Precision Engineering, 2016, 24(6):1307-1318. [61]李凯,罗怡,王晓东,等. 胶层热传递对挠性摆式微加速度计温度滞环的影响[J]. 传感技术学报, 2018, 31(7):981-986. LI Kai, LUO Yi, WANG Xiaodong, et al. The Influence of Heat Transfer and Creep Effect on Bias Error of Hysteresis for Micro Accelerometer[J]. Chinese Journal of Sensors and Actuators, 2018, 31(7):981-986. [62]STAZI F, GIAMPAOLI M, ROSSI M, et al. Environmental Ageing on GFRP Pultruded Joints:Comparison between Different Adhesives[J]. Composite Structures, 2015, 133:404-414. [63]LIU S, CHENG X, ZHANG Q, et al. An Investigation of Hygrothermal Effects on Adhesive Materials and Double Lap Shear Joints of CFRP Composite Laminates[J]. Composites Part B:Engineering, 2016, 91:431-440.[64]KORTA J, MLYNIEC A, UHL T. Experimental and Numerical Study on the Effect of Humidity-temperature Cycling on Structural Multi-material Adhesive Joints[J]. Composites Part B:Engineering, 2015, 79:621-630. |
[1] | LI Mozhi, ZHU Wenfeng, WANG Shunchao. Roller Pose Compensation in Automotive Body Roll-hemming Forming Process with Adhesive for Dimensional Deviation [J]. China Mechanical Engineering, 2024, 35(02): 364-370. |
[2] | LIU Yanwei, ZHOU Qiang, PAN Hao, LI Pengyang, LI Shujuan. Preparation Method and Directional Adhesion Properties of Bio-inspired Wedge Arrays [J]. China Mechanical Engineering, 2023, 34(01): 95-101. |
[3] | HUANG Zhichao, HU Zhaoxiao, LIU Shuaihong, LIN Yongcheng, JIANG Yuqiang, ZHOU Zejie. Comparison of Corrosion Properties of SPFC440 Steel /5052 Aluminum Self-piercing Riveting Joints and Adhesive Bond-riveted Hybrid Joints [J]. China Mechanical Engineering, 2022, 33(11): 1345-1352. |
[4] | GUO Taiji1;ZHANG Qingxin2,3;SUN Xiaoguang1;HAN Xiaohui1;ZHANG Zhiyi1;LI Yongbing2,3. Influence of Adhesive Sealant on Resistance Spot Welding of Stainless Steel Sheets with Different Thickness [J]. China Mechanical Engineering, 2018, 29(24): 3009-3014. |
[5] | ZHU Chuanmin1,2;LYU Shanshan1,2;MEI YU1,2;LIN Jianping1,2. Effects of Laser Ablation on Corrosion Resistance of Adhesive-bonded Aluminum Joint [J]. China Mechanical Engineering, 2017, 28(23): 2893-2897. |
[6] | Chen Jiankui, Guo Xiqian, Yin Zhouping, Huang Yong'an. A Detection Algorithm of Micro Adhesive Drops for Manufacturing of Flexible RFID Tags [J]. China Mechanical Engineering, 2015, 26(6): 789-793. |
[7] | Lai Lianfeng, Gao Chenghui, Huang Jianmeng. Analysis of Tribology Properties in Sliding Model of Double Rough Surfaces under Adhesive Conditions [J]. China Mechanical Engineering, 2014, 25(4): 534-538. |
[8] | Ji Aihong, Gu Wei, Wang Zhongyuan, Ni Yong, Wang Zhouyi, Dai Zhendong. Locomotion and Adhesion Mechanisms of Gecko Climbing Vertically on Different Material Surfaces [J]. China Mechanical Engineering, 2014, 25(4): 432-438. |
[9] | Guo Zhanshe, Jiang Chunfu, Zhang Yuxiao, Zheng Dezhi. An On-chip Micro-tribotester and Its Micro-fabrication [J]. China Mechanical Engineering, 2007, 18(21): 2539-2542. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||