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Prediction of Cross-Tension Strength of Self-Piercing Riveted Joints Using Finite Element Simulation and XGBoost Algorithm 被引量:9
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作者 Jianping Lin Chengwei Qi +4 位作者 Hailang Wan Junying Min Jiajie Chen Kai Zhang Li Zhang 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2021年第2期168-178,共11页
Self-piercing riveting(SPR)has been widely used in automobile industry,and the strength prediction of SPR joints always attracts the attention of researchers.In this work,a prediction method of the cross-tension stren... Self-piercing riveting(SPR)has been widely used in automobile industry,and the strength prediction of SPR joints always attracts the attention of researchers.In this work,a prediction method of the cross-tension strength of SPR joints was proposed on the basis of finite element(FE)simulation and extreme gradient boosting decision tree(XGBoost)algorithm.An FE model of SPR process was established to simulate the plastic deformations of rivet and substrate materials and verified in terms of cross-sectional dimensions of SPR joints.The residual mechanical field from SPR process simulation was imported into a 2D FE model for the cross-tension testing simulation of SPR joints,and cross-tension strengths from FE simulation show a good consistence with the experiment result.Based on the verified FE model,the mechanical properties and thickness of substrate materials were varied and then used for FE simulation to obtain cross-tension strengths of a number of SPR joints,which were used to train the regression model based on the XGBoost algorithm in order to achieve prediction for cross-tension strength of SPR joints.Results show that the cross-tension strengths of SPR steel/aluminum joints could be successfully predicted by the XGBoost regression model with a respective error less than 7.6%compared to experimental values. 展开更多
关键词 self-piercing riveting joint strength Cross-tension Finite element modeling Machine learning
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Fatigue strength evaluation of self-piercing riveted joints of AZ31 Mg alloy and cold-rolled steel sheets 被引量:3
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作者 Se-Hyung Kang Dong-Woon Han Ho-Kyung Kim 《Journal of Magnesium and Alloys》 SCIE 2020年第1期241-251,共11页
The application of magnesium alloys to automobiles is increasing due to their superior specific strength and specific stiffness.In this study,an upper sheet of AZ31 magnesium alloy and a lower sheet of cold-rolled ste... The application of magnesium alloys to automobiles is increasing due to their superior specific strength and specific stiffness.In this study,an upper sheet of AZ31 magnesium alloy and a lower sheet of cold-rolled steel were joined by self-piercing riveting(SPR),a method commonly used to join automotive panels.A cross-shaped specimen was fabricated with a punching force of 35 kN,which exhibited the best joint strength for the SPR joint specimen geometry.Monotonic and fatigue strengths were evaluated using cross-shaped specimens at loading angles of 0°,45°,and 90°.The load amplitude corresponding to the fatigue endurance limit was assumed to be at 106 cycles,and the fatigue ratios(=fatigue endurance limit/static strength)at the loading angles of 0°,45°,and 90°are 22%,13%,and 9%,respectively.For all three loading angle specimens,fatigue cracks initiated at the triple point where the rivet shank,the upper sheet and the lower sheet are in contact with each other,with the cracks propagating through the thickness of the upper sheet and ultimately leading to fracture.The fatigue lifetimes were evaluated through the von-Mises stress,maximum principal stress,and equivalent stress intensity factor.It was found that the fatigue lifetimes could be evaluated most appropriately through the maximum principal stress. 展开更多
关键词 self-piercing riveting Magnesium alloy Fatigue strength Maximum principal stress Fatigue lifetime
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Combined strengthening mechanism of solid-state bonding and mechanical interlocking in friction self-piercing riveted AA7075-T6 aluminum alloy joints 被引量:3
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作者 Yunwu Ma Bingxin Yang +4 位作者 Shanqing Hu He Shan Peihao Geng Yongbing Li Ninshu Ma 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2022年第10期109-121,共13页
A recently developed friction self-piercing riveting(F-SPR)technique based on the combination of fric-tion stir processing and riveting has been reported to possess both solid-state bonding and mechanical fastening ch... A recently developed friction self-piercing riveting(F-SPR)technique based on the combination of fric-tion stir processing and riveting has been reported to possess both solid-state bonding and mechanical fastening characteristics.However,there is still a lack of quantitative understanding of the hybrid en-hancement mechanism,hindering its engineering application.To fill in this gap,the current research investigated the microstructure evolution,microhardness distribution,and miniature-tensile performance of the aluminum alloy AA7075-T6 F-SPR joints by experiments.An accurate numerical simulation model was established to quantitatively evaluate the individual contributions of microstructure,local bonding strength,and macro interlocking to the performance of the joint,which could well explain the experi-mental results.It was found that due to the friction stirring of the rivet,solid-state bonding driven by dynamic recrystallization is realized between the trapped aluminum in the rivet cavity and the bottom aluminum sheet.The solid-state bonding zone has 75%yield strength,81%ultimate tensile strength,and 106%elongation compared to the base material.This solid-state bonding enables the internal interlock-ing between the trapped aluminum and the rivet to withstand the additional load,which forms a novel dual-interlock fastening mechanism and increases the peak cross-tension force by 14.3%compared to the single-interlock joint. 展开更多
关键词 Combined strengthening Friction self-piercing riveting Miniature tensile test Solid-state joining Dual-interlocking Numerical simulation
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Mechanical joint performances of friction self-piercing riveted carbon fiber reinforced polymer and AZ31B Mg alloy 被引量:4
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作者 Yuan Li Yong Chae Lim +2 位作者 Jian Chen Jiheon Jun Zhili Feng 《Journal of Magnesium and Alloys》 SCIE EI CAS CSCD 2022年第12期3367-3379,共13页
Carbon fiber reinforced polymer(CFRP) and AZ31B Mg alloy were joined by the friction self-piercing riveting(F-SPR) with different steel rivet shank sizes. With the increase of rivet shank size, lap shear fracture load... Carbon fiber reinforced polymer(CFRP) and AZ31B Mg alloy were joined by the friction self-piercing riveting(F-SPR) with different steel rivet shank sizes. With the increase of rivet shank size, lap shear fracture load and mechanical interlock distance increased. Ultrafine grains were formed at the joint in AZ31B as a result of dynamic recrystallization, which contributed to the higher hardness. Fatigue life of the CFRP-AZ31B joint was studied at various peak loads of 0.5, 1, 2, and 3 kN and compared with the resistance spot welded AZ31B-AZ31B from the open literature. The fatigue performance was better at higher peak load(>2 kN) and comparable to that of resistance spot welding of AZ31B to AZ31B at lower peak loads(<1 kN). From fractography, the crack initiation for lower peak load(<1 kN) case was observed at the fretting positions on the top and bottom surfaces of AZ31B sheet. When peak load was increased, fretting between the rivet and the top of AZ31B became more dominant to initiate a crack during fatigue testing. 展开更多
关键词 Friction self-piercing riveting Magnesium alloy Carbon fiber reinforced polymer Dynamic recrystallization Fatigue life Crack initiation
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Microstructural evolution in friction self-piercing riveted aluminum alloy AA7075-T6 joints
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作者 Yunwu Ma Sizhe Niu +2 位作者 Huihong Liu Yongbing Li Ninshu Ma 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2021年第23期80-95,共16页
Friction self-piercing riveting(F-SPR)is an emerging technique for low ductility materials joining,which creates a mechanical and solid-state hybrid joint with a semi-hollow rivet.The severe plastic deformation of wor... Friction self-piercing riveting(F-SPR)is an emerging technique for low ductility materials joining,which creates a mechanical and solid-state hybrid joint with a semi-hollow rivet.The severe plastic deformation of work materials and localized elevated temperatures during the F-SPR process yield complex and heterogeneous microstructures.The cut-off action of the work materials by the rivet further complicates the material flow during joint formation.This study employed the F-SPR process to join AA7075-T6 aluminum alloy sheets and systematically investigated the microstructural evolutions using electron backscatter diffraction(EBSD)techniques.The results suggested that as the base material approached the rivet,grains were deformed and recrystallized,forming two distinct fine grain zones(FGZs)surrounding the rivet and in the rivet cavity,re s pectively.Solid-state bonding of aluminum sheets occurred in the FGZs.The formation of FGZ outside the rivet is due to dynamic recrystallization(DRX)triggered by the sliding-to-sticking transition at the rivet/sheet interface.The FGZ in the rivet cavity was caused by the rotation of the trapped aluminum,which created a sticking affected zone at the trapped aluminum/lower sheet interface and led to DRX.Strain rate gradient in the trapped aluminum drove the further expansion of the sticking affected zone and resulted in grain refinement in a larger span. 展开更多
关键词 Friction self-piercing riveting Semi-hollow rivet Aluminum alloy Affected zone Dynamic recrystallization
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An Overview of Self-piercing Riveting Process with Focus on Joint Failures, Corrosion Issues and Optimisation Techniques 被引量:16
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作者 Hua Qian Ang 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2021年第1期89-113,共25页
Self-piercing riveting(SPR)is a cold forming technique used to fasten together two or more sheets of materials with a rivet without the need to predrill a hole.The application of SPR in the automotive sector has becom... Self-piercing riveting(SPR)is a cold forming technique used to fasten together two or more sheets of materials with a rivet without the need to predrill a hole.The application of SPR in the automotive sector has become increasingly popular mainly due to the growing use of lightweight materials in transportation applications.However,SPR joining of these advanced light materials remains a challenge as these materials often lack a good combination of high strength and ductility to resist the large plastic deformation induced by the SPR process.In this paper,SPR joints of advanced materials and their corresponding failure mechanisms are discussed,aiming to provide the foundation for future improvement of SPR joint quality.This paper is divided into three major sections:1)joint failures focusing on joint defects originated from the SPR process and joint failure modes under different mechanical loading conditions,2)joint corrosion issues,and 3)joint optimisation via process parameters and advanced techniques. 展开更多
关键词 self-piercing riveting Mechanical joining joint defects Failure mechanisms CORROSION joint optimisation
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Study of galvanic corrosion and mechanical joint properties of AZ31B and carbon-fiber–reinforced polymer joined by friction self-piercing riveting 被引量:4
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作者 Yong Chae Lim Jiheon Jun +4 位作者 Donovan N.Leonard Yuan Li Jian Chen Michael P.Brady Zhili Feng 《Journal of Magnesium and Alloys》 SCIE EI CAS CSCD 2022年第2期434-445,共12页
A new testing methodology was developed to quantitively study galvanic corrosion of AZ31B and thermoset carbon-fiber–reinforced polymer spot-joined by a friction self-piercing riveting process.Pre-defined areas of AZ... A new testing methodology was developed to quantitively study galvanic corrosion of AZ31B and thermoset carbon-fiber–reinforced polymer spot-joined by a friction self-piercing riveting process.Pre-defined areas of AZ31B in the joint were exposed in 0.1 M NaCl solution over time.Massive galvanic corrosion of AZ31B was observed as exposure time increased.The measured volume loss was converted into corrosion current that was at least 48 times greater than the corrosion current of AZ31B without galvanic coupling.Ninety percent of the mechanical joint integrity was retained for corroded F-SPR joints to 200 h and then decreased because of the massive volume loss of AZ31B。 展开更多
关键词 Multi-material joining Carbon fiber–reinforced polymer AZ31B Friction self-piercing riveting Galvanic corrosion Mechanical joint strength
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A Comparative Study of Friction Self-Piercing Riveting and Self-Piercing Riveting of Aluminum Alloy AA5182-O 被引量:2
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作者 Yunwu Ma He Shan +3 位作者 Sizhe Niu Yongbing Li Zhongqin Lin Ninshu Ma 《Engineering》 SCIE EI 2021年第12期1741-1750,共10页
In this paper,self-piercing riveting(SPR)and friction self-piercing riveting(F-SPR)processes were employed to join aluminum alloy AA5182-O sheets.Parallel studies were carried out to compare the two processes in terms... In this paper,self-piercing riveting(SPR)and friction self-piercing riveting(F-SPR)processes were employed to join aluminum alloy AA5182-O sheets.Parallel studies were carried out to compare the two processes in terms of joint macrogeometry,tooling force,microhardness,quasi-static mechanical performance,and fatigue behavior.The results indicate that the F-SPR process formed both rivet–sheet interlocking and sheet–sheet solid-state bonding,whereas the SPR process only contained rivet–sheet interlocking.For the same rivet flaring,the F-SPR process required 63%less tooling force than the SPR process because of the softening effect of frictional heat and the lower rivet hardness of F-SPR.The decrease in the switch depth of the F-SPR resulted in more hardening of the aluminum alloy surrounding the rivet.The higher hardness of aluminum and formation of solid-state bonding enhanced the F-SPR joint stiffness under lap-shear loading,which contributed to the higher quasi-static lap-shear strength and longer fatigue life compared to those of the SPR joints. 展开更多
关键词 self-piercing riveting Friction self-piercing riveting Mechanical joining Quasi-static strength FATIGUE
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Friction self-piercing riveting(F-SPR)of aluminum alloy to magnesium alloy using a flat die 被引量:3
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作者 Bingxin Yang Yunwu Ma +2 位作者 He Shan Sizhe Niu Yongbing Li 《Journal of Magnesium and Alloys》 SCIE EI CAS CSCD 2022年第5期1207-1219,共13页
Friction self-piercing riveting(F-SPR)process based on a pip die has been invented to solve the cracking problems in riveting high-strength and low-ductility light metals,such as magnesium alloys,cast aluminum,and 7 s... Friction self-piercing riveting(F-SPR)process based on a pip die has been invented to solve the cracking problems in riveting high-strength and low-ductility light metals,such as magnesium alloys,cast aluminum,and 7 series aluminum alloys.In this paper,in order to solve quality issues caused by the misalignment between rivet and pip-die in F-SPR,a flat-die based F-SPR process was proposed and employed to join 1.27 mm-thick AA6061-T6 to 3 mm-thick AZ31B.The results indicate that a 1.0 mm die distance is effective to avoid rivet upset and insufficient flaring.As the feed rate increases,the heat input in the whole process decreases,resulting in a larger riveting force,which in turn increases both the bottom thickness and interlock amount.Besides,solid-state bonding,including Al-Mg intermetallic compounds(IMCs),Al-Mg mechanical mixture,and Al-Fe atom interdiffusion was observed at the joint interfaces.The upper Al layer was softened,but the lower Mg layer was hardened,and both sheets exhibited a narrowed affected region with the increase of feed rate,while the rivet hardness shows no obvious change.Three fracture modes appeared accompanying the variations in lap-shear strength and energy absorption as the feed rate increased from 2 mm/s to 8 mm/s.Finally,the F-SPR process using a flat die was compared to those using a pip die and a flat bottom die to show the advantage of flat die on coping with the misalignment problem. 展开更多
关键词 Friction self-piercing riveting(F-SPR) Flat die Aluminum alloy Magnesium alloy Mechanical joining Solid-state bonding
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Numerical investigation on the position of holes for reducing stress concentration in composite plates with bolted and riveted joints
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作者 M.R.Khoshravan M.Samaei A.Paykani 《Theoretical & Applied Mechanics Letters》 CAS 2011年第4期28-33,共6页
This paper studies the effects of fiber orientaion and holes position on stress concentration and the determination of weakened areas in the composite of glass fiber reinforced epoxy resin around the hole for joints b... This paper studies the effects of fiber orientaion and holes position on stress concentration and the determination of weakened areas in the composite of glass fiber reinforced epoxy resin around the hole for joints by using the finite element method.In this study,for the observation of areas affected by stress concentration Tsai-Wu failure criterion is used to determine the failed elements and ANSYS Software is implemented for modeling.In order to compare the effect of geometric parameters on stress concentration around the holes,two types of hole position arrangement along with fibers orientation have been studied.Results show that the stress concentration coefficient is lower in the second type of holes arrangement in comparison with the first type for the same component dimensions.Increasing the distance from hole center to upper or lower edge of the sample and also decreasing the distance between holes,would result in an increase in the stress concentration. 展开更多
关键词 stress concentration perforated plates bolted and riveted joints finite element method
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Progressive Failure Analysis of Composite/Aluminum Riveted Joints Subjected to Pull-Through Loading
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作者 Yuxing Yang Yongjie Bao +2 位作者 Xueshu Liu Jinlong Wang Fengming Du 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2023年第1期129-138,共10页
Out-of-plane mechanical properties of the riveted joints restrict the performance of the wing box assembly of airplane.It is necessary to investigate the pull-through performance of the composite/metal riveted joints ... Out-of-plane mechanical properties of the riveted joints restrict the performance of the wing box assembly of airplane.It is necessary to investigate the pull-through performance of the composite/metal riveted joints in order to guide the riveting design and ensure the safety of the wing box assembly.The progressive failure mechanism of composite/aluminum riveted joint subjected to pull-through loading was investigated by experiments and finite element method.A progressive damage model based on the Hashin-type criteria and zero-thickness cohesive zone method was developed by VUMAT subroutine,which was validated by both open-hole tensile test and three-point bending test.Predicted load-displacement response,failure modes and damage propagation were analysed and compared with the results of the pull-through tests.There are 4 obvious characteristic stages on the load-displacement curve of the pull-through test and that of the finite element model:first load take-up stage,damage stage,second load take-up stage and failure stage.Relative error of stiffness,first load peak and second load peak between finite element method and experiments were 8.1%,-3.3%and 10.6%,respectively.It was found that the specimen was mainly broken by rivet-penetration fracture and delamination of plies of the composite laminate.And the material within the scope of the rivet head is more dangerous with more serious tensile damages than other regions,especially for 90°plies.This study proposes a numerical method for damage prediction and reveals the progressive failure mechanism of the hybrid material riveted joints subjected to the pull-through loading. 展开更多
关键词 Composite/metal joints riveted joints Pull-through test Progressive damage model
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Numerical Study on Die Design Parameters of Self-Pierce Riveting Process Based on Orthogonal Test 被引量:5
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作者 韩善灵 李志勇 +1 位作者 高远 曾庆良 《Journal of Shanghai Jiaotong university(Science)》 EI 2014年第3期308-312,共5页
The concave die design of self-pierce riveting(SPR) is of critical importance for product quality. The optimization of concave die parameters based on orthogonal test is proposed to explore the relationship between se... The concave die design of self-pierce riveting(SPR) is of critical importance for product quality. The optimization of concave die parameters based on orthogonal test is proposed to explore the relationship between self-pierce riveted joint quality and die parameters. There are nine independent die parameter factors in orthogonal test and each factor has 4 levels. In order to evaluate the interlock and neck thickness, we carry out numerical simulations by the software DEFORM-2D. Then, the primary and secondary factors that affect the joint quality have been found out by means of range analysis. Finally, an optimization scheme is brought forward to design concave die in SPR process, which indicates that the joint has higher quality than that of former orthogonal tests.This work can be extended by a detailed mechanical and fatigue analysis for the joint quality of SPR process. 展开更多
关键词 self-pierce riveting (SPR) orthogonal test concave die joint
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钢桁梁拼接节点中环槽铆钉预紧力试验研究
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作者 王琨 刘永健 +4 位作者 张太科 崔高炎 郭峰超 刘震北 马文杰 《浙江大学学报(工学版)》 北大核心 2026年第1期199-207,共9页
为了研究施铆过程中环槽铆钉预紧力的影响因素,评估钢桁梁拼接节点中环槽铆钉预紧力的稳定性,以钢桁梁悬索桥为依托工程,开展足尺节点施铆过程的铆钉预紧力监测试验.结果表明,环槽铆钉在从刚度大的接头区域向刚度小的接头区域铆接时,适... 为了研究施铆过程中环槽铆钉预紧力的影响因素,评估钢桁梁拼接节点中环槽铆钉预紧力的稳定性,以钢桁梁悬索桥为依托工程,开展足尺节点施铆过程的铆钉预紧力监测试验.结果表明,环槽铆钉在从刚度大的接头区域向刚度小的接头区域铆接时,适用性较好;测试的10.9级T27铆钉的铆后预紧力满足环槽铆钉预紧力要求,且优于同规格高强度螺栓;铆接过程中厚度更大的底板上的铆钉预紧力变化量比顶板有所增加,且预紧力松弛程度稍大;约束程度更高的腹板上的铆钉预紧力变化量比节点板更大.对弦杆腹板进行铆接后48 h监测试验,结果显示铆接完成后30 h内铆钉预紧力衰减量占总衰减量的89.6%,此后预紧力的波动小于1.3%的初始值,表明环槽铆钉铆后预紧力损失较小,且逐渐趋于稳定、统一. 展开更多
关键词 钢桁梁桥 环槽铆钉 足尺模型试验 拼接节点 预紧力
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Impact of Stack Orientation on Self-Piercing Riveted and Friction Self-Piercing Riveted Aluminum Alloy and Magnesium Alloy Joints 被引量:8
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作者 Yunwu Ma Sizhe Niu +2 位作者 He Shan Yongbing Li Ninshu Ma 《Automotive Innovation》 CSCD 2020年第3期242-249,共8页
Self-piercing riveting(SPR)is a mature method to join dissimilar materials in vehicle body assembling.Friction self-piercing riveting(F-SPR)is a newly developed technology for joining low-ductility materials by combin... Self-piercing riveting(SPR)is a mature method to join dissimilar materials in vehicle body assembling.Friction self-piercing riveting(F-SPR)is a newly developed technology for joining low-ductility materials by combining SPR and friction stir spot welding processes.In this paper,the SPR and F-SPR were employed to join AA6061-T6 aluminum alloy and AZ31B magnesium alloy.The two processes were studied in parallel to investigate the effects of stack orientation on riveting force,macro-geomet-rical features,hardness distributions,and mechanical performance of the joints.The results indicate that both processes exhibit a better overall joint quality by riveting from AZ31B to AA6061-T6.Major cracking in the Mg sheet is produced when riveting from AA6061-T6 to AZ31B in the case of SPR,and the cracking is inhibited with the thermal softening effect by friction heat in the case of F-SPR.The F-SPR process requires approximately one-third of the riveting forces of the SPR process but exhibits a maximum of 45.4%and 59.1%higher tensile-shear strength for the stack orientation with AZ31B on top of AA6061-T6 and the opposite direction,respectively,than those of the SPR joints.The stack orientation of riveting from AZ31B to AA6061-T6 renders better cross-section quality and higher tensile-shear strength and is recommended for both processes. 展开更多
关键词 self-piercing riveting Friction self-piercing riveting Aluminum alloy Magnesium alloy Stack orientation
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铆钉数量和分布模式对自冲铆接头力学性能和失效模式的影响
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作者 成艾国 王超 +1 位作者 于万元 何智成 《塑性工程学报》 北大核心 2025年第7期102-113,共12页
为了提升钢-铝自冲铆接头的力学性能,采用了多接头的增强方案,系统研究了铆钉数量和分布模式对钢-铝自冲铆接头的力学性能和失效模式的影响。首先,设计了6种接头,通过剪切拉伸试验表征了接头在不同接头配置下的力学性能和失效模式。然后... 为了提升钢-铝自冲铆接头的力学性能,采用了多接头的增强方案,系统研究了铆钉数量和分布模式对钢-铝自冲铆接头的力学性能和失效模式的影响。首先,设计了6种接头,通过剪切拉伸试验表征了接头在不同接头配置下的力学性能和失效模式。然后,建立了自冲铆接过程和剪切拉伸试验的仿真模型,分析了铆接过程和拉伸过程中的应力分布。结果表明:多接头方案可以获得更高的峰值力和能量吸收,但峰值力存在部分衰减。采用在剪切方向布置一个铆钉抑制钢板弯曲的双接头J2-1和三接头J3-2的效果最优。铆钉数量和分布模式改变了接头的失效模式,存在互锁失效、钉头脱出和铆钉断裂3种失效模式。多接头方案可以降低铆钉上分布的应力,但会增加上层钢板上的应力。 展开更多
关键词 自冲铆接 多接头 力学性能 失效模式 仿真模型
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热处理对铝合金自冲铆接头裂纹和力学性能的影响
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作者 邢保英 陈锦聪 +3 位作者 阎治铭 张洪申 曾凯 邹春芽 《工程设计学报》 北大核心 2025年第3期359-366,共8页
针对2024铝合金自冲铆接头底部易出现裂纹的问题,通过铆接实验来分析裂纹形成机理,并结合2024铝合金板材先退火再铆接的工艺开展裂纹抑制研究;同时,对比了接头剖面的显微组织和力学性能,并采用扫描电镜(scanning electron microscope, S... 针对2024铝合金自冲铆接头底部易出现裂纹的问题,通过铆接实验来分析裂纹形成机理,并结合2024铝合金板材先退火再铆接的工艺开展裂纹抑制研究;同时,对比了接头剖面的显微组织和力学性能,并采用扫描电镜(scanning electron microscope, SEM)对接头断口特征进行分析,以探究其失效机理,进而分析热处理工艺对接头力学性能和失效形式的影响。结果表明,2024铝合金板材经360℃退火处理后,其塑性和延伸率显著提高,硬度下降了23.6%。当2024铝合金板材未经退火处理直接进行铆接时,裂纹萌生点位于铆钉管腿尖区域,接头底部出现沿径向分布的宏观裂纹;退火处理后接头底部无明显裂纹,连接点的密封性、抗腐蚀性能显著增强。未退火处理组接头剖面的晶粒结构粗大、不规则,且铆钉管腿尖区域的变形较大,而退火处理组接头剖面的晶粒结构细化且更匀称。退火处理组接头的静强度下降了12.93%,但失效位移和能量吸收值分别提高了27.3%和19.31%,其失效形式由上板完全断裂转变为下板撕裂,且连接点底部被铆扣拉穿,断口由脆性断裂转变为韧性断裂。研究结果可为自冲铆接工艺在汽车、航空航天等领域的应用提供重要参考。 展开更多
关键词 2024铝合金 自冲铆接头 裂纹 热处理工艺 力学性能 失效形式
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拉伸速度对GFRP/铝合金胶铆接头拉伸性能的影响
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作者 李海洋 肖守讷 +4 位作者 陈东东 吴志林 王璐 彭治瑜 邱琳 《焊接学报》 北大核心 2025年第11期53-60,共8页
为研究加载速度对GFRP/Al胶铆接头拉伸性能的影响,以单钉胶铆连接和双钉胶铆连接接头为研究对象,对其分别开展了0.5 m/s,1.25 m/s和3.75 m/s的动态拉伸试验,分析两种接头在不同加载速度下的力-位移响应、峰值力和吸能量指标,利用数字图... 为研究加载速度对GFRP/Al胶铆接头拉伸性能的影响,以单钉胶铆连接和双钉胶铆连接接头为研究对象,对其分别开展了0.5 m/s,1.25 m/s和3.75 m/s的动态拉伸试验,分析两种接头在不同加载速度下的力-位移响应、峰值力和吸能量指标,利用数字图像相关技术记录和分析接头的失效过程,通过光学镜观察分析接头的断裂形貌.结果表明,GFRP/Al胶铆接接头的拉伸力-位移曲线包含整体承载、胶层失效阶段、铆钉承载和接头失效阶段;加载速度的提高对峰值力和吸能量指标无明显影响,单钉胶铆连接接头的平均峰值力和吸能量维持在3.3~3.7 kN和13.2~13.7 J,双钉胶铆连接接头的平均峰值力和吸能量维持在6.2~6.4 kN和26.6~30.4 J;此外,胶铆接头的失效模式对加载速度具有敏感性,在高加载速度下,接头处GFRP板的断裂和翘曲是主要的失效模式;同时与低速加载的接头相比,GFRP板层间失效更严重,断口形状更规则. 展开更多
关键词 轨道车辆 胶铆连接 动态拉伸 复合材料 玻璃纤维增强复合材料 铝合金
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S-Al-S装配式铆钉的抗剪性能研究
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作者 闫亚杰 仲志强 +1 位作者 武海全 郭昱 《太原理工大学学报》 北大核心 2025年第5期934-943,共10页
【目的】针对铝合金节点在不锈钢螺栓或环槽铆钉连接下存在滑移的问题,提出了一种抗剪连接用的装配式铆钉,介绍了其工作原理。【方法】通过抗剪试件的试验研究,得到了装配式铆钉抗剪连接的荷载-位移曲线、传力方式、破坏机理及形态。通... 【目的】针对铝合金节点在不锈钢螺栓或环槽铆钉连接下存在滑移的问题,提出了一种抗剪连接用的装配式铆钉,介绍了其工作原理。【方法】通过抗剪试件的试验研究,得到了装配式铆钉抗剪连接的荷载-位移曲线、传力方式、破坏机理及形态。通过比对,验证了有限元模型及分析结果的有效性。【结果】为考虑偏心对装配式铆钉抗剪性能的影响,采用M11装配式铆钉,通过双剪与单剪的受力性能分析,发现双剪试件的承载力设计值较单剪试件高出141.3%、对应的变形量仅增加了4.9%,研究表明采用无偏心或小偏心的抗剪连接时,更能激发装配式铆钉的抗剪性能。与不锈钢螺栓双剪试件对比,装配式铆钉的承载力设计值是不锈钢螺栓的76.9%,但对应的变形量仅为40.1%,说明装配式铆钉用于铝合金节点的抗剪连接时,在承载力及其连接刚度方面相较于目前常用的不锈钢螺栓具有竞争优势。 展开更多
关键词 铝合金节点 装配式铆钉 抗剪性能 滑移变形
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轻钢混凝土组合铆接连接节点受拉性能试验及参数分析
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作者 潘志宏 高昊飞 +2 位作者 姚凯 王云庆 李航 《建筑结构》 北大核心 2025年第12期111-118,共8页
为研究铆接工艺在轻钢混凝土组合节点中的应用,对6组轻钢和混凝土组合铆接试件进行了受拉性能试验,根据其荷载-位移曲线,总结出该类节点的5个受力阶段;分析了混凝土、板厚比和混凝土强度对该节点受拉性能的影响规律,并采用ABAQUS软件建... 为研究铆接工艺在轻钢混凝土组合节点中的应用,对6组轻钢和混凝土组合铆接试件进行了受拉性能试验,根据其荷载-位移曲线,总结出该类节点的5个受力阶段;分析了混凝土、板厚比和混凝土强度对该节点受拉性能的影响规律,并采用ABAQUS软件建立有限元模型,对其在水平拉伸荷载作用下的抗拉性能进行了数值模拟和分析。试验结果表明:外部混凝土对铆接连接有良好的侧向约束,能抑制轻钢端部翘曲及铆钉倾斜角度过大导致的铆钉腿部拉出,有效提高了内部锁铆节点的极限承载力,并且改善了铆钉失效后承载力快速下降的情况,同时提高了轻钢连接的抗拉刚度及延性。有限元模拟结果与试验结果吻合良好,建立的有限元模型能较好地模拟轻钢混凝土组合铆接节点的抗拉性能。 展开更多
关键词 轻钢混凝土组合节点 铆接连接 受拉性能 参数分析
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轻钢混凝土铆接节点受拉性能及计算方法研究
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作者 潘志宏 贺乾鹏 +1 位作者 姚凯 王云庆 《江苏科技大学学报(自然科学版)》 2025年第2期65-73,共9页
为了研究轻钢混凝土铆接组合节点的受拉力学性能及计算方法,考虑了混凝土强度、钢板厚度及板厚比等因素,对6组组合节点试件进行受拉试验,研究了各试件的荷载-位移曲线、承载力和破坏模式.基于纯铆连接计算方法,考虑了混凝土的影响,提出... 为了研究轻钢混凝土铆接组合节点的受拉力学性能及计算方法,考虑了混凝土强度、钢板厚度及板厚比等因素,对6组组合节点试件进行受拉试验,研究了各试件的荷载-位移曲线、承载力和破坏模式.基于纯铆连接计算方法,考虑了混凝土的影响,提出了铆接组合节点的计算方法.研究结果表明:轻钢混凝土铆接组合节点的荷载-位移曲线分为5个明显阶段;组合节点的破坏主要为锁铆处较薄钢板破坏,与纯铆试件铆钉脱离破坏有较大差别;外部混凝土和板厚比对组合节点的受拉性能影响较大,有混凝土包裹的铆接试件承载能力是纯铆接的2~3倍,板厚比为1时力学性能最好;外部混凝土能有效提高内部铆接节点的极限承载力,并且改善铆钉失效后承载力快速下降的情况;考虑混凝土影响的受拉承载力计算方法具有较高的预测精度. 展开更多
关键词 轻钢混凝土组合节点 铆接连接 受拉性能 影响因素 计算方法
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