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索-钢/铝合金组合结构初始态确定及静力分析
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作者 张莉 《上海大学学报(自然科学版)》 CAS CSCD 北大核心 2015年第5期631-639,共9页
索-钢/铝合金组合结构作为一种新颖的结构形式,是由拉索和压杆(钢管/铝合金圆管)组成的自应力状态下的稳定自平衡体系,体系中受拉连续,受压不连续.在给定结构几何外形和拓扑关系的基础上,采用动力松弛法确定该体系的自应力初始态;在自... 索-钢/铝合金组合结构作为一种新颖的结构形式,是由拉索和压杆(钢管/铝合金圆管)组成的自应力状态下的稳定自平衡体系,体系中受拉连续,受压不连续.在给定结构几何外形和拓扑关系的基础上,采用动力松弛法确定该体系的自应力初始态;在自重及外部荷载作用下,采用牛顿-拉弗森方法分析确定结构的静力性能.为揭示此类结构的受力机理,该体系中的压杆分别采用钢管和铝合金圆管,对比分析两类组合结构在受力性能方面的异同.数值算例表明了本方法的实用性和优越性,为索-钢/铝合金组合结构在实际工程中的推广应用奠定了基础. 展开更多
关键词 索-钢/铝合金组合结构 自应力初始态 力学性能
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焊接温度对热镀锌钢/铝合金压力焊接头组织和拉伸性能的影响 被引量:1
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作者 余本红 林健 +1 位作者 白海林 雷永平 《机械工程材料》 CAS CSCD 北大核心 2016年第9期58-61,共4页
使用热模拟试验机对热镀锌钢板和6061铝合金板的压力焊接试验进行模拟,研究了焊接温度(390~490℃)对接头组织和拉伸性能的影响,分析了不同焊接温度下接头界面层的微区成分。结果表明:随着焊接温度升高,界面层中的铝锌二元化合物逐渐... 使用热模拟试验机对热镀锌钢板和6061铝合金板的压力焊接试验进行模拟,研究了焊接温度(390~490℃)对接头组织和拉伸性能的影响,分析了不同焊接温度下接头界面层的微区成分。结果表明:随着焊接温度升高,界面层中的铝锌二元化合物逐渐减少,铁铝金属间化合物逐渐生成,接头的剪切力先减小后增大;当焊接温度为390℃时,界面层主要由铝锌二元化合物组成,接头的剪切力最大,为6.45kN;当焊接温度为430℃时,接头的剪切力最小,为4.39kN;焊接温度超过430℃后,界面层中的铝锌二元化合物完全消失,主要为铁铝金属间化合物,接头的剪切力又开始增大。 展开更多
关键词 热模拟 钢/铝合金接头 金属间化合物 剪切力
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汽车用钢/铝合金激光搭接焊接工艺研究 被引量:5
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作者 常彦博 郭亮 +3 位作者 张庆茂 张鑫 吕启涛 左涵宇 《应用激光》 CSCD 北大核心 2020年第4期665-671,共7页
汽车制造时将钢/铝合金结合起来使用,能够实现车身强度不降低的前提下,极大地减轻车身的质量,以实现节能减排的目的。选取100 mm×50 mm×1.5 mm的DC01冷轧钢板和相同尺寸的6010铝合金进行光纤激光搭接焊接试验。试验发现,当激... 汽车制造时将钢/铝合金结合起来使用,能够实现车身强度不降低的前提下,极大地减轻车身的质量,以实现节能减排的目的。选取100 mm×50 mm×1.5 mm的DC01冷轧钢板和相同尺寸的6010铝合金进行光纤激光搭接焊接试验。试验发现,当激光功率P=1900 W,焊接速度v=45 mm/s,离焦量f=-3 mm时获得的焊接接头剪切强度达到最大值100.21 MPa。随后在搭接面添加0.2 mm的Cu中间层后,实验结果表明,添加Cu中间层后接头强度提升到144.91 MPa,焊缝中心硬度显著提高。金相显微镜观察表明,添加Cu中间层可以增大焊缝深宽比,同时细化晶粒。XRD结果表明,添加中间层后有新物相生成,主要为Al-Cu系化合物。EDS线扫描结果发现,添加中间层后金属间化合物层由40μm降低至20μm。 展开更多
关键词 钢/铝合金激光焊接 汽车轻量化 中间层 金属间化合物 剪切强度
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钢/铝合金液固相复合工艺的研究 被引量:2
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作者 荀玉伟 崔建忠 《材料科学与工艺》 CAS CSCD 北大核心 1996年第2期81-86,共6页
通过正交试验研究了各工艺量数对钢/铝合金液固相复合性能的影响.最佳工艺条件为铝合金液体温度790℃,钢板表面处理为酸洗+钢刷+5%的氟钛酸钾助焊剂,复合压力为39.2MPa.组织观察表面界面脆性化合物的形成是导致结合... 通过正交试验研究了各工艺量数对钢/铝合金液固相复合性能的影响.最佳工艺条件为铝合金液体温度790℃,钢板表面处理为酸洗+钢刷+5%的氟钛酸钾助焊剂,复合压力为39.2MPa.组织观察表面界面脆性化合物的形成是导致结合强度降低的一个重要因素。 展开更多
关键词 层压板 扩散 复合材料 钢/铝合金
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预制波纹工艺对钢/铝/铝合金复合板界面影响机制研究 被引量:2
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作者 陈宇 刘文文 +3 位作者 王涛 申宏卓 陈科 张斌 《机械工程学报》 EI CAS CSCD 北大核心 2023年第8期74-82,共9页
针对轧制钢/铝复合板过程中易出现的变形不协调、界面氧化和结合强度低等问题,提出一种“冷轧预制波纹+热轧平辊整平”的轧制复合方法。首先,利用波纹辊冷轧预制出铝侧带波纹,钢侧为平面的钢/铝复合板,由于铝侧极薄,既可以避免双金属的... 针对轧制钢/铝复合板过程中易出现的变形不协调、界面氧化和结合强度低等问题,提出一种“冷轧预制波纹+热轧平辊整平”的轧制复合方法。首先,利用波纹辊冷轧预制出铝侧带波纹,钢侧为平面的钢/铝复合板,由于铝侧极薄,既可以避免双金属的变形不协调,又可以使铝覆着在钢上防止其高温氧化;其次,将钢/铝波纹复合板再与铝合金板组坯,加热至500℃,经平辊轧制,最终制备出表面平直、界面呈波纹形状的钢/铝/铝合金复合板。通过分析不同预制波纹工艺对钢/铝/铝合金复合板轧制过程中界面形貌及性能的影响表明:(1)铝带轧前热处理,可以提高铝带延展性和降低其变形抗力,有利于改善预制工艺中钢铝双金属的协调变形;(2)预制钢/铝复合板压下率存在最佳值,过小界面存在缝隙,过大铝层容易被波纹辊拉断;(3)通过优化预制工艺,最终制备的钢/铝/铝合金复合板实现了各层金属间的机械咬合和冶金结合,轧向界面平均剪切强度达到77.68 MPa、横向界面平均剪切强度达到92.63 MPa,远高于国标60 MPa,为提高钢/铝复合板界面结合强度提供了新的思路。 展开更多
关键词 波纹辊冷轧 波纹界面 冶金结合 钢//铝合金复合板 剪切强度
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Structure and mechanical properties of aluminum alloy/Ag interlayer/steel non-centered electron beam welded joints 被引量:6
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作者 张秉刚 陈国庆 +1 位作者 张春光 倪家强 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2011年第12期2592-2596,共5页
Electron beam welding was carried out between aluminum alloy and steel with Ag interlayer. Seam morphology, structure and mechanical properties of the joints were investigated with different action positions of the el... Electron beam welding was carried out between aluminum alloy and steel with Ag interlayer. Seam morphology, structure and mechanical properties of the joints were investigated with different action positions of the electron beam spot. The results show that with the increment of the beam offset to the silver side from the interface between silver and steel, the seam morphology was improved, and the porosity in the Ag interlayer vanished. A transition layer mainly composed of Ag2Al and Al eutectic was formed at the interface between silver and aluminum, and became thin and spiccato as the beam offset increased. When the beam offset was too large, two IMC layers composed of FeAl and FeAl3 respectively were formed at the interface between steel and Ag interlayer. The optimal beam offset was 0.2 mm, and the maximum tensile strength of the joint was 193 MPa, 88.9% that of the aluminum alloy, and the fracture occurred at the interface between steel and Ag interlayer. 展开更多
关键词 aluminum alloy STEEL Ag interlayer non-centered electron beam welding joint
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Contact reactive brazing of Al alloy/Cu/stainless steel joints and dissolution behaviors of interlayer 被引量:10
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作者 吴铭方 司乃潮 陈健 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2011年第5期1035-1039,共5页
Contact reactive brazing of 6063 Al alloy and 1Cr18Ni9Ti stainless steel was researched by using Cu as interlayer. Effect of brazing time on microstructure of the joints, as well as the dissolution behaviors of Cu int... Contact reactive brazing of 6063 Al alloy and 1Cr18Ni9Ti stainless steel was researched by using Cu as interlayer. Effect of brazing time on microstructure of the joints, as well as the dissolution behaviors of Cu interlayer was analyzed. The results show that the product of reaction zone near 1Cr18Ni9Ti is composed of Fe2Al5, FeAl3 intermetallic compound (IMC), and Cu-Al IMC; the near by area is composed of Al-Cu eutectic structure with Al (Cu) solid solution. With increasing the brazing time, the thickness of IMC layer at the interface increases, while the width of Al-Cu eutectic structure with Al(Cu) solution decreases. Calculation shows the dissolution rate of Cu interlayer is very fast. The complete dissolution time is about 0.47 s for Cu interlayer with 10 μm in thickness used in this study. 展开更多
关键词 Al alloy stainless steel contact reactive brazing MICROSTRUCTURE dissolution of interlayer
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New development of powder metallurgy in automotive industry 被引量:9
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作者 TAN Zhao-qiang ZHANG Qing +3 位作者 GUO Xue-yi ZHAO Wei-jiang ZHOU Cheng-shang LIU Yong 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第6期1611-1623,共13页
The driving force for using powder metallurgy(PM)mostly relies on its near net-shape ability and cost-performance ratio.The automotive application is a main market of PM industry,requiring parts with competitive mecha... The driving force for using powder metallurgy(PM)mostly relies on its near net-shape ability and cost-performance ratio.The automotive application is a main market of PM industry,requiring parts with competitive mechanical or functional performance in a mass production scale.As the automobile technology transforms from traditional internal combustion engine vehicles to new energy vehicles,PM technology is undergoing significant changes in manufacturing and materials development.This review outlines the challenges and opportunities generated by the changes in the automotive technology for PM.Low-cost,high-performance and light-weight are critical aspects for future PM materials development.Therefore,the studies on PM lean-alloyed steel,aluminum alloys,and titanium alloy materials were reviewed.In addition,PM soft magnetic composite applied to new energy vehicles was discussed.Then new opportunities for advanced processing,such as metal injection molding(MIM)and additive manufacturing(AM),in automotive industry were stated.In general,the change in automotive industry raises sufficient development space for PM.While,emerging technologies require more preeminent PM materials.Iron-based parts are still the main PM products due to their mechanical performance and low cost.MIM will occupy the growing market of highly flexible and complex parts.AM opens a door for fast prototyping,great flexibility and customizing at low cost,driving weight and assembling reduction. 展开更多
关键词 AUTOMOTIVE powder metallurgy lean alloy Al alloy Ti alloy metal injection molding additive manufacturing
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Improving pulsed laser weldability of duplex stainless steel to 5456 aluminum alloy via friction stir process reinforcing of aluminum by BNi-2 brazing alloy 被引量:6
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作者 Hossein ESMAILY Ali HABIBOLAHZADEH Mohammad TAJALLY 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2019年第7期1401-1412,共12页
Effects of laser pulse distance and reinforcing of 5456 aluminum alloy were investigated on laser weldability of Al alloy to duplex stainless steel (DSS) plates. The aluminum alloy plate was reinforced by nickel-base ... Effects of laser pulse distance and reinforcing of 5456 aluminum alloy were investigated on laser weldability of Al alloy to duplex stainless steel (DSS) plates. The aluminum alloy plate was reinforced by nickel-base BNi-2 brazing powder via friction stir processing. The DSS plates were laser welded to the Al5456/BNi-2 composite and also to the Al5456 alloy plates. The welding zones were studied by scanning electron microscopy, X-ray diffractometry, micro-hardness and shear tests. The weld interface layer became thinner from 23 to 5 μm, as the laser pulse distance was increased from 0.2 to 0.5 mm. Reinforcing of the Al alloy modified the phases at interface layer from Al-Fe intermetallic compounds (IMCs) in the DSS/Al alloy weld, to Al-Ni-Fe IMCs in the DSS/Al composite one, since more nickel was injected in the weld pool by BNi-2 reinforcements. This led to a remarkable reduction in crack tendency of the welds and decreased the hardness of the interface layer from ~950 HV to ~600 HV. Shear strengths of the DSS/Al composite welds were significantly increased by ~150%, from 46 to 114 MPa, in comparison to the DSS/Al alloy ones. 展开更多
关键词 duplex stainless steel (DSS) Al5456 aluminum alloy BNi-2 brazing alloy friction stir processing pulsed laser welding
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Prediction and optimization of friction welding parameters for joining aluminium alloy and stainless steel 被引量:9
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作者 R.PAVENTHAN P.R.LAKSHMINARAYANAN V.BALASUBRAMANIAN 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2011年第7期1480-1485,共6页
Friction welding (FW) is a process of solid state joining which is used extensively in recent years due to its advantages such as low heat input,production efficiency,ease of manufacture and environment friendliness... Friction welding (FW) is a process of solid state joining which is used extensively in recent years due to its advantages such as low heat input,production efficiency,ease of manufacture and environment friendliness.Friction welding can be used to join different types of ferrous metals and non-ferrous metals that cannot be welded by traditional fusion welding processes.The process parameters such as friction pressure,forging force,friction time and forging time play the major roles in determining the strength of the joints.In this investigation an attempt was made to develop an empirical relationship to predict the tensile strength of friction welded AA 6082 aluminium alloy and AISI 304 austenitic stainless steels joints,incorporating above said parameters.Response surface methodology (RSM) was applied to optimizing the friction welding process parameters to attain the maximum tensile strength of the joint. 展开更多
关键词 friction welding aluminium alloy stainless steel response surface methodology OPTIMIZATION
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Effects of welding parameters and tool geometry on properties of 3003-H18 aluminum alloy to mild steel friction stir weld 被引量:3
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作者 M.DEHGHANI S.A.A.AKBARI MOUSAVI A.AMADEH 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2013年第7期1957-1965,共9页
Defect-free butt joints of 3003 Al alloy to mild steel plates with 3 mm thickness were performed using friction stir welding (FSW). A heat input model reported for similar FSW was simplified and used to investigate ... Defect-free butt joints of 3003 Al alloy to mild steel plates with 3 mm thickness were performed using friction stir welding (FSW). A heat input model reported for similar FSW was simplified and used to investigate the effects of welding speed, rotation speed and tool shoulder diameter on the microstructure and properties of dissimilar welds. The comparison between microstructure, intermetallics and strength of welds shows the good conformity between the results and the calculated heat input factor (HIF) achieved from the model. The joint strength is controlled by Al/Fe interface at HIF of 0.2-0.4, by TMAZ at HIF of 0.4-0.8 and by intermetallics and/or defects at HIF0.8. 展开更多
关键词 friction stir welding dissimilar joining microstructure tensile strength aluminum alloy carbon steel intermetallic compound
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Effect of Mg and Si on intermetallic formation and fracture behavior of pure aluminum-galvanized carbon-steel joints made by weld-brazing 被引量:1
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作者 A.ALIKHANI R.BEYGI +2 位作者 M.ZAREZADEH MEHRIZI F.NEMATZADEH I.GALVÃO 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第11期3626-3638,共13页
Commercial pure aluminum and galvanized carbon steel were lap-welded using the weld-brazing(WB)technique.Three types of aluminum filler materials(4043,4047,and 5356) were used for WB.The joint strength and intermetall... Commercial pure aluminum and galvanized carbon steel were lap-welded using the weld-brazing(WB)technique.Three types of aluminum filler materials(4043,4047,and 5356) were used for WB.The joint strength and intermetallic compounds at the interface of three series of samples were analyzed and compared.Depending on the Si content,a variety of ternary Al-Fe-Si intermetallic compounds(IMCs) such as Fe_(4)(Al,Si)_(13),Fe_(2) Al_(8) Si(τ_(5)),and Fe_(2) Al_(9) Si_(2)(τ_(6)) were formed at the interface.Mg element in 5356 filler material cannot contribute to the formation of Al-Fe intermetallic phases due to the positive mixing enthalpy of Mg-Fe.The presence of Mg enhances the hot cracking phenomenon near the Al-Fe intermetallic compound at the interface.Zn coating does not participate in intermetallic formation due to its evaporation during WB.It was concluded that the softening of the base metal in the heat-affected zone rather than the IMCs determines the joint efficiency. 展开更多
关键词 weld-brazing Al-steel ternary Al-Fe intermetallic joint efficiency hot cracking
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TIG welding-brazing joint of aluminum to stainless steel with hot wire 被引量:1
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作者 何欢 林三宝 +2 位作者 陈哲 范成磊 杨春利 《China Welding》 EI CAS 2013年第3期25-30,共6页
TIG welding-brazing process with high frequency induction hot wire technology was presented to create joints between 5A06 aluminum alloy and SUS32! stainless steel using ER1100 filler wire with different temperature. ... TIG welding-brazing process with high frequency induction hot wire technology was presented to create joints between 5A06 aluminum alloy and SUS32! stainless steel using ER1100 filler wire with different temperature. The joints were evaluated by mechanical test and microstructural analyses. The welding procedure using hot fiUer wire (400 ℃ ) significantly increases strength stability by 71% and average value of tensile strength by 30. 8 % of the joints, compared with cold wire. The research of microstructures in interfaces and welded seams reveals that using 400 ℃ hot filler wire can decrease the thickness of intermetallic compounds ( IMCs ) from 6 to 3.5 txm approximately, which is the main reason of mechanical property improvement. 展开更多
关键词 aluminum alloy stainless steel WELDING-BRAZING hot wire high frequency induction INTERMETALLIC
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Vacuum Brazing of TiAl Based Alloy with 40Cr Steel
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作者 周昀 薛小怀 +1 位作者 吴鲁海 楼松年 《Journal of Shanghai Jiaotong university(Science)》 EI 2004年第2期55-57,共3页
The vacuum brazing of TiAl based alloy with 40Cr steel was investigated using Ag-Cu-Ti filler metal. The experimental results show that the Ag, Cu, Ti atoms in the filler metal and the base metal inter-diffuse toward ... The vacuum brazing of TiAl based alloy with 40Cr steel was investigated using Ag-Cu-Ti filler metal. The experimental results show that the Ag, Cu, Ti atoms in the filler metal and the base metal inter-diffuse toward each other during brazing and react at the interface to form an inter-metallic AlCu 2Ti compound which joins two parts to produce a brazing joint with higher strength. 展开更多
关键词 TiAl based alloy 40Cr steel Ag-Cu-Ti filler metal intermetallic AlCu 2Ti
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稀土添加层对钢/铝激光搭接焊接头组织与性能的影响 被引量:3
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作者 张良 闫飞 《应用激光》 CSCD 北大核心 2021年第2期293-298,共6页
采用光纤激光对钢/铝异种金属进行激光搭接焊,研究稀土添加层对接头界面过渡区微观组织、元素分布、析出相以及力学性能的影响。结果表明:在激光功率2.0kW,焊接速度3m/min,离焦量+2mm工艺参数下,可以获得宏/微观成形良好的焊接接头。研... 采用光纤激光对钢/铝异种金属进行激光搭接焊,研究稀土添加层对接头界面过渡区微观组织、元素分布、析出相以及力学性能的影响。结果表明:在激光功率2.0kW,焊接速度3m/min,离焦量+2mm工艺参数下,可以获得宏/微观成形良好的焊接接头。研究还发现,添加层中稀土Y可以有效调控钢/铝界面的冶金反应,促使界面形成Fe23Y6、Al3Y等多种韧性金属化合物。界面层韧性相的析出,一定程度上抑制了钢/铝界面脆性相的生成,有效地改善了接头的力学性能。 展开更多
关键词 激光焊接 镀锌钢/铝合金 微观组织 金属间化合物 力学性能
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Friction plug−riveting spot welding of AA 7075-T6 aluminum alloy and low carbon steel using 1045 steel rivet
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作者 Ya-jia LIU Jian-yu LI +4 位作者 Ze-hao XIE Shu-hai CHEN Jian YANG Ji-hua HUANG Zhi-yi ZHAO 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS 2024年第12期3893-3904,共12页
7075-T6 aluminum alloy/low carbon steel joint was carried out via a novel friction plug−riveting spot welding process.This process utilized uniquely designed steel rivets with a tip and groove shape.The macro-morpholo... 7075-T6 aluminum alloy/low carbon steel joint was carried out via a novel friction plug−riveting spot welding process.This process utilized uniquely designed steel rivets with a tip and groove shape.The macro-morphology formation,microstructure,microhardness and lap shear performance of joints were investigated.As the spindle down distance increased,the rivet tip was friction welded with the lower steel sheet,resulting in the formation of a solid phase welding zone exhibiting metallurgical bonding.Additionally,a hook was formed in the joint,providing the mechanical locking.The results showed that under optimal parameters of spindle down distance of 3.4 mm,rotation speed of 4000 r/min,and spindle down speed of 2.4 mm/s,the lap shear load of the joints reached a maximum of 14.36 kN.Failure occurred at the aluminum alloy base metal. 展开更多
关键词 friction plug-riveting spot welding aluminum alloy low carbon steel dissimilar metal joining
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