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Effect of bonding interface on delamination behavior of drawn Cu/Al bar clad material 被引量:9
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作者 Sangmok LEE Min-Geun LEE +4 位作者 Sang-Pill LEE Geun-Ahn LEE Yong-Bae KIM Jong-Sup LEE Dong-Su BAE 《中国有色金属学会会刊:英文版》 CSCD 2012年第S3期645-649,共5页
Cu/Al bar clad material was fabricated by a drawing process and a subsequent heat treatment.During these processes,intermetallic compounds have been formed at the interface of Cu/Al and have affected its bonding prope... Cu/Al bar clad material was fabricated by a drawing process and a subsequent heat treatment.During these processes,intermetallic compounds have been formed at the interface of Cu/Al and have affected its bonding property.Microstructures of Cu/Al interfaces were observed by OM,SEM and EDX Analyser in order to investigate the bonding properties of the material.According to the microstructure a series of diffusion layers were observed at the interface and the thicknesses of diffusion layers have increased with aging time as a result of the diffusion bonding.The interfaces were composed of 3-ply diffusion layers and their compositions were changed with aging time at 400 °C.These compositional compounds were revealed to be η2,(θ+η2),(α+θ) intermetallic phases.It is evident from V-notch impact tests that the growth of the brittle diffusion layers with the increasing aging time directly influenced delamination distance between the Cu sleeve and the Al core.It is suggested that the proper holding time at 400 °C for aging as post heat treatment of a drawn Cu/Al bar clad material would be within 1 h. 展开更多
关键词 drawn cu/al BAR clad material aging bonding interface INTERMETalLIC compound diffusion layer DELAMINATION
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Al 1060/Pure Iron Clad Materials by Vacuum Roll Bonding and Their Solderability 被引量:3
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作者 Qian Wang Xuesong Leng +3 位作者 Jiuchun Yan Weibing Guo Yu Fu Tianming Luan 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2013年第10期948-954,共7页
Al 1060/pure iron clad materials were produced by vacuum roll bonding. The effects of preheating temperature, vacuum roll reduction and initial thickness of the A11060 sheet on the metal interface and bonding strength... Al 1060/pure iron clad materials were produced by vacuum roll bonding. The effects of preheating temperature, vacuum roll reduction and initial thickness of the A11060 sheet on the metal interface and bonding strength were investigated. The interfacial microstructure was investigated and the mechanical properties of the joint were evaluated by shear testing. The bonding strength of the clad materials was generally enhanced by increasing the total reduction or preheating temperature, which caused the metal interface to flatten. No obvious reaction or diffusion layer was observed at the interface between Al 1060 and pure iron. The bonding strength increased with decreasing the initial thickness of the Al 1060 sheets. The Al 1060/pure iron clad materials were soldered with Zn-Al alloy by using an ultrasonic-assisted method. Strong bonding of the Al 1060 layer and Al 7N01 was realized without obvious Al 1060 dissolution or effect on the initial interface of Al 1060/pure iron clad materials by soldering at relatively low temperature. 展开更多
关键词 al 1060/pure iron clad materials Vacuum roll bonding Bonding strength Ultrasonic-assisted soldering
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Al‑Zn‑Mg‑Cu系铝合金性能优化研究现状及发展趋势 被引量:3
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作者 周莲 李发国 张佼 《现代交通与冶金材料》 2025年第1期94-108,122,共16页
Al⁃Zn⁃Mg⁃Cu系铝合金作为一种轻质高强结构材料,兼具优异的耐腐蚀能力和热加工性能,在航空工业中占据重要地位。热处理一直是Al⁃Zn⁃Mg⁃Cu系铝合金的研究重点,对提升合金强度、韧性和腐蚀性能的优化匹配发挥着巨大作用。新的制备技术能... Al⁃Zn⁃Mg⁃Cu系铝合金作为一种轻质高强结构材料,兼具优异的耐腐蚀能力和热加工性能,在航空工业中占据重要地位。热处理一直是Al⁃Zn⁃Mg⁃Cu系铝合金的研究重点,对提升合金强度、韧性和腐蚀性能的优化匹配发挥着巨大作用。新的制备技术能够突破传统合金化和热处理的局限,为提升Al⁃Zn⁃Mg⁃Cu系铝合金的综合性能提供新的路径,计算材料学的发展,进一步推动了合金的成分设计和工艺优化。本文介绍了热处理、增材制造技术及计算材料学对Al⁃Zn⁃Mg⁃Cu系铝合金组织和性能的影响,并对未来研究方向进行了展望。 展开更多
关键词 al⁃Zn⁃Mg⁃cu 热处理 增材制造 计算材料学 性能优化
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Al-Cu周期叠层梯度材料的流延法制备及准等熵加载特性
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作者 吴宜檑 陈宬 +4 位作者 李培博 张睿智 孙一 罗国强 沈强 《高压物理学报》 北大核心 2025年第7期1-16,共16页
周期叠层梯度材料具有独立可控的波阻抗分布和极少的物相反应,已被用于实现准等熵加载。然而,由于制备技术的局限性,目前制备的周期叠层梯度材料的波系作用时间只有纳秒量级,难以获得更高量级的加载时间。为此,系统探究了流延技术,成功... 周期叠层梯度材料具有独立可控的波阻抗分布和极少的物相反应,已被用于实现准等熵加载。然而,由于制备技术的局限性,目前制备的周期叠层梯度材料的波系作用时间只有纳秒量级,难以获得更高量级的加载时间。为此,系统探究了流延技术,成功通过流延法结合低温致密化技术制备出大尺寸Al-Cu周期叠层梯度材料。通过微观结构表征和动态加载实验,验证了其质量和准等熵加载特性。结果表明:材料梯度结构明显,层间平行度高,层界面结合良好,无裂纹缺陷,且无金属间化合物生成;材料致密度达95.8%,整体变形量小于15μm。Al-Cu周期叠层梯度材料以510.6 m/s的驱动速度加载6μm厚Al靶时,加载波形振荡上升,加载时间接近1μs。通过对实验材料Al/Cu周期层厚和Cu层波阻抗进行修正,设计模拟结果与实验曲线在加载趋势上吻合较好,表现出良好的准等熵加载特性。研究结果可为周期叠层梯度材料制备技术提供理论依据和技术支持。 展开更多
关键词 周期叠层梯度材料 al-cu 流延法 低温致密化 准等熵加载
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双级固溶对高Zn含量Al-Zn-Mg-Cu合金组织及力学性能的影响
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作者 王卓 王毅哲 +5 位作者 王家兴 刘子涵 周峻业 刘英 杨潇 王立伟 《河北科技大学学报》 北大核心 2025年第4期426-433,共8页
为解决Al-Zn-Mg-Cu合金热处理过程中Zn含量过高导致的第二相粒子不易回溶的问题,采用金相显微镜(optical microscope, OM)、扫描电子显微镜(scanning electron microscope, SEM)、维氏硬度计和室温拉伸实验,研究了不同双级固溶工艺对高Z... 为解决Al-Zn-Mg-Cu合金热处理过程中Zn含量过高导致的第二相粒子不易回溶的问题,采用金相显微镜(optical microscope, OM)、扫描电子显微镜(scanning electron microscope, SEM)、维氏硬度计和室温拉伸实验,研究了不同双级固溶工艺对高Zn含量Al-Zn-Mg-Cu合金固溶淬火态和T6峰时效态微观组织和力学性能的影响。结果表明:随着第一级固溶温度的升高,合金强度硬度升高,材料综合力学性能提高;延伸率随第一级固溶温度的升高先上升后下降,拉伸断口均呈现韧性断裂;合金经460℃/1 h+475℃/2 h双级固溶-淬火处理后抗拉强度、屈服强度和延伸率分别为580.5 MPa、465.3 MPa和13.6%,综合力学性能较好。通过调整双级固溶处理过程中第一级处理的温度可以改善高Zn含量铝合金材料的综合性能,为提升铝合金材料热处理工艺提供了理论参考。 展开更多
关键词 材料的组织、结构、缺陷和性能 al-ZN-MG-cu合金 微观组织 固溶 拉伸性能 断口形貌
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陶瓷增强Al-Fe-Cu合金的制备及性能研究
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作者 陆艳红 白雨濛 +3 位作者 刘畅 殷志豪 周列金 谢志强 《材料科学》 2025年第5期1088-1098,共11页
采用光学显微镜与超景深显微镜观察了不同Al_(2)O_(3)添加量的Al_(2)O_(3)增强Al_(7)0Fe_(10)Cu_(20)合金微观组织,利用X射线衍射仪、拉伸试验机、维氏硬度计、摩擦磨损试验机、密度计、电导率仪检测了Al_(2)O_(3)增强Al_(7)0Fe_(10)Cu_... 采用光学显微镜与超景深显微镜观察了不同Al_(2)O_(3)添加量的Al_(2)O_(3)增强Al_(7)0Fe_(10)Cu_(20)合金微观组织,利用X射线衍射仪、拉伸试验机、维氏硬度计、摩擦磨损试验机、密度计、电导率仪检测了Al_(2)O_(3)增强Al_(7)0Fe_(10)Cu_(20)合金力学性能、摩擦磨损性能、密度与电导率。结果表明,Al_(2)O_(3)颗粒的添加量以及真空熔炼后Al_(2)O_(3)颗粒在Al_(7)0Fe_(10)Cu_(20)合金中的分布均匀性对复合材料的显微组织和性能影响较大。综合各项性能指标得出Al_(2)O_(3)最优添加量为0.1 wt%,与不添加Al_(2)O_(3)的Al_(7)0Fe_(10)Cu_(20)合金相比添加0.1 wt% Al_(2)O_(3)的Al_(7)0Fe_(10)Cu_(20)复合材料的密度和电导率降低幅度很小,而硬度、抗压强度以及耐磨性却有显著提升。 展开更多
关键词 al-Fe-cu合金 陶瓷增强 复合材料
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Multi-scale Simulation on Bonding Mechanism of Solid-Liquid Cast-Rolling of Cu/Al Cladding Strip based on FEM and MD 被引量:4
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作者 YAN Meng HUANG Huagui 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2019年第4期830-839,共10页
To explore the complex thermal-mechanical-chemical behavior in the solid-liquid cast-roll bonding(SLCRB) of Cu/Al cladding strip, numerical simulations were conducted from both macro and micro scales. In macro-scale, ... To explore the complex thermal-mechanical-chemical behavior in the solid-liquid cast-roll bonding(SLCRB) of Cu/Al cladding strip, numerical simulations were conducted from both macro and micro scales. In macro-scale, with birth and death element method, a thermo-mechanical coupled finite element model(FEM) was set up to explore the temperature and contact pressure distribution at the Cu/Al bonding interface in the SLCRB process. Taking these macro-scale simulation results as boundary conditions, we simulated the atom diffusion law of the bonding interface by molecular dynamics(MD) in micro-scale. The results indicate that the temperature in Cu/Al bonding interface deceases from 700 to 320 ℃ from the entrance to the exit of caster, and the peak of contact pressure reaches up to 140 MPa. The interfacial diffusion thickness depends on temperature and rolling reduction, higher temperature results in larger thickness, and the rolling reduction below kiss point leads to significant elongation deformation of cladding strip which yields more newborn interface with fresh metal and make the diffusion layer thinner. The surface roughness of Cu strip was found to be benefit to atoms diffusion in the Cu/Al bonding interface. Meanwhile, combined with the SEM-EDS observation on the microstructure and composition in the bonding interface of the experimental samples acquired from the castrolling bite, it is revealed that the rolling reduction and severe elongation deformation in the solid-solid contact zone below kiss point guarantee the satisfactory metallurgical bonding with thin and smooth diffusion layer. The bonding mechanisms of reactive diffusion, mechanical interlocking and crack bonding are proved to coexist in the SLCRB process. 展开更多
关键词 cu/al cladding strip SOLID-LIQUID cast-roll BONDING (SLCRB) BONDING MECHANISM finite element method (FEM) molecular dynamics (MD)
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Influence of heat treatment on microstructure and mechanical properties of Al/Al-Cu graded materials 被引量:1
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作者 Qian CONG Fumin XU Yi TAN Xiaolei SHI Wei DONG Jiayan LI Junshan ZHANG 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2011年第2期118-124,共7页
Five-layered Al/Al-Cu functionally graded material (FGM) was prepared by powder metallurgy technology, and the subsequent heat treatment was carried out for the graded material. The microstructures and distribution ... Five-layered Al/Al-Cu functionally graded material (FGM) was prepared by powder metallurgy technology, and the subsequent heat treatment was carried out for the graded material. The microstructures and distribution of Cu element under pressure sintering (F), solution treatment (T4) and artificial aging treatment (T6) were investigated, and the Vickers hardness and flexural properties of different states were tested. The results showed that sintered compact with dense structure and compositional continuous change was obtained. The second-phase CuAl 2 was dispersively distributed along grain boundary of Al matrix. After solution treatment at 503 C for 3 h, CuAl 2 phase obviously decreased and dissolved into the Al matrix, and the flexural strength was thereupon enhanced to 228.5 MPa. With the subsequent aging treatment at 150 C for 15 h, the majority of flake shaped precipitates θ phases were uniformly distributed in the matrix. And the distribution of Cu element became gradual continuous compared to sintered compact. Meanwhile, the flexural strength increased further, which accompanied with the decline of plasticity. 展开更多
关键词 al/al-cu graded material Solution treatment Artificial aging Mechanical properties
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A Novel Friction Stir Spot Riveting of Al/Cu Dissimilar Materials
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作者 Jinglin Liu Qi Song +4 位作者 Lihui Song Shude Ji Mingshen Li Zhen Jia Kang Yang 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2021年第1期135-144,共10页
In order to eliminate the disadvantages of the keyhole in conventional friction stir spot welding joint and attain the highstrength lap joint of Al/Cu dissimilar metals,a novel welding technique,named as friction stir... In order to eliminate the disadvantages of the keyhole in conventional friction stir spot welding joint and attain the highstrength lap joint of Al/Cu dissimilar metals,a novel welding technique,named as friction stir spot riveting(FSSR),was proposed.A pinless tool and an extra filling stud were employed.The Al/Cu spot joints without keyhole defect were achieved by the FSSR.A Cu anchor-like structure was formed,which greatly increased the mechanical interlocking between the upper Al sheet and lower Cu sheet.The thin intermetallic compounds containing CuAl2 and CuAl at the Al/Cu interface strengthened the joining interface between the Al sheet and the Cu stud.Increasing rotating velocity increased frictional heat and plastic deformation and then eliminated the interfacial joining defects.The FSSR joint with the maximum tensile shear load of 3.50 kN was achieved at a rotating velocity of 1800 rpm and a dwell time of 20 s,whose fracture path passed through the softened region of upper Al sheet.In summary,the novel FSSR technique has the advantages of strong mechanical interlocking and metallurgical bonding between dissimilar materials,thereby attaining the high-strength spot joint. 展开更多
关键词 al/cu dissimilar materials Friction stir spot riveting Intermetallic compounds Microstructures Tensile shear strength
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退火工艺对Cu/Al复层材料界面影响的研究 被引量:1
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作者 黄国平 汤春江 王群骄 《热加工工艺》 北大核心 2024年第18期65-68,共4页
采用纯铜/纯铝和纯铜/铝合金进行400℃温轧和退火热处理,并对得到的Cu/Al复层材料进行界面结合强度测试、界面金相显微组织分析和界面扫描电镜分析。结果表明:Cu/Al复层材料界面处Cu/Al中间相的形成需要一定的孕育期,其形成过程为:形核... 采用纯铜/纯铝和纯铜/铝合金进行400℃温轧和退火热处理,并对得到的Cu/Al复层材料进行界面结合强度测试、界面金相显微组织分析和界面扫描电镜分析。结果表明:Cu/Al复层材料界面处Cu/Al中间相的形成需要一定的孕育期,其形成过程为:形核→核长大→沿界面横向连片生长→沿界面法线方向纵向生长;纯铜/纯铝复层材料最佳退火工艺为300℃×1 h,最大界面结合强度可达2.4 N/mm;而纯铜/铝合金为300℃×3 h,界面结合强度最大值为3.1 N/mm,保证了材料的成型性能,同时防止金属间化合物的生成;经较高温度的长时退火(500℃×5 h),纯铜/铝合金比纯铜/纯铝复层材料界面更容易形成脆性金属间化合物相,导致界面结合强度的降低,造成界面在剥离条件下的脆性断裂。 展开更多
关键词 cu/al复层材料 温轧 退火 界面 中间相
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Evolution of bonding interface in solid-liquid cast-rolling bonding of Cu/Al clad strip 被引量:13
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作者 Hua-gui HUANG Yi-kang DONG +1 位作者 Meng YAN Feng-shan DU 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2017年第5期1019-1025,共7页
Cu/Al clad strips are prepared using solid?liquid cast-rolling bonding(SLCRB)technique with a d160mm×150mm twin-roll experimental caster.The extent of interfacial reactions,composition of the reaction products,an... Cu/Al clad strips are prepared using solid?liquid cast-rolling bonding(SLCRB)technique with a d160mm×150mm twin-roll experimental caster.The extent of interfacial reactions,composition of the reaction products,and their micro-morphology evolution in the SLCRB process are investigated with scanning electron microscope(SEM),energy dispersive spectrometer(EDS),and X-ray diffraction(XRD).In the casting pool,initial aluminized coating is first generated on the copper strip surface,with the diffusion layer mainly consisting ofα(Al)+CuAl2and growing at high temperatures,with the maximum thickness of10μm.After sequent rolling below the kiss point,the diffusion layer is broken by severe elongation,which leads to an additional crack bond process with a fresh interface of virgin base metal.The average thickness is reduced from10to5μm.The reaction products,CuAl2,CuAl,and Cu9Al4,are dispersed along the rolling direction.Peeling and bending test results indicate that the fracture occurs in the aluminum substrate,and the morphology is a dimple pattern.No crack or separation is found at the bonding interface after90°-180°bending.The presented method provides an economical way to fabricate Cu/Al clad strip directly. 展开更多
关键词 cu/al clad strip solid.liquid cast-rolling bonding bonding interface reaction diffusion peeling test
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Effect of Mechanical Surface Treatment on the Bonding Mechanism and Properties of Cold‑Rolled Cu/Al Clad Plate 被引量:2
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作者 Jianchao Han Hui Niu +5 位作者 Sha Li Zhongkai Ren Yi Jia Tao Wang A.I.Plokhikh Qingxue Huang 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2020年第5期212-224,共13页
In the case of valuable cold-rolled Cu/Al clad plates,billet surface treatment before rolling is a significant process that can affect the bonding efficiency and quality.While the current studies primarily focus on th... In the case of valuable cold-rolled Cu/Al clad plates,billet surface treatment before rolling is a significant process that can affect the bonding efficiency and quality.While the current studies primarily focus on the influence of rolling parameters,insufficient attention has been paid to surface treatment.In this study,the effects of mechanical surface treatment on the bonding mechanism and bonding properties of cold-rolled Cu/Al clad plates were investigated.The results showed that different mechanical surface treatments have significant effects on the surface morphology,roughness,and residual stress.In addition,the effect of surface mechanical treatment on bonding quality was also observed to be critical.When the grinding direction was consistent with the rolling direction(RD),the bonding quality of the Cu/Al clad plates was significantly improved.After surface treatment along the RD for 20 s,the Cu/Al clad plates showed the highest shear strength(78 MPa),approximately four times as high as that of the unpolished samples.Simultaneously,the peel strength of this process was also significantly higher than that achieved via the other processes.Finally,on the basis of the surface morphology,roughness,and residual stress,the effect of surface treatment on the bonding mechanism and bonding properties of Cu/Al clad plates was analyzed.This study proposes a deeper understanding of the bonding behavior and bonding mechanism for cold rolled clad plates processed via mechanical surface treatment. 展开更多
关键词 cu/al clad plates Cold rolling bonding Surface treatment Bonding mechanism Bonding property
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Interfacial pressure distribution and bonding characteristics in twin-roll casting of Cu/Al clad strip 被引量:2
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作者 Jun-peng ZHANG Hua-gui HUANG +2 位作者 Jing-na SUN Ri-dong ZHAO Miao FENG 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2022年第9期2965-2978,共14页
The mechanical properties and product thickness specifications of bimetallic clad strip prepared by twin-roll casting are tightly related to the mechanical behavior of bonding interface interaction.The thermal−flow co... The mechanical properties and product thickness specifications of bimetallic clad strip prepared by twin-roll casting are tightly related to the mechanical behavior of bonding interface interaction.The thermal−flow coupled simulation and the interface pressure calculation models are established with the cast-rolling velocity as the variable.The results show that the interface temperature decreases,the interface pressure and the proportion of the thickness of the Al side increase with the decrease in cast-rolling velocity.The thinning of Cu strip mainly occurs in the backward slip zone.The higher pressure and longer solid/semi-solid contact time make the interface bonded fully,which provides favorable conditions for atomic diffusion.The inter-diffusion zone with a width of 4.9μm is attained at a cast-rolling velocity of 2.4 m/min,and the Cu side surface is nearly completely covered by aluminum.Therefore,the ductile fracture occurs on the Al side,which prevents the propagation of interface delamination cracks effectively.Meanwhile,shear effect becomes more significant at high interfacial pressure and large plastic strain,and the microstructure on Al side is composed of slender columnar crystals.Thus,the metallurgical bonding and refinement of grains on the Al side can result in higher bonding strength and tensile properties of the clad strip. 展开更多
关键词 cu/al clad strip cast-rolling velocity bonding interface twin-roll casting
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Heat transfer analysis and experimental study of unequal diameter twin-roll casting process for fabricating Cu/Al clad strips 被引量:2
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作者 HUANG Hua-gui ZHANG Jun-peng JI Ce 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第4期1133-1146,共14页
Unequal diameter twin-roll casting(UDTRC)can improve the formability,surface conditions,and production efficiency during the fabrication of clad strips.Using Fluent software,a numerical simulation is used to study the... Unequal diameter twin-roll casting(UDTRC)can improve the formability,surface conditions,and production efficiency during the fabrication of clad strips.Using Fluent software,a numerical simulation is used to study the asymmetric heat transfer characteristics of Cu/Al clad strips fabricated by UDTRC.The effects of roller velocity ratio,Cu strip thickness,and inclination angle on the kissing point position,as well as the entire temperature distribution are obtained.The heat transfer model is established,and the mechanism is discussed.The Cu strip and rollers are found to be the main causes of asymmetric heat transfer,indicating that the roller velocity ratio changes the liquid zone proportion in the molten pool.The Cu strip thickness determines the heat absorption capacity and the variations in thermal resistance between the molten Al and the big roller.The inclination angle of the small roller changes the cooling time of big roller to molten Al.Moreover,the microstructure of Al cladding under different roller velocity ratios is examined.The results show significant grain refinement caused by the shear strain along the thickness direction of Al cladding and the intense heat transfer at the moment of contact between the metal Al cladding and Cu strip. 展开更多
关键词 unequal diameter twin-roll casting cu/al clad strips asymmetric heat transfer thermal-fluid coupled microstructure
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Corrosion behavior of Cu/Al casting-rolled clad plates in different alkaline solution
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作者 Yi-fan Zhang Xiao-guang Yuan +2 位作者 Xiao-jiao Zuo Hong-jun Huang Yu-lin Cheng 《China Foundry》 SCIE CAS 2021年第5期513-520,共8页
The effect of pH value and different kinds of anions on the corrosion behavior of Cu/Al casting-rolled clad plates in the alkaline solution was evaluated by means of scanning electron microscopy(SEM),energy dispersive... The effect of pH value and different kinds of anions on the corrosion behavior of Cu/Al casting-rolled clad plates in the alkaline solution was evaluated by means of scanning electron microscopy(SEM),energy dispersive spectroscopy(EDS),X-ray diffraction(XRD),weight loss analysis,3D confocal laser scanning microscopy(CLSM)and electrochemical test.Results show the corrosion mainly occurs on the aluminum side.The corrosion resistance of the Cu/Al decreases as the pH value increases.When pH≥12,the dissolution of the film layer is faster than the passivation process.The addition of Cl^(-)ions reduces the corrosion resistance of the Cu/Al clad plates,which leads to pitting corrosion.The higher the concentration of Cl^(-)ions,the more prone the pitting to occur.The addition of SO_(4)^(2-)ions causes the denudation of the samples.The corrosion resistance of the Cu/Al is better in the alkaline solution containing NO_(3)^(-)ions than that in the solution containing Cl^(-)ions or SO_(4)^(2-)ions.When adding SO_(4)^(2-),NO^(3)^(-)and Cl^(-)to the pure alkaline solution,the corrosion resistance of the Cu/Al clad plates decreases. 展开更多
关键词 cu/al clad plates alkaline solution pH ANIONS ELECTROCHEMISTRY casting-rolled
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Mg、Zn元素对Cu/Al复层材料界面中间相的影响研究
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作者 黄国平 钟成 +1 位作者 王晓卫 孟辉 《新技术新工艺》 2024年第4期12-19,共8页
为了研究Mg、Zn元素对Cu/Al复层材料界面中间相的影响,对Cu/Al复层材料进行退火热处理,通过XRD、扫描电镜和EDX能谱检测的方法对界面中间相进行分析,得到Mg、Zn元素对Cu/Al复层材料界面中间相分布规律和界面层断裂位置的影响结果。最后... 为了研究Mg、Zn元素对Cu/Al复层材料界面中间相的影响,对Cu/Al复层材料进行退火热处理,通过XRD、扫描电镜和EDX能谱检测的方法对界面中间相进行分析,得到Mg、Zn元素对Cu/Al复层材料界面中间相分布规律和界面层断裂位置的影响结果。最后得出结论:完成300℃×5 h的退火热处理后,当界面为纯铜/纯铝时,Cu/Al界面处仅生成CuAl_(2)相,界面层断裂发生在铜基体和CuAl_(2)相之间;当界面为纯铜/铝合金时,在Mg、Zn元素的作用下,Cu/Al合金界面处并没有CuAl_(2)相生成。完成400℃×5 h的退火热处理后,Cu/Al界面中间相分布均为Cu_(9)Al_(4)和CuAl_(2),但其厚度的分布有所差异,此时Mg元素和Zn元素的作用均不明显。完成500℃×5 h的退火热处理后,当界面为纯铜/纯铝时,Cu/Al界面中间相分布为Cu_(9)Al_(4)、CuAl和CuAl_(2),界面层断裂发生在CuAl相或CuAl_(2)相和Cu_(9)Al_(4)相之间;当界面为纯铜/铝合金时,主要在Mg元素的作用下,此时Zn元素的作用并不明显,Cu/Al界面中间相分布变为Cu_(9)Al_(4)、CuAl、Al_(5)Cu_(6)Mg_(2)和CuAl_(2),界面层断裂发生在CuAl_(2)相或CuAl相和CuAl_(2)相之间。 展开更多
关键词 cu/al复层材料 Mg、Zn元素 退火 界面 中间相
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Cu-12%Al铝青铜线材的连续定向凝固制备 被引量:20
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作者 季灯平 刘雪峰 +3 位作者 谢建新 余均武 李卫河 荣鸣雷 《金属学报》 SCIE EI CAS CSCD 北大核心 2006年第12期1243-1247,共5页
采用真空熔炼、氩气保护下拉式连续定向凝固方法制备了Cu-12%Al(质量分数)合金线材,研究了工艺参数对凝固成形过程的影响,分析了连续定向凝固线材的组织性能.结果表明:当熔体温度1250℃、下拉速度9 mm/min、冷却水量900 L/h时,可以... 采用真空熔炼、氩气保护下拉式连续定向凝固方法制备了Cu-12%Al(质量分数)合金线材,研究了工艺参数对凝固成形过程的影响,分析了连续定向凝固线材的组织性能.结果表明:当熔体温度1250℃、下拉速度9 mm/min、冷却水量900 L/h时,可以连续稳定成形直径6 mm、表面较光滑、具有单晶组织的Cu-12%Al合金线材,其延伸率达到19.7%,弹性模量达到167.9 GPa,电导率达到22.23%(IACS),具有优良的综合性能. 展开更多
关键词 cual合金 连续定向凝固 单晶 弹性材料
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镁合金表面宽带激光熔覆Cu-Zr-Al合金涂层 被引量:13
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作者 刘红宾 王存山 +1 位作者 高亚丽 迟丽娜 《应用激光》 CSCD 北大核心 2005年第5期299-302,共4页
采用宽带激光熔覆技术在镁合金表面制备了Cu-Zr-Al合金涂层。研究结果表明,Cu-Zr-Al合金涂层是由ZrCu、Cu8Zr3、Cu1 0Zr7和Cu5 1Zr1 4金属间化合物和α-Mg所构成,其中ZrCu相呈连续网状分布于由Cu8Zr3、Cu1 0Zr7、Cu5 1Zr1 4相所构成的... 采用宽带激光熔覆技术在镁合金表面制备了Cu-Zr-Al合金涂层。研究结果表明,Cu-Zr-Al合金涂层是由ZrCu、Cu8Zr3、Cu1 0Zr7和Cu5 1Zr1 4金属间化合物和α-Mg所构成,其中ZrCu相呈连续网状分布于由Cu8Zr3、Cu1 0Zr7、Cu5 1Zr1 4相所构成的灰色区周围。熔覆区和热影响区之间呈现出犬牙交错型界面结合特征。受熔覆材料元素扩散迁移的影响,热影响区具有典型的共晶组织形态。由于合金涂层中多种金属间化合物的增强作用,使合金涂层具有高的硬度、弹性模量、耐磨性和耐蚀性。 展开更多
关键词 镁合金 宽带激光熔覆 cu-Zr-al合金涂层 表面处理 电化学
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激光熔覆制备Al_(65)Cu_(20)Cr_(15)准晶态合金及其类似相的研究 被引量:4
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作者 袁伟东 邵天敏 +1 位作者 瑟岛 李浩群 《材料科学与工艺》 EI CAS CSCD 2002年第4期341-345,共5页
研究了在45#钢基体表面激光熔覆准晶态Al65Cu20Cr15粉末制备准晶及其类似相涂层过程中,激光功率和扫描速度对激光熔覆涂层相结构的影响.实验结果表明:由于激光功率和扫描速度的变化,基体材料对熔覆涂层的稀释程度发生改变;随着激光熔覆... 研究了在45#钢基体表面激光熔覆准晶态Al65Cu20Cr15粉末制备准晶及其类似相涂层过程中,激光功率和扫描速度对激光熔覆涂层相结构的影响.实验结果表明:由于激光功率和扫描速度的变化,基体材料对熔覆涂层的稀释程度发生改变;随着激光熔覆稀释率的增加,熔覆层的相结构依次为β+i,β+d,β,β+Fe;激光熔覆粉末所制备的涂层结构致密,无孔隙和裂纹;涂层的表面显微硬度及摩擦系数等力学性能也因涂层相结构的不同而有所差异. 展开更多
关键词 激光熔覆 al-cu-Cr 准晶态合金 准晶类似相 45钢 表面处理 铝铜铬合金 合金涂层
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高能球磨制备Al-Pb-Si-Sn-Cu纳米晶粉末的特性 被引量:7
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作者 冉广 周敬恩 +2 位作者 李鹏亮 席生岐 张中武 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2004年第12期1312-1316,共5页
通过机械合金化制备了 Al-15%Pb-4%Si-1%Sn-1.5%Cu(质量分数)纳米晶粉末。采用 X 射线衍射(XRD),扫描电镜(SEM)和透射电镜(TEM)对不同球磨时间的混合粉末的组织结构、晶粒大小、微观形貌以及颗粒中化学成分分布情况进行了研究。结果表... 通过机械合金化制备了 Al-15%Pb-4%Si-1%Sn-1.5%Cu(质量分数)纳米晶粉末。采用 X 射线衍射(XRD),扫描电镜(SEM)和透射电镜(TEM)对不同球磨时间的混合粉末的组织结构、晶粒大小、微观形貌以及颗粒中化学成分分布情况进行了研究。结果表明混合粉末经过球磨后形成了纳米晶,其组织非常均匀。球磨对 Pb 的作用效果明显大于对 Al 的作用效果,经过 40 h 球磨后 Pb 粒子达到 40 nm,而 Al 在球磨 60 h 后晶粒为 65 nm;经球磨后,Cu 和 Si 固溶于 Al 的晶格中,而 Sn 则固溶于 Pb 晶格中,并且 Al 和 Pb 发生了互溶,形成了 Pb(Al)超饱和固溶体;在球磨过程中硬度高的脆性粒子 Si 难于完全实现合金化。 展开更多
关键词 机械合金化 al—Pb—Si—Sn—cu合金 轴瓦合金 纳米晶材料
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