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Improving mechanical properties of Cu/CNTs composites by incorporating nanotwins
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作者 Wei-lin YU Si-wei LUO +10 位作者 Juan ZHU Min SONG Tian-yu SUN Jian-hong YI Liang LIU Yang-zhen LIU Zhi-guo ZHANG Yong YANG Zhen-tao YU Wei LI Bai-song GUO 《Transactions of Nonferrous Metals Society of China》 2026年第2期571-585,共15页
To exploit the combined strengthening effects of nanotwins and carbon nanotubes(CNTs)in Cu matrix composites,the nanotwins with a width ranging from 3 to 30 nm were incorporated into the CNTs-reinforced Cu matrix comp... To exploit the combined strengthening effects of nanotwins and carbon nanotubes(CNTs)in Cu matrix composites,the nanotwins with a width ranging from 3 to 30 nm were incorporated into the CNTs-reinforced Cu matrix composites using cryogenic rolling and optimizing the initial particle size of the raw Cu powders.The formation of nanotwins in the Cu matrix composite reinforced by only 0.2 wt.%CNTs is accompanied by the increased dislocation density and refined Cu grain size,resulting in much better strength−ductility synergy than the referenced composite without significant nanotwins formation.The analysis of strengthening and toughening mechanisms demonstrates that the strength increment mainly derives from grain refinement strengthening,dislocation strengthening,and nanotwin strengthening.The strength increment from the contribution of the nanotwins accounts for 19.9%of the overall strength increment for the composite.Meanwhile,the retention of good tensile ductility can be reasonably explained by the increased dislocation accommodation ability due to the formed nanotwins and the decreased induced dislocation proliferation. 展开更多
关键词 cu matrix composite carbon nanotube nanotwin STRENGTH DUCTILITY
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On-site hydrolytic H_(2)production by CaH_(2)/(Al/Si)composites via Na+bridging effect for fuel cell
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作者 Ali Hammad Siyi Zou +7 位作者 Fandi Ning Ghulam Nabi Yuzhuo Jiang Bin Tian Wentao Huang Muhammad Rashid Shiqi Zhao Xiaochun Zhou 《Journal of Energy Chemistry》 2026年第1期97-110,I0004,共15页
Inorganic materials can solve transportable and on-site hydrolytic hydrogen generation issues.CaH_(2)/(Al/Si)composites are preferable due to their notable chemical properties.However,these composites require pretreat... Inorganic materials can solve transportable and on-site hydrolytic hydrogen generation issues.CaH_(2)/(Al/Si)composites are preferable due to their notable chemical properties.However,these composites require pretreatments,an inert environment,and long hours of physical ball milling for high homogeneity and synergistic effects.CaH_(2)also inhibits the hydrolysis reaction by forming its products on the Al/Si surface,which hinders the direct utilization of composites.This work represents the first investigation of NaH-CaH_(2)(Al/Si)fuel composites,which greatly overcome these limitations and can be directly used for on-site hydrogen generation and proton exchange membrane(PEM)fuel cells.The NaH-CaH_(2)(Al/Si)fuel composites were prepared by using a straightforward mixing method with variable composition ratios,showing high H_(2)yield and fuel cell(FC)performance.NaH addition provides the bridge effect,which opens up a new way to enable efficient hydrolysis and greatly enhances the hydrolysis activity of CaH_(2)/(Al/Si)composites.The novel fuel composites(NaH-CaH_(2)/Al)have extraordinary FC performance and a 0.42 W/cm2 peak power density greater than commercial hydrogen generators.It provides high H_(2)yield 84.4%for NaH-CaH_(2)/Al and 82%for NaH-CaH_(2)/Si compared to NaOH-CaH_(2)(Al/Si),NaCl-CaH_(2)(Al/Si),and KCl-CaH_(2)(Al/Si)composites.The NaH bridge effect hinders the direct water contact and stops the formation of Ca(OH)2 around Al/Si,which provides adequate pathways for the CaH_(2)(Al/Si)hydrolysis.The impressive capabilities of novel fuel composites are anticipated to offer practical uses in fuel cells,automobile applications,and portable/on-board H_(2)generation. 展开更多
关键词 On-site hydrogen HYDROLYsiS Fuel composites NaH-CaH_(2)/(Al/si) Bridge effect Ambient temperature Inorganic materials High H_(2)yield PEM fuel cell
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Collaborative enhancement of thermal diffusivities and mechanical properties of C_(sf)-Cu/Mg composites via introducing Cu coating with different thicknesses 被引量:1
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作者 Yuan Ma Lingjun Guo +3 位作者 Jiancheng Wang Baolin Chen Lehua Qi Hejun Li 《Journal of Magnesium and Alloys》 2025年第1期229-242,共14页
Mg alloy matrix composites reinforced with short carbon fibers(C_(sf)/Mg)are considered as potential candidates for integrated structural-functional electronic parts that satisfy the requirements of lightweight,excell... Mg alloy matrix composites reinforced with short carbon fibers(C_(sf)/Mg)are considered as potential candidates for integrated structural-functional electronic parts that satisfy the requirements of lightweight,excellent mechanical properties,and heat dissipation.However,the different characteristics of C_(sf)and Mg alloy make the interface a critical issue affecting the synergistic improvement of thermal and mechanical properties of the composites.Here,Cu coating with different thicknesses is introduced to modify the C_(sf)/Mg interface,so as to simultaneously enhance the thermal and mechanical performances,which can combine the advantages of coating modification and matrix alloying.Results reveal that thermal diffusivity(TD)of 3-C_(sf)-Cu/Mg composites is as high as 22.12 mm^(2)/s and an enhancement of 52.97%is achieved compared with C_(sf)/Mg composites,as well as 16.3%enhancement of ultimate compressive strength(UCS)in the longitudinal direction,8.84%improvement of UCS in the transverse direction,and 53.08%increasement of ultimate tensile strength(UTS).Such improvement can be ascribed to the formation of intermetallic compounds.The formation of intermetallic compounds can not only effectively alleviate the lattice distortion of the matrix and decrease interfacial thermal resistance,but also bear the loads.Our work is of great significance for designing C_(sf)/Mg composites with integrated structure and function. 展开更多
关键词 Magnesium matrix composites cu coating thickness Intermetallic compounds Thermal performances Mechanical properties
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Achieving strength–ductility balance in Cu matrix composite reinforced with double nanophase of CNT and intragranular in-situ TiC 被引量:1
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作者 Junqin Feng Jingmei Tao +3 位作者 Xiaofeng Chen Yichun Liu Caiju Li Jianhong Yi 《Journal of Materials Science & Technology》 2025年第22期247-260,共14页
Reinforcing metal matrix composites(MMCs)with nanophases of distinct characteristics is an effective strategy for utilizing their individual advantages and achieving superior properties of the composite.In this study,... Reinforcing metal matrix composites(MMCs)with nanophases of distinct characteristics is an effective strategy for utilizing their individual advantages and achieving superior properties of the composite.In this study,a combination of molecular level mixing(MLM),segment ball milling(SBM),and in-situ solid-phase reaction was employed to fabricate Cu matrix composites(TiC-CNT/Cu)reinforced with TiC decorated CNT(TiC@CNT)and in-situ nanoscale TiC particles.The HRTEM results revealed the epitaxial growth of interfacial TiC on the surface of CNT(i.e.,CNT(0002)//TiC(200),and the formation of a semi-coherent interface between TiC and Cu matrix,which can effectively enhance the interfacial bonding strength and optimize load transfer efficiency of CNT.The independent in-situ TiC nanoparticles got into the grain interior through grain boundary migration,thereby significantly enhancing both strain hardening capacity and strength of the composite by fully utilizing the Orowan strengthening mechanism.Moreover,the enhanced bonding strength of the interface can also effectively suppress crack initiation and propagation,thereby improving the fracture toughness of the composite.The TiC-CNT/Cu composite with 1.2 vol.%CNT exhibited a tensile strength of 372 MPa,achieving a super high strengthening efficiency of 270,while simultaneously maintaining a remarkable ductility of 21.2%.Furthermore,the impact toughness of the TiC-CNT/Cu composite exhibited a significant enhancement of 70.7%compared to that of the CNT/Cu composite,reaching an impressive value of 251 kJ/m^(2),thereby demonstrating exceptional fracture toughness.Fully exploiting the synergistic strengthening effect of different nanophases can be an effective way to improve the comprehensive properties of MMCs. 展开更多
关键词 CNT/cu composite Double nanophases Intragranular in-situ TiC Strength-ductility balance Interface optimization
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Interfacial and Mechanical Properties of Cu/Al Composite Plates Manufactured by Rolling and Underwater Explosive Welding
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作者 Zhou Dapeng Liu Zhongshu +3 位作者 Huang Jiawen Chen Jinhua Chen Xiang Zhou Xiaohong 《稀有金属材料与工程》 北大核心 2025年第10期2461-2469,共9页
Cu/Al composite plates were fabricated using rolling and underwater explosive welding techniques,separately,to compare their interfacial microstructures and mechanical performance.Interface morphology,grain orientatio... Cu/Al composite plates were fabricated using rolling and underwater explosive welding techniques,separately,to compare their interfacial microstructures and mechanical performance.Interface morphology,grain orientation,grain boundary characteristics,and phase distribution were analyzed through optical microscope,scanning electron microscope,and electron backscattered diffractometer.Mechanical properties were assessed using tensile shear tests,90°bending tests,and hardness measurements.Vickers hardness and nanoindentation test results further provided information on the hardness distributions.Results indicate that the diffusion layer in rolled Cu/Al composites is relatively fragile,while that produced by underwater explosive welding features a diffusion layer of approximately 18μm in thickness,which is metallurgically bonded through atomic diffusion.The tensile shear strength of these composites ranges from 64.45 MPa to 70.84 MPa,and in the 90°three-point bending test,the underwater-explosive-welded samples exhibit superior flexural performance.This study elucidates the effects of different manufacturing methods on the interfacial properties and mechanical performance of Cu/Al composites,offering essential insights for the selection of manufacturing methods and applications. 展开更多
关键词 underwater explosive welding cu/Al composites ROLLING EBSD NANOINDENTATION
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Graphene Size Dependent Hardness and Strengthening Mechanisms of Cu/Graphene Composites:A Molecular Dynamics Study
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作者 Zhang Shuang Chang Guo +5 位作者 Li Liang Li Xiang Peng Haoran Chen Kaiyun Yang Nan Huo Wangtu 《稀有金属材料与工程》 北大核心 2025年第1期17-26,共10页
The extraordinary strength of metal/graphene composites is significantly determined by the characteristic size,distribution and morphology of graphene.However,the effect of the graphene size/distribution on the mechan... The extraordinary strength of metal/graphene composites is significantly determined by the characteristic size,distribution and morphology of graphene.However,the effect of the graphene size/distribution on the mechanical properties and related strengthening mechanisms has not been fully elucidated.Herein,under the same volume fraction and distribution conditions of graphene,molecular dynamics simulations were used to investigate the effect of graphene sheet size on the hardness and deformation behavior of Cu/graphene composites under complex stress field.Two models of pure single crystalline Cu and graphene fully covered Cu matrix composite were constructed for comparison.The results show that the strengthening effect changes with varying the graphene sheet size.Besides the graphene dislocation blocking effect and the load-bearing effect,the deformation mechanisms change from stacking fault tetrahedron,dislocation bypassing and dislocation cutting to dislocation nucleation in turn with decreasing the graphene sheet size.The hardness of Cu/graphene composite,with the graphene sheet not completely covering the metal matrix,can even be higher than that of the fully covered composite.The extra strengthening mechanisms of dislocation bypassing mechanism and the stacking fault tetrahedra pinning dislocation mechanism contribute to the increase in hardness. 展开更多
关键词 cu/graphene composites graphene size HARDNESS strengthening mechanism molecular dynamics
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Effects of Zr_(2)Cu Packing Modification on Microstructure and Mechanical and Ablation Properties of PIP-Prepared C/C-SiC-ZrC Composites
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作者 Xie Jing Zhang Qian +6 位作者 Ren Jing Su Hailong Tian Lulu Zhi Xionghui Sun Guodong Li Hui Wang Long 《稀有金属材料与工程》 北大核心 2025年第8期1940-1946,共7页
To improve the compactness and properties of C/C-SiC-ZrC composites produced by precursor infiltration and pyrolysis(PIP)method,the low-temperature reactive melt infiltration(RMI)process was used to seal the composite... To improve the compactness and properties of C/C-SiC-ZrC composites produced by precursor infiltration and pyrolysis(PIP)method,the low-temperature reactive melt infiltration(RMI)process was used to seal the composites using Zr_(2)Cu as the filler.The microstructure,mechanical properties,and ablation properties of the Zr_(2)Cu packed composites were analyzed.Results show that during Zr_(2)Cu impregnation,the melt efficiently fills the large pores of the composites and is converted to ZrCu due to a partial reaction of zirconium with carbon.This results in an increase in composite density from 1.91 g/cm^(3)to 2.24 g/cm^(3)and a reduction in open porosity by 27.35%.Additionally,the flexural strength of Zr_(2)Cu packed C/C-SiC-ZrC composites is improved from 122.78±8.09 MPa to 135.53±5.40 MPa.After plasma ablation for 20 s,the modified composites demonstrate superior ablative resistance compared to PIP C/C-SiC-ZrC,with mass ablation and linear ablation rates of 2.77×10^(−3)g/s and 2.60×10^(−3)mm/s,respectively.The“selftranspiration”effect of the low-melting point copper-containing phase absorbs the heat of the plasma flame,further reducing the ablation temperature and promoting the formation of refined ZrO_(2)particles within the SiO_(2)melting layer.This provides more stable erosion protection for Zr_(2)Cu packed C/C-SiC-ZrC composites. 展开更多
关键词 C/C-siC-ZrC composites Zr_(2)cu packing MICROSTRUCTURE mechanical property ablation property
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Introducing High-Volume-Fraction Ultrafine Grains to Obtain Superior Balance of Strength and Electrical Conductivity for Cu/Al_(2)O_(3)Composite
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作者 Zhang Jun Liu Xi +7 位作者 Li Yi Chang Guo Peng Haoran Zhang Shuang Huang Qi Zhao Xueni Li Liang Huo Wangtu 《稀有金属材料与工程》 北大核心 2025年第4期908-919,共12页
Compared with Cu/Al_(2)O_(3)composites,high-strength Cu/Al_(2)O_(3)composites usually exhibit obviously deteriorated electrical conductivity.A chemical and mechanical alloying-based strategy was adopted to fabricate u... Compared with Cu/Al_(2)O_(3)composites,high-strength Cu/Al_(2)O_(3)composites usually exhibit obviously deteriorated electrical conductivity.A chemical and mechanical alloying-based strategy was adopted to fabricate ultrafine composite powders with lowcontent reinforcement and constructed a combined structure of Cu ultrafine powders covered with in-situ Al_(2)O_(3)nanoparticles.After consolidation at a relatively lower sintering temperature of 550℃,high-volume-fraction ultrafine grains were introduced into the Cu/Al_(2)O_(3)composite,and many in-situ Al_(2)O_(3)nanoparticles with an average size of 11.7±7.5 nm were dispersed homogeneously in the Cu grain.Results show that the composite demonstrates an excellent balance of high tensile strength(654±1 MPa)and high electrical conductivity(84.5±0.1%IACS),which is ascribed to the synergistic strengthening effect of ultrafine grains,dislocations,and in-situ Al_(2)O_(3)nanoparticles.This approach,which utilizes ultrafine composite powder with low-content reinforcement as a precursor and employs low-temperature and high-pressure sintering subsequently,may hold promising potential for large-scale industrial production of high-performance oxide dispersion strengthened alloys. 展开更多
关键词 cu/Al_(2)O_(3)composite ultrafine grain in-situ Al_(2)O_(3)nanoparticle strengthening mechanism electrical conductivity
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Interfacial structure and mechanical properties of Al/Cu laminated composite fabricated by hot press sintering
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作者 Kai-qiang SHEN Liang CHEN +2 位作者 Li-hua QIAN Biao-hua QUE Cun-sheng ZHANG 《Transactions of Nonferrous Metals Society of China》 2025年第8期2484-2499,共16页
Al/Cu laminate composite was fabricated based on hot press sintering using Cu sheet and Al powders as raw materials.The effects of sintering parameters on interfacial structure and mechanical properties were investiga... Al/Cu laminate composite was fabricated based on hot press sintering using Cu sheet and Al powders as raw materials.The effects of sintering parameters on interfacial structure and mechanical properties were investigated.The results revealed that a uniform Al/Cu interface with excellent bonding quality was achieved.The thickness of intermetallic compounds(IMCs)reached 33.88μm after sintering at 620℃for 2 h,whereas it was only 14.88μm when sintered at 600℃for 1 h.AlCu phase was developed through the reaction between Al4Cu9 and Al2Cu with prolonging sintering time,and an amorphous oxide strip formed at AlCu/Al4Cu9 interface.Both the grain morphology and interfacial structure affected the tensile strength of Al/Cu laminate,whereas the mode of tensile fracture strongly relied on the interfacial bonding strength.The highest tensile strength of 151.1 MPa and bonding strength of 93.7 MPa were achieved after sintering at 600℃for 1 h. 展开更多
关键词 Al/cu laminated composite INTERFACE intermetallic compounds bonding strength mechanical properties
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Effect of rolling direction and reduction on microstructure evolution and mechanical properties of Cu/1010 steel bimetal laminated composites
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作者 Bo PENG Jia LIU +5 位作者 Hui-kun WANG Xing-run SHAN Guo-liang LI Zi-di HANG Jin-chuan JIE Ting-ju LI 《Transactions of Nonferrous Metals Society of China》 2025年第9期2969-2987,共19页
The Cu/1010 steel bimetal laminated composites(BLCs)were rolled to different thicknesses to investigate the effect of rolling direction and reduction on the microstructure evolution and mechanical properties.The diffe... The Cu/1010 steel bimetal laminated composites(BLCs)were rolled to different thicknesses to investigate the effect of rolling direction and reduction on the microstructure evolution and mechanical properties.The difference of mechanical properties between the Cu and 1010 steel causes different thickness reductions,percentage spread,and cladding ratios.The formation of strong texture induces larger strength of the rolled samples,and as the volume fraction of 1010 steel is larger in Route-A,its strength is consistently greater than that in Route-B.The obstruction of interface to crystal and dislocation slip results in the formation of interface distortion,inducing dislocation density gradient when the rolling reduction is low in Route-A.The slip planes of the Cu and 1010 steel are more prone to suffer the normal strain,while the shear strain of other crystal planes is obviously larger than the normal strain under rolling load near the interface. 展开更多
关键词 cu/steel bimetal laminated composite ROLLING microstructure evolution mechanical properties deformation behavior
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Microstructure formation mechanism of vacuum-brazed 6061/304 joint using Al-Si-Ge/Cu composite filler
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作者 Sen Huang Wei-min Long +3 位作者 Ji-guo Shan Guan-xing Zhang Chao Jiang Pei-yao Jing 《Journal of Iron and Steel Research International》 2025年第7期2089-2103,共15页
6061 aluminum alloy was successfully vacuum brazed to 304 stainless steel using Al-Si-Ge/Cu composite filler metal.The thermodynamic model was established to analyze the formation mechanism of microstructure in brazed... 6061 aluminum alloy was successfully vacuum brazed to 304 stainless steel using Al-Si-Ge/Cu composite filler metal.The thermodynamic model was established to analyze the formation mechanism of microstructure in brazed joint and element diffusion behavior between filler metal and substrate.The findings indicated that the microstructure of 6061 aluminum alloy/304 stainless steel joint was a multilayer structure composed of three zones(ZoneⅠ,ZoneⅡand ZoneⅢ).The free energy(△G)calculation results indicated that Al-Si-M(M was Fe,Cr,Ni and Cu)ternary intermetallic compounds(IMCs)formed,when on M-Al side and M-Si/Ge side was similar.And only Al-M binary IMCs would be generated when there was large difference between on M-Al side and that on M-Si/Ge side.The calculation results of chemical potential of Si△_(μSi)and Ge△_(μGe)indicated that there was continuous Si and Ge diffusion toward Zone I,forming(Ge,Si)layer.The segregation of Si and Ge hindered the diffusion of Cr toward Zone II and promoted its diffusion toward(Ge,Si)layer,leading to an upward trend of Cr distribution in Al7(Fe,Cr)2Si layer.Negative△_(μNi)and△_(μFe)were responsible for continuous diffusion of Fe and Ni toward Zone II.The small difference between△_(μcu)in Zone I and Zone II contributed to distribution of CuAl2 in Zone II.The formation mechanism of joint could be mainly divided into four steps. 展开更多
关键词 6061 aluminum alloy/304 stainless steel joint Al-si-Ge/cu composite filler metal Vacuum brazing MICROSTRUCTURE Thermodynamic
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Cr含量与热处理对Al-Si-Mg-Cu合金组织性能影响研究
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作者 顾琪 周鹏飞 +2 位作者 贲能军 张小玮 惠为东 《特种铸造及有色合金》 北大核心 2026年第3期449-457,共9页
通过添加不同含量Cr,结合两种固溶处理工艺(SST1和SST2)及时效处理(T6),研究了Cr含量和热处理时Al-Si-Mg-Cu合金组织和性能的影响。结果表明,Cr的加入有效调控了富Fe相的形貌,抑制了β-Al5FeSi相的生成,促进了Al(Cr,Fe)Si弥散相的形成... 通过添加不同含量Cr,结合两种固溶处理工艺(SST1和SST2)及时效处理(T6),研究了Cr含量和热处理时Al-Si-Mg-Cu合金组织和性能的影响。结果表明,Cr的加入有效调控了富Fe相的形貌,抑制了β-Al5FeSi相的生成,促进了Al(Cr,Fe)Si弥散相的形成。随着Cr含量的增加,合金硬度显著提高,尤其在SST2处理条件下,硬度提升最大。同时,Cr的加入在固溶处理后增强了合金的抗拉强度和屈服强度,但也降低了塑性,尤其当Cr含量超过0.15%时,伸长率显著下降。TEM分析显示,Cr元素通过促进弥散相的析出提高了合金的强化效果。然而,合金时效态和固溶态硬度差值下降,说明弥散相的强化作用在时效阶段有所减弱。综合分析表明,Cr对铸造Al-Si-Mg-Cu合金的性能有显著影响,但其强化效果在时效过程中未能完全保持,需进一步优化处理工艺。 展开更多
关键词 Al-si-Mg-cu铸造合金 CR 热处理 富Fe相 弥散相
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SiC_(p)/Cu基复合材料性能提升与界面调控优化的研究进展
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作者 张云龙 王俊青 +5 位作者 张唯一 王伟娥 任晓雪 李成海 翟梓棫 刘德宝 《聊城大学学报(自然科学版)》 2026年第1期75-83,共9页
随着高端制造、电子封装与热管理等领域对材料综合性能的持续提升要求,传统铜及其合金材料在强度、耐磨性与导电导热性能方面逐渐显现出瓶颈。碳化硅颗粒增强铜基复合材料(SiC_(p)/Cu)因其优异的力学、电学与热物理性能,受到广泛关注。... 随着高端制造、电子封装与热管理等领域对材料综合性能的持续提升要求,传统铜及其合金材料在强度、耐磨性与导电导热性能方面逐渐显现出瓶颈。碳化硅颗粒增强铜基复合材料(SiC_(p)/Cu)因其优异的力学、电学与热物理性能,受到广泛关注。围绕SiC颗粒粒径、含量及分布等组成设计参数的优化,系统综述了SiC_(p)/Cu基复合材料在耐磨、导电、导热和耐蚀等方面的性能提升机制,探讨了Cu基体微合金化与SiC颗粒表面修饰的界面调控策略以及多相协同增强的设计理念,将为高性能SiC_(p)/Cu基复合材料的设计开发提供参考依据。 展开更多
关键词 siC_(p)/cu基复合材料 界面调控 性能提升机制 材料设计优化
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Morphology and Frictional Characteristics Under Electrical Currents of Al_2O_3/Cu Composites Prepared by Internal Oxidation 被引量:8
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作者 刘瑞华 宋克兴 +3 位作者 贾淑果 徐晓峰 郜建新 国秀花 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2008年第3期281-288,共8页
Two Al2O3/Cu composites containing 0.24 wt.% Al2O3 and 0.60 wt.% Al2O3 separately are prepared by internal oxidation. Effects of sliding speed and pressure on the frictional characteristics of the composites and coppe... Two Al2O3/Cu composites containing 0.24 wt.% Al2O3 and 0.60 wt.% Al2O3 separately are prepared by internal oxidation. Effects of sliding speed and pressure on the frictional characteristics of the composites and copper against brass are investigated and compared. The changes in morphology of the sliding surface and subsurface are examined with scanning electron microscope (SEM) and energy dispersive X-ray spectrum (EDS). The results show that the wear resistance of the Al2O3/Cu composites is superior to that of copper under the same conditions, Under a given electrical current, the wear rate of Al2O3/Cu composites decreases as the Al2O3-content increases, However, the wear rates of the Al2O3/Cu composites and copper increase as the sliding speed and pressure increase under dry sliding condition. The main wear mechanisms for Al2O3/Cu composites are of abrasion and adhesion; for copper, it is adhesion, although wear by oxidation and electrical erosion can also be observed as the speed and pressure rise. 展开更多
关键词 Al2O3/cu composite internal oxidation friction and wear surface morphology current carder
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Effect of electrical current on tribological property of Cu matrix composite reinforced by carbon nanotubes 被引量:10
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作者 许玮 胡锐 +1 位作者 李金山 傅恒志 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2011年第10期2237-2241,共5页
Cu matrix composite reinforced with 10%(volume fraction) carbon nanotubes(CNTs/Cu) and pure Cu bulk were prepared by powder metallurgy techniques under the same consolidation processing condition.The effect of ele... Cu matrix composite reinforced with 10%(volume fraction) carbon nanotubes(CNTs/Cu) and pure Cu bulk were prepared by powder metallurgy techniques under the same consolidation processing condition.The effect of electrical current on tribological property of the materials was investigated by using a pin-on-disk friction and wear tester.The results show that the friction coefficient and wear rate of CNTs/Cu composite as well as those of pure Cu bulk increase with increasing the electrical current without exception,and the effect of electrical current is more obvious on tribological property of pure Cu bulk than on that of CNTs/Cu composite;the dominant wear mechanisms are arc erosion wear and plastic flow deformation,respectively;CNTs can improve tribological property of Cu matrix composites with electrical current. 展开更多
关键词 CNTs/cu composite pure cu bulk electrical current tribological property
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Properties and microstructure of Cu/diamond composites prepared by spark plasma sintering method 被引量:12
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作者 陶静梅 朱心昆 +2 位作者 田维维 杨鹏 杨浩 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2014年第10期3210-3214,共5页
Cu/diamond composites have been considered as the next generation of thermal management material for electronic packages and heat sinks applications. Cu/diamond composites with different volume fractions of diamond we... Cu/diamond composites have been considered as the next generation of thermal management material for electronic packages and heat sinks applications. Cu/diamond composites with different volume fractions of diamond were successfully prepared by spark plasma sintering(SPS) method. The sintering temperatures and volume fractions(50%, 60% and 70%) of diamond were changed to investigate their effects on the relative density, homogeneity of the microstructure and thermal conductivity of the composites. The results show that the relative density, homogeneity of the microstructure and thermal conductivity of the composites increase with decreasing the diamond volume fraction; the relative density and thermal conductivity of the composites increase with increasing the sintering temperature. The thermal conductivity of the composites is a result of the combined effect of the volume fraction of diamond, the homogeneity and relative density of the composites. 展开更多
关键词 cu/diamond composites spark plasma sintering relative density thermal conductivity
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Microstructural development and its effects on mechanical properties of Al/Cu laminated composite 被引量:19
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作者 李小兵 祖国胤 王平 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2015年第1期36-45,共10页
The microstructural development and its effect on the mechanical properties of Al/Cu laminated composite produced by asymmetrical roll bonding and annealing were studied. The composite characterizations were conducted... The microstructural development and its effect on the mechanical properties of Al/Cu laminated composite produced by asymmetrical roll bonding and annealing were studied. The composite characterizations were conducted by transmission electron microscope(TEM), scanning electron microscope(SEM), peeling tests and tensile tests. It is found that the ultra-fine grained laminated composites with tight bonding interface are prepared by the roll bonding technique. The annealing prompts the atomic diffusion in the interface between dissimilar matrixes, and even causes the formation of intermetallic compounds. The interfacial bonding strength increases to the maximum value owing to the interfacial solution strengthening at 300 °C annealing, but sharply decreases by the damage effect of intermetallic compounds at elevated temperatures. The composites obtain high tensile strength due to the Al crystallization grains and Cu twins at 300 °C. At 350 °C annealing, however, the composites get high elongation by the interfacial interlayer with submicron thickness. 展开更多
关键词 Al/cu laminated composite roll bonding INTERFACE ultra-fine grain
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Effect of particulate reinforcement on wear behavior of magnesium matrix composites 被引量:3
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作者 胡勇 饶丽 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2012年第11期2659-2664,共6页
The friction and wear behavior of magnesium matrix composites reinforced with particulate Mg2Si was characterized. The influence of Si, applied load and sliding rate on the wear behavior of Mg2Si/AM60 magnesium matrix... The friction and wear behavior of magnesium matrix composites reinforced with particulate Mg2Si was characterized. The influence of Si, applied load and sliding rate on the wear behavior of Mg2Si/AM60 magnesium matrix composites was studied. The results indicate that the particulate Mg2Si can be synthesized by adding Si into magnesium alloy. The wear properties of AM60 magnesium alloy are significantly improved with MgzSi particles. The wear mass losses of AM60 magnesium alloy and MgaSi/AM60 magnesium matrix composites decrease with increase in applied load and sliding rate. The wear feature of the AM60 magnesium alloy is adhesion wear. The wear mechanism of Mg2Si/AM60 magnesium matrix composites transforms from abrasive wear to adhesion wear with the increase of load. 展开更多
关键词 magnesium alloy Mg2si/AM60 composite FRICTION WEAR wear mechanism abrasive wear adhesion wear
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脉冲磁场及稀土La元素对Cu-Ni-Si合金铸态组织的影响
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作者 陈帅峰 刘天宇 +3 位作者 李应焕 王松伟 罗天骄 宋鸿武 《现代交通与冶金材料》 2026年第1期9-14,共6页
Cu-Ni-Si合金因兼具高强度与高导电性,是集成电路引线框架的关键候选材料,其显微组织直接决定材料性能。通过光学金相,扫描电子显微镜等手段研究了脉冲磁场对Cu-Ni-Si及Cu-Ni-Si-La合金铸态宏微观组织的影响。结果表明:Cu-Ni-Si合金在... Cu-Ni-Si合金因兼具高强度与高导电性,是集成电路引线框架的关键候选材料,其显微组织直接决定材料性能。通过光学金相,扫描电子显微镜等手段研究了脉冲磁场对Cu-Ni-Si及Cu-Ni-Si-La合金铸态宏微观组织的影响。结果表明:Cu-Ni-Si合金在常规凝固下晶粒多为柱状晶且晶粒粗大,而施加脉冲磁场后,出现柱状晶向等轴晶转变,柱状晶比例降低了28.7%,晶粒得到显著细化;当La与脉冲磁场协同作用时,柱状晶比例增大,达到67.7%,但中心处等轴晶尺寸较为均匀,且与常规凝固下相比得到细化,并出现了圆形镂空状的Ni、Si、La相。 展开更多
关键词 cu-NI-si合金 稀土La 脉冲磁场 铸态组织
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稀土元素La对铸造Al-Si-Cu-Mg合金组织及性能的影响
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作者 谷欣硕 相志磊 +4 位作者 杨子安 李继豪 韩杨 闫宇婷 陈子勇 《铸造》 2026年第4期366-375,共10页
采用均等梯度对照试验法研究了稀土元素La对铸造Al-9Si-1.5Cu-0.4Mg合金组织、力学性能、热裂敏感性和流动性的影响。结果表明,添加La元素能够显著细化合金晶粒,随着La含量的增加合金二次枝晶臂间距呈先减小后增大的趋势;La的加入提高... 采用均等梯度对照试验法研究了稀土元素La对铸造Al-9Si-1.5Cu-0.4Mg合金组织、力学性能、热裂敏感性和流动性的影响。结果表明,添加La元素能够显著细化合金晶粒,随着La含量的增加合金二次枝晶臂间距呈先减小后增大的趋势;La的加入提高了共晶Si变质率,添加0.10%La的合金中,共晶Si基本呈珊瑚状;合金组织均由初生α-Al、共晶Si、θ-Al_(2)Cu、Q-Al_(5)Cu_(2)Mg_(8)Si_(6)和П-Al_(8)Mg_(3)FeSi_(6)相组成。La含量达到0.10%后开始出现富La相,随着La的增加,富La相尺寸逐渐增大。当La含量为0.10%时,合金综合性能最优:室温抗拉强度、屈服强度及伸长率分别为364 MPa、219 MPa和6.5%;热裂敏感系数为6,较基体合金降低80%;流动长度为937 mm,较基体合金提高48.0%。 展开更多
关键词 AL-si-cu-MG合金 显微组织 富La相 热裂敏感性 流动性
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