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Ni镀层对Cu/Al钎焊接头界面组织与力学性能的影响
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作者 张学智 黄玲玲 +5 位作者 李云鹏 于卓立 曹新娜 宋路阳 安鹏涛 魏世忠 《河南科技大学学报(自然科学版)》 CAS 北大核心 2024年第4期23-29,M0003,M0004,共9页
为探究Ni-P镀层对Cu/Al异种金属钎焊界面反应的影响,采用化学镀方法对T2紫铜进行化学镀镍处理,使用BAl88Si药芯钎料通过感应钎焊方法钎焊Cu/Al接头。采用扫描电子显微镜和电子背散射衍射技术对接头进行微观组织观察与物相分析,并对接头... 为探究Ni-P镀层对Cu/Al异种金属钎焊界面反应的影响,采用化学镀方法对T2紫铜进行化学镀镍处理,使用BAl88Si药芯钎料通过感应钎焊方法钎焊Cu/Al接头。采用扫描电子显微镜和电子背散射衍射技术对接头进行微观组织观察与物相分析,并对接头进行力学性能测试,分析镀层对Cu/Al接头微观组织结构及力学性能的影响,探讨钎焊过程中不同钎焊接头的界面形成机理。结果表明:无镀层接头在界面处形成了Cu_(9)Al_(4)和CuAl_(2)两层金属间化合物,有镀层接头界面处形成了Al_(2)Ni和Al_(3)Ni金属间化合物。无镀层接头的抗拉强度可达56.4 MPa,优于有镀层接头。接头均发生脆性断裂,断裂位置从无镀层接头的CuAl2和α-Al固溶体的界面处转变为有镀层接头的Al3Ni金属间化合物处。 展开更多
关键词 cu/al异种金属 ni-P镀层 金属间化合物 微观组织 力学性能
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Ni元素对Zn-22Al药芯钎料用于Cu/Al钎焊接头组织和力学性能的影响
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作者 王徐炳 黄魏青 +4 位作者 王思鸿 卜永周 查心婧 刘薇 沈杭燕 《中国计量大学学报》 2024年第3期487-495,共9页
目的:研究Ni元素对Zn-Al药芯焊丝熔化特性、铺展性能的影响。方法:在钎剂中添加一定比例的Ni粉,在钎焊过程中形成Cu/Al接头的Ni合金化,分析不同含量Ni元素添加对Zn-22Al钎料以及Cu/Al异种合金钎焊接头的性能及显微组织的影响。结果:Ni... 目的:研究Ni元素对Zn-Al药芯焊丝熔化特性、铺展性能的影响。方法:在钎剂中添加一定比例的Ni粉,在钎焊过程中形成Cu/Al接头的Ni合金化,分析不同含量Ni元素添加对Zn-22Al钎料以及Cu/Al异种合金钎焊接头的性能及显微组织的影响。结果:Ni粉添加可使Zn-22Al钎料在Al板上的铺展性能得到提升,当添加量质量分数为5%时钎料铺展性能提升26.75%;当添加量质量分数为7%时,用于Cu/Al钎焊的接头抗拉强度相较于未添加Ni粉焊接接头强度提升61.79%。结论:Ni粉添加可有效改善Zn-22Al焊缝的显微组织,体现为主晶相的细化,富Zn边界相的减少,促进主晶团之间形成层片状共析组织,以及减小了Cu侧生成的铜铝金属间化合物脆性相的厚度。 展开更多
关键词 ZN-al钎料 ni原位掺混 铜铝异种接头 力学性能 显微组织
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Cu-Sn、Ni-Cr、Co烧结助剂对Ni_(3)Al基金刚石复合材料性能的影响
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作者 卢家锋 张凤林 陈晓昀 《热加工工艺》 北大核心 2024年第15期44-48,共5页
采用真空热压法制备了Ni_(3)Al基金刚石复合材料,研究了不同烧结助剂对复合材料力学性能和微观结构的影响,并对Ni_(3)Al基金刚石钻头的钻孔性能进行了测试。结果表明,在添加0~30vol%的Cu-Sn、Ni-Cr、Co烧结助剂后,Ni_(3)Al基金刚石刀头... 采用真空热压法制备了Ni_(3)Al基金刚石复合材料,研究了不同烧结助剂对复合材料力学性能和微观结构的影响,并对Ni_(3)Al基金刚石钻头的钻孔性能进行了测试。结果表明,在添加0~30vol%的Cu-Sn、Ni-Cr、Co烧结助剂后,Ni_(3)Al基金刚石刀头的致密度、抗弯强度、硬度得到提高。Ni3Al基金刚石复合材料的抗弯强度随着Ni-Cr、Co烧结助剂含量的增加而提高。Cu-Sn、Ni-Cr烧结助剂中的Cr元素在金刚石的表面出现了富集现象。将添加Cu-Sn、Ni-Cr烧结助剂的Ni_(3)Al基金刚石复合材料制备成工具进行钻削测试,发现Ni_(3)Al基金刚石复合材料的失效形式可以分为微破碎、磨耗、宏观破碎3种形式,钻削试验中并没有发现整颗金刚石脱落的现象,表明Ni_(3)Al基对金刚石的把持力较大,强度较高。 展开更多
关键词 ni_(3)al cu-Sn ni-CR 金刚石 复合材料 磨损
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Si的添加对Cu-Ni-Al合金显微组织和性能的影响
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作者 丁炜 程建奕 +1 位作者 刘领 余方新 《材料热处理学报》 CAS CSCD 北大核心 2024年第4期48-60,共13页
Cu-Ni-Al合金作为一种超高强、导电的弹性铜合金,在电子工业、航空航天、仪器仪表等方面应用广泛。利用光学显微镜(OM)、扫描电镜(SEM)、X射线衍射仪(XRD)和扫描透射电镜(STEM)对Cu-6Ni-2.76Al和Cu-6Ni-2.76Al-0.4Si合金时效后的显微组... Cu-Ni-Al合金作为一种超高强、导电的弹性铜合金,在电子工业、航空航天、仪器仪表等方面应用广泛。利用光学显微镜(OM)、扫描电镜(SEM)、X射线衍射仪(XRD)和扫描透射电镜(STEM)对Cu-6Ni-2.76Al和Cu-6Ni-2.76Al-0.4Si合金时效后的显微组织进行了研究。结果表明:Cu-6Ni-2.76Al合金在经过900℃×12 h均匀化退火+80%热轧变形+950℃×2 h固溶+50%冷轧变形+500℃×8 h时效处理后的综合性能较好,硬度为279.5 HV0.3,导电率为16.14%IACS,合金的强化相为纳米级球状颗粒γ′-Ni3Al相;Cu-6Ni-2.76Al-0.4Si合金在经过900℃×12 h均匀化退火+80%热轧变形+950℃×2 h固溶+50%冷轧变形+450℃×2 h时效处理后的综合性能优异,硬度为313.2 HV0.3,导电率为13.24%IACS,合金的强化相为纳米级颗粒γ′-Ni3Al相和δ-Ni2Si相。Si元素的添加对合金的导电率影响不大,但显著地提高了其峰值硬度,且缩短了达到硬度峰值所需要的时效时间,但也使得合金抗过时效能力下降。γ′-Ni3Al和δ-Ni2Si强化相与Cu基体的位向关系分别为:[001]_(Cu)∥[001]_(Ni_(3)Al)∥[001]_(δ);(110)_(Cu)∥(110)_(Ni_(3)Al)∥(100)_(δ);(110)_(Cu)∥(110)_(Ni_(3)Al)∥(010)_(δ)。沉淀强化作用对合金性能的提升最显著。 展开更多
关键词 cu-ni-al合金 时效处理 导电率 硬度 沉淀强化
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粉末锻造Al_(2)O_(3)颗粒增强Fe–Ni–Mo–C–Cu复合材料的组织与性能
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作者 张旭 史思阳 +5 位作者 张腾雨 田谨 吴亚科 王邃 赵振智 江峰 《粉末冶金技术》 CAS CSCD 北大核心 2024年第3期275-282,共8页
通过粉末锻造技术制备了不同含量微米级Al_(2)O_(3)颗粒强化的Fe–Ni–Mo–C–Cu(Q61)复合材料,并对调质态和淬火态复合材料的组织和性能进行了研究。结果表明:当Al_(2)O_(3)质量分数为0.15%时,增强颗粒在基体内分布均匀;相较于同种状... 通过粉末锻造技术制备了不同含量微米级Al_(2)O_(3)颗粒强化的Fe–Ni–Mo–C–Cu(Q61)复合材料,并对调质态和淬火态复合材料的组织和性能进行了研究。结果表明:当Al_(2)O_(3)质量分数为0.15%时,增强颗粒在基体内分布均匀;相较于同种状态下不添加增强颗粒的单一Q61,调质态复合材料的硬度从HRC 38增至HRC 39.8,屈服强度从1106 MPa增至1121 MPa,延伸率从12%降至6.5%;淬火态复合材料的硬度从HRC 61.5增至HRC 63.2,磨损率从5.27×10^(-6)mm^(3)·m^(-1)·N^(-1)降至3.08×10^(-6)mm^(3)·m^(-1)·N^(-1),低于对比试验用的典型齿轮材料40Cr的磨损率(3.34×10^(-6)mm^(3)·m^(-1)·N^(-1))。当Al_(2)O_(3)质量分数大于0.15%时,Al_(2)O_(3)颗粒逐渐偏聚,虽然调质态下复合材料屈服强度仍继续小幅增加,但塑性严重退化,且淬火态复合材料磨损率增加,耐磨性变差。综合来看,添加0.15%Al_(2)O_(3)颗粒强化Q61复合材料在调质态下具有较高的综合力学性能,而在淬火态下表现出良好的抗摩擦磨损能力。 展开更多
关键词 粉末锻造 Fe–ni–Mo–C–cu复合材料 微观组织 力学性能 摩擦 磨损
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Ce-La添加量对汽车用Al-Si-Cu-Mg-Ni合金组织与力学性能的影响
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作者 刘强 庞小兰 《热加工工艺》 北大核心 2024年第14期130-132,137,共4页
对Al-Si-Cu-Mg-Ni合金中添加了不同量的Ce-La复合稀土,通过显微组织观察、力学性能测试研究了不同Ce-La复合稀土添加量对铸态Al-Si-Cu-Mg-Ni合金组织与力学性能的影响。结果表明:未添加稀土的Al-Si-Cu-Mg-Ni合金中有大量块状的初生Si相... 对Al-Si-Cu-Mg-Ni合金中添加了不同量的Ce-La复合稀土,通过显微组织观察、力学性能测试研究了不同Ce-La复合稀土添加量对铸态Al-Si-Cu-Mg-Ni合金组织与力学性能的影响。结果表明:未添加稀土的Al-Si-Cu-Mg-Ni合金中有大量块状的初生Si相和针状共晶Si相存在。随着Ce-La复合稀土添加量的增加,合金中的初生Si相直径和共晶Si相尺寸先减小后增加。Ce-La稀土添加量为0.4wt%时,合金中的初生Si相直径和共晶Si相尺寸最小。随着Ce-La复合稀土添加量的增加,Al-Si-Cu-Mg-Ni合金的抗拉强度和伸长率先升高后降低,Ce-La复合稀土添加量为0.4wt%时,合金的抗拉强度和伸长率均达到最大值,分别为296.5 MPa和2.9%。 展开更多
关键词 al-Si-cu-Mg-ni合金 稀土Ce-La 显微组织 力学性能
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Microstructural development and its effects on mechanical properties of Al/Cu laminated composite 被引量:17
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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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晶粒尺寸对界面含Cr-O-C防黏层Cu/Ni复合体拉伸性能的影响
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作者 杨光 胡正晨 +1 位作者 惠越 陈菊 《中国有色金属学报》 EI CAS CSCD 北大核心 2024年第5期1599-1610,共12页
通过分子动力学方法研究含Cr-O-C防黏层的具有不同晶粒尺寸的Cu/Ni复合体的拉伸变形。结果表明:当Cu/Ni复合体的晶粒尺寸大于12 nm时,不论界面不含Cr、O和C原子或含有定量Cr、O和C原子,复合体的屈服强度随着晶粒尺寸的减小呈现增大趋势... 通过分子动力学方法研究含Cr-O-C防黏层的具有不同晶粒尺寸的Cu/Ni复合体的拉伸变形。结果表明:当Cu/Ni复合体的晶粒尺寸大于12 nm时,不论界面不含Cr、O和C原子或含有定量Cr、O和C原子,复合体的屈服强度随着晶粒尺寸的减小呈现增大趋势,符合细晶强化规律,晶粒塑性变形主要受晶体内部的位错滑移控制,最大应力增加9.52%;当晶粒尺寸小于12 nm时,由于晶界所占比例的增加,拉伸过程的塑性变形更多受晶界变形控制,屈服强度下降。Cr-O-C界面弱化了Cu/Ni复合体的强度,随着界面上Cr、O和C原子数量的增加,Cu/Ni复合体的抗拉强度随之降低,最大应力下降56.40%,Cu/Ni复合体内部的位错数量也随之降低,转移到Ni表面的Cu原子数量随之减少。 展开更多
关键词 分子动力学 晶粒尺寸 cu/ni复合体 Cr-O-C防黏层 拉伸性能
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Microstructure and mechanical properties of Al/Cu/Mg laminated composite sheets produced by the ARB proces 被引量:10
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作者 Davood Rahmatabadi Moslem Tayyebi +1 位作者 Ramin Hashemi Ghader Faraji 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2018年第5期564-572,共9页
In the present study, an Al/Cu/Mg multi-layered composite was produced by accumulative roll bonding(ARB) through seven passes, and its microstructure and mechanical properties were evaluated. The microstructure invest... In the present study, an Al/Cu/Mg multi-layered composite was produced by accumulative roll bonding(ARB) through seven passes, and its microstructure and mechanical properties were evaluated. The microstructure investigations show that plastic instability occurred in both the copper and magnesium reinforcements in the primary sandwich. In addition, a composite with a perfectly uniform distribution of copper and magnesium reinforcing layers was produced during the last pass. By increasing the number of ARB cycles, the microhardness of the layers including aluminum, copper, and magnesium was significantly increased. The ultimate tensile strength of the sandwich was enhanced continually and reached a maximum value of 355.5 MPa. This strength value was about 3.2, 2, and 2.1 times higher than the initial strength values for the aluminum, copper, and magnesium sheets, respectively. Investigation of tensile fracture surfaces during the ARB process indicated that the fracture mechanism changed to shear ductile at the seventh pass. 展开更多
关键词 multi-layered composite al/cu/Mg ACcuMULATIVE ROLL BONDING FRACTOGRAPHY mechanical properties microstructure
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Effects of intermediate Ni layer on mechanical properties of Al–Cu layered composites fabricated through cold roll bonding 被引量:6
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作者 Ali Shabani Mohammad Reza Toroghinejad Alireza Bagheri 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2018年第5期573-583,共11页
Layered composites have attracted considerable interest in the recent literature on metal composites. Their mechanical properties depend on the quality of the bonding provided by the intermediate layers. In this study... Layered composites have attracted considerable interest in the recent literature on metal composites. Their mechanical properties depend on the quality of the bonding provided by the intermediate layers. In this study, we analyzed the mechanical properties and bond strengths provided by the nickel layer with respect to its thickness and nature(either powder or coating). The results suggest that bond strength decreases with an increase in the content of nickel powder. At 0.3 vol% of nickel coating, we found the nature of nickel to be less efficient in terms of bond strength. A different picture arose when the content of nickel was increased and the bond strength increased in nickel coated samples. In addition, the results demonstrate that mechanical properties such as bend strength are strongly dependent on bond strength. 展开更多
关键词 cold ROLL BONDING al/ni/cu composite MECHAniCal testing METalLOGRAPHY
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Microstructure and mechanical properties of SiC-particle-strengthening tri-metal Al/Cu/Ni composite produced by accumulative roll bonding process 被引量:5
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作者 Moslem Tayyebi Beitallah Eghbali 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2018年第3期357-364,共8页
In this study, a multilayer Al/Ni/Cu composite reinforced with Si C particles was produced using an accumulative roll bonding(ARB) process with different cycles. The microstructure and mechanical properties of this co... In this study, a multilayer Al/Ni/Cu composite reinforced with Si C particles was produced using an accumulative roll bonding(ARB) process with different cycles. The microstructure and mechanical properties of this composite were investigated using optical and scanning microscopy and hardness and tensile testing. The results show that by increasing the applied strain, the Al/Ni/Cu multilayer composite converted from layer features to near a particle-strengthening characteristic. After the fifth ARB cycle, a composite with a uniform distribution of reinforcements(Cu, Ni, and SiC) was fabricated. The tensile strength of the composite increased from the initial sandwich structure to the first ARB cycle and then decreased from the first to the third ARB cycle. Upon reaching five ARB cycles, the tensile strength of the composite increased again. The variation in the elongation of the composite exhibited a tendency similar to that of its tensile strength. It is observed that with increasing strain, the microhardness values of the Al, Cu, and Ni layers increased, and that the dominant fracture mechanisms of Al and Cu were dimple formation and ductile fracture. In contrast, brittle fracture in specific plains was the main characteristic of Ni fractures. 展开更多
关键词 ACcuMULATIVE ROLL BONDING al/ni/cu/SiC composite silicon CARBIDE particles microstructure mechanical properties
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Wetting of molten Sn-3.5Ag-0.5Cu on Ni-P(-SiC) coatings deposited on high volume faction SiC/Al composite 被引量:5
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作者 Xiang-zhao ZHANG Xiao-lang WU +4 位作者 Gui-wu LIU Wen-qiang LUO Ya-jie GUO Hai-cheng SHAO Guan-jun QIAO 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2018年第9期1784-1792,共9页
The wetting of molten Sn-3.5Ag-0.5Cu alloy on the Ni-P(-SiC)coated SiCp/Al substrates was investigated by electroless Ni plating process,and the microstructures of the coating and the interfacial behavior of wetting s... The wetting of molten Sn-3.5Ag-0.5Cu alloy on the Ni-P(-SiC)coated SiCp/Al substrates was investigated by electroless Ni plating process,and the microstructures of the coating and the interfacial behavior of wetting systems were analyzed.The SiC particles are evenly distributed in the coating and enveloped with Ni.No reaction layer is observed at the coating/SiCp/Al composite interfaces.The contact angle increases from^19°with the Ni-P coating to 29°,43°and 113°with the corresponding Ni-P-3SiC,Ni-P-6SiC and Ni-P-9SiC coatings,respectively.An interaction layer containing Cu,Ni,Sn and P forms at the Sn-Ag-Cu/Ni-P-(0,3,6)SiC coated SiCp/Al interfaces,and the Cu-Ni-Sn and Ni-Sn-P phases are detected in the interaction layer.Moreover,the molten Sn-Ag-Cu can penetrate into the Ni-P(-SiC)coatings through the Ni-P/SiC interface and dissolve them to contact the SiCp/Al substrate. 展开更多
关键词 ni coating Sn-Ag-cu alloy SiCp/al composite WETTING microstructures interface
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Improvement of Joint Strength of SiCp/Al Metal Matrix Composite in Transient Liquid Phase Bonding Using Cu/Ni/Cu Film Interlayer 被引量:1
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作者 Rongfa CHEN Dunwen ZUO Min WANG 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2006年第3期291-294,共4页
The compact oxide on the surface of SiCp/Al metal matrix composite (SiCp/Al MMC) greatly depends on the property of the joint. Inlaid sputtering target was applied to etch the oxide completely on the bonding surface... The compact oxide on the surface of SiCp/Al metal matrix composite (SiCp/Al MMC) greatly depends on the property of the joint. Inlaid sputtering target was applied to etch the oxide completely on the bonding surface of SiCp/Al MMC by plasma erosion. Cu/Ni/Cu film of 5μm in thickness was prepared by magnetron sputtering method on the clean bonding surface in the same vacuum chamber, which was acted as an interlayer in transient liquid phase (TLP) bonding process. Compared with the same thickness of single Cu foil and Ni foil interlayer, the shear strength of 200 MPa was obtained using Cu/Ni/Cu film interlayer during TLP bonding, which was 89.7% that of base metal. In addition, homogenization of the bonding region and no particle segregation in interfacial region were found by analysis of the joint microstructure. Scanning electron microscopy (SEM) was used to observe the micrograph of the joint interface. The result shows that a homogenous microstructure of joint was achieved, which is similar with that of based metal. 展开更多
关键词 SiCp/al MMC Magnetron sputtering cu/ni/cu film Transient liquid-phase(TLP) bonding
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Morphology and Frictional Characteristics Under Electrical Currents of Al_2O_3/Cu Composites Prepared by Internal Oxidation 被引量:7
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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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WC-Ni_3Al-B composites prepared through Ni+Al elemental powder route 被引量:6
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作者 龙坚战 张忠健 +4 位作者 徐涛 彭文 魏修宇 陆必志 李仁琼 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2012年第4期847-852,共6页
In order to develop the liquid phase sintering process of WC-Ni3Al-B composites,the preparation process of WC+Ni3Al prealloyed powder by reaction synthesis of carbonyl Ni,analytical purity Al and coarse WC powders wa... In order to develop the liquid phase sintering process of WC-Ni3Al-B composites,the preparation process of WC+Ni3Al prealloyed powder by reaction synthesis of carbonyl Ni,analytical purity Al and coarse WC powders was investigated.DSC and XRD were adopted to study the procedure of phase transformation for the 3Ni+Al and 70%WC+(3Ni+Al) mixed powders in temperature ranges of 550-1200 °C and 25-1400 °C,respectively.The results demonstrate that the formation mechanism of Ni3Al depends on the reaction temperature.Besides WC phase,there exist Ni2Al3,NiAl and Ni3Al intermetallics in the powder mixture after heat treatment at 200-660 °C,while only NiAl and Ni3Al exist at 660-1100 °C.Homogeneous WC+Ni3Al powder mixture can be obtained in the temperature range of 1100-1200 °C.The WC-30%(Ni3Al-B) composites prepared from the mixed powders by conventional powder metallurgy technology show nearly full density and the shape of WC is round.WC-30%(Ni3Al-B) composites exhibit higher hardness of 9.7 GPa,inferior bending strength of 1800 MPa and similar fracture toughness of 18 MPa-m1/2 compared with commercial cemented carbides YGR45(WC-30%(Co-Ni-Cr)). 展开更多
关键词 WC-ni3al-B composites ni3al intermetallic liquid phase sintering mechanical properties
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Microstructures,mechanical and oxidation behaviors of C/C composites modified by NiAl alloy 被引量:6
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作者 方华婵 肖鹏 +1 位作者 熊翔 於广军 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2016年第1期196-202,共7页
Carbon/carbon composites modified by NiAl alloy were prepared using vacuum reactive melt infiltration methods with NiAl and titanium mixed powders as raw materials. The microstructures were investigated by scanning el... Carbon/carbon composites modified by NiAl alloy were prepared using vacuum reactive melt infiltration methods with NiAl and titanium mixed powders as raw materials. The microstructures were investigated by scanning electron microscopy. The fracture behavior, infiltration and oxidation mechanism were further discussed. The results indicated that NiAl alloy exhibited good wettability on the C/C preform because a TiC reaction layer formed at the interface. Multi-layer(PyC/TiC/NiAl+TiC) coating evenly and compactly distributed on the surface of the carbon fiber in tubular form. The penetration depth of molten NiAl alloys depended on the reaction between the PyC and titanium. The impact fracture was inclined to along the interface between the NiAl permeability layer and C/C matrix. Al_2TiO_5 and TiO_2 formed on the surface, while the interior multi-layer tubular structure partially remained after oxidation at 1773 K for 30 min. 展开更多
关键词 carbon/carbon composites INTERFACE ni al multilayer structure OXIDATION
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Cu-Al层状复合材料金属间化合物结构稳定性的第一性原理计算
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作者 李爽 王文焱 +5 位作者 张飞扬 崔云峰 谢敬佩 王爱琴 朱晓龙 高铭 《材料热处理学报》 CAS CSCD 北大核心 2024年第9期65-76,共12页
铜铝层状复合材料在固液复合铸轧成型时,固态铜与液态铝在接触面发生界面反应生成的金属间化合物容易引发晶界脆性、晶间裂纹或弹性畸变致使其开裂而失效。因此,一个强而稳定的界面对于整个复合材料的结构强度至关重要。为深入了解界面... 铜铝层状复合材料在固液复合铸轧成型时,固态铜与液态铝在接触面发生界面反应生成的金属间化合物容易引发晶界脆性、晶间裂纹或弹性畸变致使其开裂而失效。因此,一个强而稳定的界面对于整个复合材料的结构强度至关重要。为深入了解界面金属间化合物的化学键合、晶体结构及稳定性,利用第一性原理对Cu-Al层状复合材料中常见的金属间化合物Al_(4)Cu_(9)、Al_(2)Cu、AlCu开展了热力学性能、力学性能和电子结构的相关计算。有效生成热数值表明,扩散初始阶段Al_(2)Cu相将在界面处最先生成,待Al_(2)Cu初生相形成后,将依次生成Al_(4)Cu_(9)、AlCu。Al_(2)Cu、Al_(4)Cu_(9)和AlCu均符合力学稳定性标准,对比它们的B/G值、泊松比和硬度,3种金属间化合物均为脆性相,其中Al_(2)Cu的脆性最大且硬度最高。通过对能带、态密度和Mulliken布居进行分析,发现金属键在Al_(2)Cu和AlCu化学键中具有更强的离子性特征,而在Al_(4)Cu_(9)化学键中具有更强的共价性特征,使得Al和Cu原子之间的相互作用更紧密,稳定性更强。 展开更多
关键词 cu-al层状复合材料 生成焓 结合能 电子结构 力学性能
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Ni元素对Al-Cu-Mn合金组织及力学性能的影响 被引量:3
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作者 杨玉萍 苏睿明 +2 位作者 马思怡 聂赛男 李广龙 《有色金属科学与工程》 CAS 北大核心 2023年第1期67-73,共7页
为研究添加Ni元素对Al-5.0Cu-0.6Mn合金组织及力学性能的影响,通过硬度试验、拉伸力学试验及摩擦磨损试验对合金力学性能进行研究;采用扫描电子显微镜、激光共聚焦显微镜及透射电子显微镜对合金微观组织进行检测分析。结果表明:向Al-5.0... 为研究添加Ni元素对Al-5.0Cu-0.6Mn合金组织及力学性能的影响,通过硬度试验、拉伸力学试验及摩擦磨损试验对合金力学性能进行研究;采用扫描电子显微镜、激光共聚焦显微镜及透射电子显微镜对合金微观组织进行检测分析。结果表明:向Al-5.0Cu-0.6Mn合金中添加Ni元素后,由于Al3CuNi相析出的强化作用,并且与基体结合良好的增强相颗粒能均匀分布于合金中,使得合金硬度和强度大幅提高,摩擦磨损深度显著降低,综合力学性能得到有效的提升。当Ni元素的添加量为0.3%(质量分数)时,由于T相(Al_(20)Cu_(2)Mn_(3))和Al3CuNi相分布比较均匀,合金综合性能较为理想,其HV硬度、抗拉强度、摩擦磨损系数分别为126.4 MPa、395.2 MPa、0.12。 展开更多
关键词 al-cu-MN合金 ni元素 力学性能 显微组织
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Ni-Al辅助微波自蔓延烧结制备Ti_(3)SiC_(2)基金刚石复合材料工艺研究
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作者 史书浩 杨黎 +3 位作者 郭胜惠 高冀芸 侯明 鲁元佳 《金刚石与磨料磨具工程》 CAS 北大核心 2024年第1期22-30,共9页
为降低金刚石磨削工具的制造成本和能耗,探寻一种在低能耗下实现高性能陶瓷结合剂金刚石磨具的制备工艺,同时研究助燃剂Si和金刚石粒度等因素对样品物相组成、显微形貌和磨削性能的影响。采用Ti、Si、石墨粉和金刚石磨料作为原料,经冷... 为降低金刚石磨削工具的制造成本和能耗,探寻一种在低能耗下实现高性能陶瓷结合剂金刚石磨具的制备工艺,同时研究助燃剂Si和金刚石粒度等因素对样品物相组成、显微形貌和磨削性能的影响。采用Ti、Si、石墨粉和金刚石磨料作为原料,经冷压成型至生胚,通过Ni-Al辅助在微波场加热诱发Ti-Si-C体系发生自蔓延高温合成(SHS)反应以制备Ti_(3)SiC_(2)基金刚石复合材料。结果表明,高热值Ni-Al合金辅助可以缩短样品的烧结时间,还可以将诱发SHS反应的温度点控制在金刚石石墨化温度以下。在Ar保护气氛下,Ti-Si-C体系发生SHS反应,可生成Ti_(3)SiC_(2)、TiC和Ti5Si3等3种物相。随Si含量升高,Ti_(3)SiC_(2)相先增多后减少,当n(Ti):n(Si):n(C)=3∶1.1∶2时,复合材料的磨削性能最佳,磨耗比最高可达286.53。分析不同原料配比下的试样磨耗比差异的产生机制,认为基体组织中存在微小且分布均匀的气孔结构,在磨削时可产生大区域的平整磨削面,易于发挥金刚石磨料的磨削效果,有利于提升复合材料样品的磨削性能。 展开更多
关键词 微波自蔓延烧结 Ti_(3)SiC_(2) 金刚石复合材料 ni-al合金
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微量Sm元素对TiC_(p)/Al-Cu-Mg-Mn复合材料微观组织和力学性能的影响
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作者 刘强 易格 +4 位作者 冯佳文 郗洪雷 严鹏 肖文龙 马朝利 《材料工程》 EI CAS CSCD 北大核心 2024年第9期116-123,共8页
以0.27%(体积分数)TiC颗粒增强的TiC_(p)/Al-5Cu-1.9Mg-0.9Mn复合材料为基体,研究不同Sm元素含量对复合材料组织与力学性能的影响规律。结果表明:Sm元素的加入明显细化了枝晶组织,促进了固溶处理过程中第二相的溶解,使得时效态组织中T-A... 以0.27%(体积分数)TiC颗粒增强的TiC_(p)/Al-5Cu-1.9Mg-0.9Mn复合材料为基体,研究不同Sm元素含量对复合材料组织与力学性能的影响规律。结果表明:Sm元素的加入明显细化了枝晶组织,促进了固溶处理过程中第二相的溶解,使得时效态组织中T-Al_(2)0Cu_(2)Mn_(3)和S′-Al_(2)CuMg析出相的数量密度增加,当Sm元素含量较高时(0.3%,质量分数,下同),组织中将出现块状难溶稀土化合物。随着Sm的加入,复合材料室温和250℃下的屈服强度逐渐增加,但会引起塑性降低,当Sm元素添加量为0.3%时,室温屈服强度从246 MPa提高到310 MPa,250℃屈服强度从191 MPa提高到220 MPa。分析认为,强度提高源于Sm引起的组织细化和析出相数量密度增加,而塑性下降是由于粗大块状难溶稀土化合物割裂了基体,导致裂纹源容易产生。 展开更多
关键词 铝基复合材料 al-cu 稀土元素 微观组织 力学性能
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