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Synthesis of Ni/Al System Intermetallic Compound Under the Influence of Pulsating Electric Current
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作者 胡建华 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2003年第2期38-40,共3页
Synthesis of Ni/Al system intermetallic compound under the influence of pulsating electric current is researched.Reactions of Ni/Al system intermetallic compound are analyzed.It is found that solid-state reactions occ... Synthesis of Ni/Al system intermetallic compound under the influence of pulsating electric current is researched.Reactions of Ni/Al system intermetallic compound are analyzed.It is found that solid-state reactions occur at Ni/Al interface and the main way of reactions is atoms diffusing each other under the influence of a high-density pulsating electric current. 展开更多
关键词 pulsating electric current self-propagating high-temperature synthesis ni/al system intermetallic compound
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0Cr17Ni7Al弹簧钢丝的残余应力分析与翘距控制
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作者 黄磊 耿长建 +6 位作者 赵吉庆 岳琦 郭燕飞 苏孺 马海坤 吴大勇 康杰 《河北科技大学学报》 北大核心 2025年第1期1-7,共7页
为了解决0Cr17Ni7Al弹簧钢丝在拉拔过程中出现的残余应力问题及钢丝卷曲后的回弹现象,通过实验观测和有限元模拟相结合的方法,分析了拉拔工艺参数对残余应力及钢丝翘距的影响,并构建了残余应力与翘距之间的量化关系模型。结果表明:卷丝... 为了解决0Cr17Ni7Al弹簧钢丝在拉拔过程中出现的残余应力问题及钢丝卷曲后的回弹现象,通过实验观测和有限元模拟相结合的方法,分析了拉拔工艺参数对残余应力及钢丝翘距的影响,并构建了残余应力与翘距之间的量化关系模型。结果表明:卷丝过程中丝圈轴向的塑性变形是翘距产生的主要原因,而残余应力的分布特征对翘距有显著影响;通过调整拉拔参数可以有效控制翘距;翘距与残余应力之间的关系模型准确度高达0.97。研究结果深化了对拉拔工艺中残余应力影响的理解,为钢丝的后续加工和应用提供了技术参考。 展开更多
关键词 黑色金属及其合金 0Cr17ni7al弹簧钢丝 残余应力 拉拔工艺 翘距 有限元模拟
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Al掺杂LiNi_(0.5)Co_(0.2)Mn_(0.3)O_(2)材料结构改性及电化学性能研究
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作者 邢建祥 杨延朴 +3 位作者 杨集舜 徐越 杨廷海 杨刚 《材料导报》 北大核心 2025年第1期122-126,共5页
三元正极材料LiNi_(0.5)Co_(0.2)Mn_(0.3)O_(2)(NCM523)由于其适中的价格和高能量密度而广受关注,但低循环稳定性使其商业化应用受限。本研究以Al为掺杂元素,采用共沉淀结合高温固相的方法制备不同数量的Al原子取代Mn位的三元NCM523微... 三元正极材料LiNi_(0.5)Co_(0.2)Mn_(0.3)O_(2)(NCM523)由于其适中的价格和高能量密度而广受关注,但低循环稳定性使其商业化应用受限。本研究以Al为掺杂元素,采用共沉淀结合高温固相的方法制备不同数量的Al原子取代Mn位的三元NCM523微米颗粒型正极材料。结果表明,适量的Al掺杂可以增强过渡金属层的稳定性,显著改善NCM523材料循环稳定性差的问题。Al掺杂量满足Al/Li物质的量比为7%时获得了最佳的电化学性能,在2.7~4.5 V、0.1C倍率下首次放电比容量为165.7 mAh·g^(-1),经50次循环后衰减为134.3 mAh·g^(-1),容量保持率为81.05%。高温(55℃)环境下,Al/Li物质的量比为7%的样品依然保持最佳的电化学性能。 展开更多
关键词 锂离子电池 Lini_(0.5)Co_(0.2)Mn_(0.3)O_(2) al掺杂 循环稳定性
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Ru团簇对Ni/Ni_(3)Al合金纳米线形变影响的原子模拟
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作者 阳喜元 《原子与分子物理学报》 CAS 北大核心 2025年第1期81-87,共7页
镍基高温合金是制造先进航空发动机热端部件的关键材料之一,其高温力学性能直接关系到发动机运行安全和使用寿命.本文采用改进分析型嵌入原子模型(MAEAM)和分子动力学(MD)研究合金化元素钌(Ru)团簇对Ni/Ni_(3)Al纳米线形变机制的影响,... 镍基高温合金是制造先进航空发动机热端部件的关键材料之一,其高温力学性能直接关系到发动机运行安全和使用寿命.本文采用改进分析型嵌入原子模型(MAEAM)和分子动力学(MD)研究合金化元素钌(Ru)团簇对Ni/Ni_(3)Al纳米线形变机制的影响,结果表明:在单轴拉伸应变下,纳米线的弹性模量和屈服强度随温度升高而降低.温度较低时,纳米线形变由位错产生与发射而导致晶格滑移所引起.由于晶格热振动非谐效应不明显,Ru团簇阻碍效果显著,使得晶格滑移区域仅限于Ru团簇与Ni/Ni_(3)Al相界面之间且呈非对称分布.温度较高时,纳米线的形变由位错发射而引起晶格滑移所致,但因非谐效应显著,Ru团簇无法阻碍位错运动,滑移区域在Ru团簇周围对称分布于Ni_(3)Al相中.最后从Ru团簇微观结构及其稳定性的角度进一步分析其对纳米线形变影响. 展开更多
关键词 Ru团簇 形变机制 ni/ni_(3)al纳米线 原子模拟
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Influence of Al,Cu and Mn additions on diffusion behaviors in CoCrFeNi high-entropy alloys
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作者 Juan CHEN Zhen-zhong ZHANG +1 位作者 Jin-kun XIAO Li-jun ZHANG 《中国有色金属学报》 北大核心 2025年第1期184-193,共10页
The interdiffusion coefficients in Al_(0.2)CoCrFeNi,CoCrCu_(0.2)FeNi,and CoCrFeMn_(0.2)Ni high-entropy alloys were efficiently determined by combining diffusion couple experiments and high-throughput determination of ... The interdiffusion coefficients in Al_(0.2)CoCrFeNi,CoCrCu_(0.2)FeNi,and CoCrFeMn_(0.2)Ni high-entropy alloys were efficiently determined by combining diffusion couple experiments and high-throughput determination of interdiffusion coefficients(HitDIC)software at 1273−1373 K.The results show that the addition of Al,Cu,and Mn to CoCrFeNi high-entropy alloys promotes the diffusion of Co,Cr,and Fe atoms.The comparison of tracer diffusion coefficients indicates that there is no sluggish diffusion in tracer diffusion on the thermodynamic temperature scale for the present Al_(0.2)CoCrFeNi,CoCrCu_(0.2)FeNi,and CoCrFeMn_(0.2)Ni high-entropy alloys.The linear relationship between diffusion entropy and activation energy reveals that the diffusion process of atoms is unaffected by an increase in the number of components as long as the crystal structure remains unchanged. 展开更多
关键词 Co−Cr−Fe−ni high-entropy alloy DIFFUSION interdiffusivity diffusion couple
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In-situ Si particle-reinforced joints of hypereutectic Al−60Si alloys by ultrasonic-assisted soldering
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作者 Yuan-xing LI Xiang-bo ZHENG +3 位作者 Chao-zheng ZHAO Zong-tao ZHU Yu-jie BAI Hui CHEN 《中国有色金属学报》 北大核心 2025年第1期77-90,共14页
To improve the wettability of hypereutectic Al−60Si alloy and enhance the mechanical properties of the joints,Al−60Si alloy was joined by ultrasonic soldering with Sn-9Zn solder,and a sound joint with in-situ Si parti... To improve the wettability of hypereutectic Al−60Si alloy and enhance the mechanical properties of the joints,Al−60Si alloy was joined by ultrasonic soldering with Sn-9Zn solder,and a sound joint with in-situ Si particle reinforcement was obtained.The oxide film of Al−60Si alloy at the interface was identified by transmission electron microscopy(TEM)analysis as amorphous Al_(2)O_(3).The oxide of Si particles in the base metal was also alumina.The oxide film of Al−60Si alloy was observed to be removed by ultrasonic vibration instead of holding treatment.Si particle-reinforced joints(35.7 vol.%)were obtained by increasing the ultrasonication time.The maximum shear strength peaked at 99.5 MPa for soldering at 330℃with an ultrasonic vibration time of 50 s.A model of forming of Si particles reinforced joint under the ultrasound was proposed,and ultrasonic vibration was considered to promote the dissolution of Al and migration of Si particles. 展开更多
关键词 hypereutectic al−60Si alloy ultrasonic-assisted soldering Si particle reinforcement Sn−9Zn solder
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Atmospheric reductive catalytic fractionation of lignocellulose integrated with one-pot catalytic conversion of carbohydrate yielding valuable lignin monomers and platform chemicals from corn straw
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作者 Meng-Ying Liu Zhe-Hui Zhang +7 位作者 Xue-Qi Wang Qian Sun Chen Zhang Yu Li Zhuohua Sun Katalin Barta Feng Peng Tong-Qi Yuan 《Green Energy & Environment》 SCIE EI CAS 2025年第1期161-172,共12页
Developing a cost-effective and environmentally friendly process for the production of valuable chemicals from abundant herbal biomass receives great attentions in recent years.Herein,taking advantage of the“lignin f... Developing a cost-effective and environmentally friendly process for the production of valuable chemicals from abundant herbal biomass receives great attentions in recent years.Herein,taking advantage of the“lignin first”strategy,corn straw is converted to valuable chemicals including lignin monomers,furfural and 5-methoxymethylfurfural via a two steps process.The key of this research lies in the development of a green and low-cost catalytic process utilizing magnetic Raney Ni catalyst and high boiling point ethylene glycol.The utilization of neat ethylene glycol as the sole slovent under atmospheric conditions obviates the need for additional additives,thereby facilitating the entire process to be conducted in glass flasks and rendering it highly convenient for scaling up.In the initial step,depolymerization of corn straw lignin resulted in a monomer yield of 18.1 wt%.Subsequently,in a dimethyl carbonate system,the carbohydrate component underwent complete conversion in a one-pot process,yielding furfural and 5-methoxymethylfurfural as the primary products with an impressive yield of 47.7%. 展开更多
关键词 Atmospheric reductive catalytic fractionation Corn straw Ethylene glycol Raney ni 5-Methoxymethylfurfural
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Effect of lamellarization on the microstructure and mechanical properties of marine 10Ni5CrMoV steel
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作者 Tao Zou Yanwu Dong +2 位作者 Zhouhua Jiang Shuyang Du Yushuo Li 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS 2025年第2期402-413,共12页
Multistage heat treatment involving quenching(Q),lamellarizing(L),and tempering(T)is applied to marine 10Ni5CrMoV steel.The microstructure and mechanical properties were studied by multiscale characterizations,and the... Multistage heat treatment involving quenching(Q),lamellarizing(L),and tempering(T)is applied to marine 10Ni5CrMoV steel.The microstructure and mechanical properties were studied by multiscale characterizations,and the kinetics of reverse austenite transformation,strain hardening behavior,and toughening mechanism were further investigated.The lamellarized specimens possess low yield strength but high toughness,especially cryogenic toughness.Lamellarization leads to the development of film-like reversed austenite at the martensite block and lath boundaries,refining the martensite structure and lowering the equivalent grain size.Kinetic analysis of austenite reversion based on the JMAK model shows that the isothermal transformation is dominated by the growth of reversed austenite,and the maximum transformation of reversed austenite is reached at the peak temperature(750℃).The strain hardening behavior based on the modified Crussard-Jaoul analysis indicates that the reversed austenite obtained from lamellarization reduces the proportion of martensite,significantly hindering crack propagation via martensitic transformation during the deformation.As a consequence,the QLT specimens exhibit high machinability and low yield strength.Compared with the QT specimen,the ductile-brittle transition temperature of the QLT specimens decreases from-116 to-130℃due to the low equivalent grain size and reversed austenite,which increases the cleavage force required for crack propagation and absorbs the energy of external load,respectively.This work provides an idea to improve the cryogenic toughness of marine 10Ni5CrMoV steel and lays a theoretical foundation for its industrial application and comprehensive performance improvement. 展开更多
关键词 10ni5CrMoV steel lamellarizing reversed austenite cryogenic toughness ductile-brittle transition temperature
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Mechanism of cryorolling and aging treatment for enhancing corrosion properties of 2195 Al−Li alloy
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作者 Yue XIAO Wen-shuai WANG +3 位作者 Waqas FARID Li-hua ZHANG Charlie KONG Hai-liang YU 《中国有色金属学报》 北大核心 2025年第1期13-29,共17页
The impact of cryorolling(CR)and room temperature rolling(RTR)followed by artificial aging on the corrosion characteristics of 2195 Al−Li alloy(AA2195)was studied.Transmission electron microscope,scanning electron mic... The impact of cryorolling(CR)and room temperature rolling(RTR)followed by artificial aging on the corrosion characteristics of 2195 Al−Li alloy(AA2195)was studied.Transmission electron microscope,scanning electron microscope,optical microscope,intergranular corrosion experiment,and electrochemical experiment were used.Throughout different stages of aging treatment,the corrosion behavior of both CR and RTR samples exhibited a sequential progression of pitting corrosion,followed by intergranular corrosion,and then pitting corrosion again.The corrosion rates of both samples initially showed an increase,followed by a gradual stabilization over time.The size and density of T1 phase significantly influenced the corrosion performance of the alloy.During the peak aging and over-aging stages,the CR sample exhibited superior corrosion resistance to the RTR sample,attributed to its finer T1 phase. 展开更多
关键词 2195 al−Li alloy CRYOROLLING aging treatment corrosion performance
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Spastin and alsin protein interactome analyses begin to reveal key canonical pathways and suggest novel druggable targets
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作者 Benjamin R.Helmold Angela Ahrens +1 位作者 Zachary Fitzgerald P.Hande Ozdinler 《Neural Regeneration Research》 SCIE CAS 2025年第3期725-739,共15页
Developing effective and long-term treatment strategies for rare and complex neurodegenerative diseases is challenging. One of the major roadblocks is the extensive heterogeneity among patients. This hinders understan... Developing effective and long-term treatment strategies for rare and complex neurodegenerative diseases is challenging. One of the major roadblocks is the extensive heterogeneity among patients. This hinders understanding the underlying disease-causing mechanisms and building solutions that have implications for a broad spectrum of patients. One potential solution is to develop personalized medicine approaches based on strategies that target the most prevalent cellular events that are perturbed in patients. Especially in patients with a known genetic mutation, it may be possible to understand how these mutations contribute to problems that lead to neurodegeneration. Protein–protein interaction analyses offer great advantages for revealing how proteins interact, which cellular events are primarily involved in these interactions, and how they become affected when key genes are mutated in patients. This line of investigation also suggests novel druggable targets for patients with different mutations. Here, we focus on alsin and spastin, two proteins that are identified as “causative” for amyotrophic lateral sclerosis and hereditary spastic paraplegia, respectively, when mutated. Our review analyzes the protein interactome for alsin and spastin, the canonical pathways that are primarily important for each protein domain, as well as compounds that are either Food and Drug Administration–approved or are in active clinical trials concerning the affected cellular pathways. This line of research begins to pave the way for personalized medicine approaches that are desperately needed for rare neurodegenerative diseases that are complex and heterogeneous. 展开更多
关键词 alS2 alsin amyotrophic lateral sclerosis hereditary spastic paraplegia neurodegenerative diseases personalized medicine precision medicine protein interactome protein-protein interactions SPAST SPASTIN
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Atomic-scale insights into microscopic mechanisms of grain boundary segregation in Al−Cu alloys
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作者 Xiong SHUAI Hong MAO +2 位作者 Sai TANG Yi KONG Yong DU 《中国有色金属学报》 北大核心 2025年第1期1-12,共12页
This study aims to clarify the mechanisms for the grain boundary(GB)segregation through investigating the absorption of excess solute atoms at GBs in Al−Cu alloys by using the hybrid molecular dynamics/Monte Carlo sim... This study aims to clarify the mechanisms for the grain boundary(GB)segregation through investigating the absorption of excess solute atoms at GBs in Al−Cu alloys by using the hybrid molecular dynamics/Monte Carlo simulations.Two segregation mechanisms,substitutional and interstitial mechanisms,are observed.The intergranular defects,including dislocations,steps and vacancies,and the intervals in structural units are conductive to the prevalence of interstitial mechanism.And substitutional mechanism is favored by the highly ordered twin GBs.Furthermore,the two mechanisms affect the GB structure differently.It is quantified that interstitial mechanism is less destructive to GB structure than substitutional one,and often leads to a segregation level being up to about 6 times higher than the latter.These findings contribute to atomic scale insights into the microscopic mechanisms about how solute atoms are absorbed by GB structures,and clarify the correlation among intergranular structures,segregation mechanisms and kinetics. 展开更多
关键词 grain boundaries segregation al−Cu alloy intergranular structure molecular dynamics simulation Monte Carlo simulation
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镀铝对CoCrNiAlY-YSZ-LaMgAl_(11)O_(19)双陶瓷热障涂层高温抗氧化行为的影响
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作者 解志文 陶浩天 +3 位作者 刘天新 陈永君 胡素影 马北一 《航空制造技术》 CSCD 北大核心 2024年第4期58-63,共6页
采用电弧离子镀(AIP)技术在CoCrNiAlY-YSZ-LaMA双陶瓷涂层表面沉积一层Al镀层,利用XRD、SEM和EDS等微尺度分析表征方法,全面解析涂层在大气暴露过程中的高温氧化行为。研究结果表明,未镀铝LaMA层在氧化过程中发生严重体积收缩,导致纵向... 采用电弧离子镀(AIP)技术在CoCrNiAlY-YSZ-LaMA双陶瓷涂层表面沉积一层Al镀层,利用XRD、SEM和EDS等微尺度分析表征方法,全面解析涂层在大气暴露过程中的高温氧化行为。研究结果表明,未镀铝LaMA层在氧化过程中发生严重体积收缩,导致纵向微裂纹萌生和扩展。这些微裂纹成为氧气向内部扩散的通道,导致涂层呈现持续氧化增重趋势、TGO快速生长和严重的元素扩散,并最终加剧涂层断裂失效。但镀铝涂层样品表现出更好的高温抗氧化性能与结构稳定性,高温氧化过程中,表面Al镀层与氧气发生原位反应生成致密Al2O3屏障层,有效阻止或延迟氧气内部渗透,使TGO缓慢生长,其氧化增重从20h时的8.59mg/cm^(2)略微上升到80h时的9.46mg/cm^(2)。本研究结果为双陶瓷热障涂层的延寿设计与界面热生长应力调控开辟出全新技术途径和理论视野。 展开更多
关键词 双陶瓷热障涂层 al镀层 高温抗氧化性能 热生长氧化物(TGO) 结构稳定性
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Al-12.0Si-4.0Cu-0.7Mg-1.5Ni合金固溶处理工艺研究
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作者 王勇 罗新民 《热加工工艺》 北大核心 2024年第16期45-48,52,共5页
对铸态Al-12.0Si-4.0Cu-0.7Mg-1.5Ni合金进行了双级固溶+时效处理,采用SEM、XRD、硬度测试等研究了双级固溶中第二级固溶温度和时间对铸态合金组织与硬度的影响。结果表明:铸态Al-12.0Si-4.0Cu-0.7Mg-1.5Ni合金组织主要由α-Al固溶体、... 对铸态Al-12.0Si-4.0Cu-0.7Mg-1.5Ni合金进行了双级固溶+时效处理,采用SEM、XRD、硬度测试等研究了双级固溶中第二级固溶温度和时间对铸态合金组织与硬度的影响。结果表明:铸态Al-12.0Si-4.0Cu-0.7Mg-1.5Ni合金组织主要由α-Al固溶体、块状初生Si相、针状共晶Si相以及网状第二相组成。经过双级固溶处理后,合金中块状初生Si相明显钝化,共晶Si相明显细化,网状第二相也显著碎化。490℃×2 h+525℃×4 h双级固溶处理合金中网状相基本完全碎化,共晶Si相最为细小。随着双级固溶中第二级固溶温度的提高,固溶时间的延长,T6态Al-12.0Si-4.0Cu-0.7Mg-1.5Ni合金的硬度先升高后降低,490℃×2 h+525℃×4 h双级固溶+180℃×6 h时效处理合金的硬度最高,达到88.2 HRB。 展开更多
关键词 al-12.0Si-4.0Cu-0.7Mg-1.5ni合金 固溶处理 组织 硬度
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Fe、Ni元素微合金化对Al-11Si铝合金微观组织及力学性能的影响
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作者 刘清 王若超 +2 位作者 晁延吉 齐志峰 刘洪涛 《轻金属》 2024年第4期44-49,共6页
本研究利用扫描电子显微镜(SEM)、能量散射X射线光谱(EDS)和拉伸试验机,研究了Ni(1.2及1.6wt.%)和Fe(0.6及0.8wt.%)含量对Al-11Si铝合金的微观组织及不同温度下的力学性能的影响。实验结果表明,适量的Ni元素对于Al-11Si合金中富含Fe相... 本研究利用扫描电子显微镜(SEM)、能量散射X射线光谱(EDS)和拉伸试验机,研究了Ni(1.2及1.6wt.%)和Fe(0.6及0.8wt.%)含量对Al-11Si铝合金的微观组织及不同温度下的力学性能的影响。实验结果表明,适量的Ni元素对于Al-11Si合金中富含Fe相的类型、形态和分布具有积极作用。在Al-11Si铝合金中添加1.2wt.%Ni和0.6wt.%Fe可以生成一种类似“汉字状”的富Fe强化相。当进一步增加到1.6wt.%Ni和0.8wt.%Fe后,富Fe相变为了长针状,对Al基体产生严重的割裂作用,降低了合金力学性能。由于含有1.2wt.%Ni和0.6wt.%Fe的Al-11Si铝合金中生成了“汉字状”富Fe强化相,合金的高温拉伸性能得到了显著改善。在350℃的测试温度下,Al-11Si铝合金的抗拉强度(UTS)达到了139 MPa。 展开更多
关键词 al-11Si铝合金 ni含量 Fe含量 富Fe相 力学性能
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超声功率对连杆轴瓦Ni-Al_(2)O_(3)镀层耐磨性能的影响 被引量:2
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作者 王斌 徐律 +1 位作者 张晓明 马春阳 《兵器材料科学与工程》 CAS CSCD 北大核心 2024年第1期76-82,共7页
用超声-喷射电沉积方法研究了超声波功率对连杆轴瓦表面Ni-Al_(2)O_(3)镀层耐磨性的影响。用扫描电子显微镜(SEM)、能谱分析仪(EDS)、X射线衍射仪(XRD)、高分辨率电子显微镜(TEM)对Ni-Al_(2)O_(3)镀层的表面形貌、物相组成、组织结构进... 用超声-喷射电沉积方法研究了超声波功率对连杆轴瓦表面Ni-Al_(2)O_(3)镀层耐磨性的影响。用扫描电子显微镜(SEM)、能谱分析仪(EDS)、X射线衍射仪(XRD)、高分辨率电子显微镜(TEM)对Ni-Al_(2)O_(3)镀层的表面形貌、物相组成、组织结构进行分析,用摩擦磨损试验机及纳米显微硬度计对镀层的显微硬度及耐磨性能进行研究。结果表明:超声波功率通过空化效应及微射流作用搅拌镀液,可使Al_(2)O_(3)纳米粒子更好的悬浮在镀液中,从而影响镀层耐磨性。当超声波功率为200 W时,Ni-Al_(2)O_(3)镀层中Ni峰低且宽,镀层晶粒细小,结构致密,显微硬度达到639.2HV,摩擦因数和磨损质量损失分别为0.53和0.27 mg。涂覆Ni-Al_(2)O_(3)镀层的连杆轴瓦磨损量仅为0.31 mg,耐磨性高于未涂覆Ni-Al_(2)O_(3)镀层的连杆轴瓦。 展开更多
关键词 超声-喷射电沉积 ni-al_(2)O_(3)镀层 空化效应 显微硬度 耐磨性能
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不同加热环境下钛表面Ni/Al涂层制备与高温氧化性
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作者 李光全 李德元 +1 位作者 张楠楠 范喜宁 《表面技术》 EI CAS CSCD 北大核心 2024年第1期192-201,共10页
目的 研究大气与真空加热处理后Ni/Al涂层的金属间化合物析出规律,以及扩散层的生长速度,从而确定涂层的抗氧化性能。方法 分别采用电弧喷涂技术和等离子喷涂技术在纯钛基体表面制备Ni/Al涂层。将样品分别在大气条件和真空条件下进行加... 目的 研究大气与真空加热处理后Ni/Al涂层的金属间化合物析出规律,以及扩散层的生长速度,从而确定涂层的抗氧化性能。方法 分别采用电弧喷涂技术和等离子喷涂技术在纯钛基体表面制备Ni/Al涂层。将样品分别在大气条件和真空条件下进行加热处理,使Ni/Al涂层原位反应生成Ni-Al金属间化合物,并进行涂层抗氧化性试验。结果 Ni/Al涂层在大气环境700℃加热处理后,形成以Al_(2)O_(3)、Ni2Al3和富Al相NiAl3相为主的扩散层;在真空环境700℃加热处理后,形成以Ni2Al3、NiAl3相为主的扩散层。通过扩散反应动力学分析发现,真空热处理比大气热处理后Ni和Al之间的反应扩散系数更高,扩散系数为89.731μm2/h。氧化增重试验表明,真空处理后,Ni/Al涂层由于金属间化合物层较厚,且具有大量的高熔点的Ni2Al3相,并且经过800℃下氧化200h后,涂层未发生失效。结论 真空环境下加热处理原位反应后,Ni/Al复合涂层的扩散速率更高,更容易形成Ni-Al金属间化合物,获得更厚的金属间化合物层。与大气热处理相比,经过真空热处理后的涂层有更良好的抗高温氧化能力。 展开更多
关键词 ni/al涂层 等离子喷涂 电弧喷涂 ni-al金属间化合物 高温氧化 热处理
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热压制备Ni/Al微叠层复合板的协调变形行为和气压胀形成形性
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作者 鲁羽鹏 殷宏亮 +3 位作者 席先铮 孟令健 林鹏 梁伟 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2024年第3期786-797,共12页
为了制造NiAl合金复杂薄壁构件,采用真空热压法制备一种新型Ni/Al微叠层复合板(NAMCS)。基于不同温度的单向拉伸试验,研究Ni/Al微叠层复合板的力学性能。为了阐明Ni/Al微叠层复合板的单向拉伸协调变形机制,通过扫描电子显微镜对不同拉... 为了制造NiAl合金复杂薄壁构件,采用真空热压法制备一种新型Ni/Al微叠层复合板(NAMCS)。基于不同温度的单向拉伸试验,研究Ni/Al微叠层复合板的力学性能。为了阐明Ni/Al微叠层复合板的单向拉伸协调变形机制,通过扫描电子显微镜对不同拉伸应变下的变形组织进行表征。结果表明,在5%应变、室温和300℃条件下,NiAl_(3)层和Ni_(2)Al_(3)层中形成了一些裂纹。在600℃和20%应变条件下,在NiAl3层观察到一些微孔。样品在78.7%的拉伸应变断裂时,Ni_(2)Al_(3)层也未出现裂纹,表现出良好的协调变形能力。Ni/Al微叠层复合板的高温自由气压胀形试验表明,600℃时其极限胀形比(极限胀形高度与凹模直径之比)达到33.3%,表现出良好的成形性。 展开更多
关键词 ni/al微叠层复合板 力学性能 协调变形机制 气压胀形 成形性
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Ni/γ-Al_(2)O_(3)催化苯乙烯-异戊二烯-苯乙烯嵌段共聚物加氢 被引量:1
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作者 周浩浩 郭方 +2 位作者 荣泽明 侯召民 苏东宁 《精细化工》 EI CAS CSCD 北大核心 2024年第4期872-880,共9页
以γ-Al_(2)O_(3)为原料、碳酸铵为沉淀剂,采用沉积-沉淀法制备了Ni/γ-Al_(2)O_(3)催化剂,将其应用于苯乙烯-异戊二烯-苯乙烯(SIS)嵌段共聚物催化加氢。通过XRD、TEM、XPS、1HNMR和DSC对催化剂和产物进行了表征。考察了载体种类、Ni理... 以γ-Al_(2)O_(3)为原料、碳酸铵为沉淀剂,采用沉积-沉淀法制备了Ni/γ-Al_(2)O_(3)催化剂,将其应用于苯乙烯-异戊二烯-苯乙烯(SIS)嵌段共聚物催化加氢。通过XRD、TEM、XPS、1HNMR和DSC对催化剂和产物进行了表征。考察了载体种类、Ni理论负载量(以载体质量为基准,下同)、反应条件对SIS加氢反应的影响。结果表明,以γ-Al_(2)O_(3)为载体并负载10%的Ni为催化剂、环己烷为溶剂、反应温度为140℃、反应压力为1MPa、反应时间3.0 h的条件下,催化剂具有最优活性,聚异戊二烯嵌段加氢度达到85%,副反应苯环的加氢度<10%。 展开更多
关键词 苯乙烯-异戊二烯-苯乙烯嵌段共聚物 ni/γ-al_(2)O_(3) 非均相催化 催化技术
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重掺杂p型SiC晶片Ni/Al欧姆接触特性
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作者 杨磊 程佳辉 +3 位作者 杨蕾 张泽盛 龚春生 简基康 《半导体技术》 CAS 北大核心 2024年第5期417-424,共8页
系统研究了Al和Ni/Al两种金属体系在重掺杂p型SiC晶片上的欧姆接触特性和电学性质。利用X射线衍射、扫描电子显微镜和综合物性测量系统对这两种电极表面的微观结构和样品的电学性质进行了表征。结果表明:在真空环境下经过800℃退火后Al... 系统研究了Al和Ni/Al两种金属体系在重掺杂p型SiC晶片上的欧姆接触特性和电学性质。利用X射线衍射、扫描电子显微镜和综合物性测量系统对这两种电极表面的微观结构和样品的电学性质进行了表征。结果表明:在真空环境下经过800℃退火后Al电极可呈现出欧姆接触行为,其比接触电阻率为1.98×10^(-3)Ω·cm^(2),退火处理后Al电极与SiC在接触界面形成化合物Al_(4)C_(3),有助于提高接触界面稳定性。在Ni/Al复合体系中,当Ni金属层厚度为50 nm时,其比接触电阻率显著降低至4.013×10^(-4)Ω·cm^(2)。退火后Ni与SiC在接触界面生成的Ni_(2)Si有利于欧姆接触的形成和降低比接触电阻率。研究结果可为开发液相法生长的p型SiC晶片电子器件提供参考。 展开更多
关键词 p型SiC ni/al 欧姆接触 重掺杂 液相法
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时效时间对Ni-W-Al-Ti高密度合金组织与性能的影响
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作者 高达 张丽辉 +4 位作者 侯振昌 聂志华 齐闯 张楚博 张强 《机械工程材料》 CAS CSCD 北大核心 2024年第6期81-87,共7页
基于面心立方结构及细小弥散相强化原理,设计了一种新型Ni-W-Al-Ti高密度合金(密度为10.8 g·cm^(-3)),将其在750℃下进行不同时间(0,8,16,24,32 h)的时效处理,研究了时效时间对合金显微组织和拉伸性能的影响。结果表明:时效处理后,... 基于面心立方结构及细小弥散相强化原理,设计了一种新型Ni-W-Al-Ti高密度合金(密度为10.8 g·cm^(-3)),将其在750℃下进行不同时间(0,8,16,24,32 h)的时效处理,研究了时效时间对合金显微组织和拉伸性能的影响。结果表明:时效处理后,Ni-W-Al-Ti高密度合金中析出了长程有序的D1_(a)型Ni_(4)W和L1_(2)型Ni_(3)Al强化相,随着时效时间延长,Ni_(4)W相尺寸增大,形状由球状变为椭球状,Ni_(3)Al相数量增多;随着时效时间延长,合金的屈服强度先增加后趋于稳定,抗拉强度无明显变化,断后伸长率减小;当时效时间为24 h时,合金的屈服强度最大,为740 MPa,抗拉强度和断后伸长率适中,分别为886 MPa,9%,综合拉伸性能较佳。 展开更多
关键词 高密度合金 时效处理 ni4W相 ni3al 拉伸性能
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