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钛基复合材料中富钕氧化物颗粒析出行为的研究 被引量:2
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作者 孙福生 曹春晓 《材料工程》 EI CAS CSCD 北大核心 1994年第4期13-16,共4页
本文研究了不同钕含量、凝固速度和熔炼工艺对富钕氧化物颗粒在Ti-Al-Sn-Z-Mo-Si合金基体中析出行为的影响。钕是在液态下以内氧化方式析出而构成富钕氧化物颗粒的。颗粒的体积分量、尺寸和分布受钕含量和凝固速度的影响。
关键词 钛基复合材料 高钕氧化物 颗粒析出
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金属线刻蚀工序光刻胶剥离工程中金属颗粒(Cu)析出案例调查及解决方案
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作者 陈帆 戎蒙恬 《黑龙江科技信息》 2008年第8期27-27,178,共2页
在现今大规模集成电路制造过程中,某些Memory,LCD产品的金属线刻蚀工序,在刻蚀生成聚合物的洗净过程中容易产成金属颗粒(主要是Cu颗粒)。对其工艺流程因素,机台硬件因素,产生机理进行了调查,得出了结论,并提出了有效的解决方案。
关键词 光刻胶剥离 聚合物 CU 颗粒析出 刻蚀 电迁徙
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600MPa级煤巷支护锚杆钢的开发与质量控制 被引量:8
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作者 邸全康 周玉丽 +5 位作者 程四华 王全礼 康红普 鲍海山 林健 康永林 《煤炭科学技术》 CAS 北大核心 2011年第9期76-80,共5页
针对我国锚杆用钢长期处于低强度、安全性能较差的现状,研发了屈服强度为600 MPa级的低屈强比、高强韧塑性煤巷支护锚杆钢。阐述了该钢种化学成分、微观物质结构、生产工艺路线设计思路;研究了热轧工艺下的低屈强比和高冲击韧性的影响因... 针对我国锚杆用钢长期处于低强度、安全性能较差的现状,研发了屈服强度为600 MPa级的低屈强比、高强韧塑性煤巷支护锚杆钢。阐述了该钢种化学成分、微观物质结构、生产工艺路线设计思路;研究了热轧工艺下的低屈强比和高冲击韧性的影响因素,提出通过缩小动态再结晶区间降低混晶、控冷细化晶粒、洁净钢路线提高纯净度的生产控制工艺,实现了良好塑韧性。同时还提出通过控制多相钢组织为F(铁素体,53%)+P(珠光体)+M(马氏体)/A(奥氏体)、第二相纳米颗粒(10~30 nm)析出强化抗拉强度、F直径10~15μm,达到了屈强比不大于0.72的设计要求。并对钢中夹杂物实际控制水平、性能指标进行了评价。 展开更多
关键词 600MPa锚杆钢 低屈强比 冲击功 第二相纳米颗粒析出
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沉淀对Al-Cu-Mg合金中锯齿形屈服现象影响及其微观实验研究 被引量:1
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作者 孙亮 张青川 刘颢文 《实验力学》 CSCD 北大核心 2007年第3期419-423,共5页
经固溶处理的Al-Cu-Mg合金在常应变率拉伸实验中具有显著的锯齿形屈服现象,且屈服行为随固溶处理温度的改变而呈现不同的特征。塑性变形特性与合金材料的微细观结构,尤其是位错运动的演化密切相关。本文运用透射电子显微镜,研究在不同... 经固溶处理的Al-Cu-Mg合金在常应变率拉伸实验中具有显著的锯齿形屈服现象,且屈服行为随固溶处理温度的改变而呈现不同的特征。塑性变形特性与合金材料的微细观结构,尤其是位错运动的演化密切相关。本文运用透射电子显微镜,研究在不同温度下固溶处理的Al-Cu-Mg合金的微观结构,尤其是析出颗粒的大小和含量。并结合宏观的拉伸实验结果,分析Al-Cu-Mg合金动态应变时效的机制。 展开更多
关键词 A1-Cu—Mg合金 锯齿形屈服 固溶处理 透射电子显微镜 析出颗粒
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Microstructures and mechanical properties of extruded 2024 aluminum alloy reinforced by FeNiCrCoAl_3 particles 被引量:7
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作者 王志伟 原燕波 +2 位作者 郑瑞晓 Kei AMEYAMA 马朝利 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2014年第7期2366-2373,共8页
Different proportions of commercial 2024 aluminum alloy powder and FeNiCrCoA13 high entropy alloy (HEA) powder were ball-milled (BM) for different time. The powder was consolidated by hot extrusion method. The mic... Different proportions of commercial 2024 aluminum alloy powder and FeNiCrCoA13 high entropy alloy (HEA) powder were ball-milled (BM) for different time. The powder was consolidated by hot extrusion method. The microstructures of the milled powder and bulk alloy were examined by X-ray diffraction (XRD), scanning electron microscopy (SEM) and transmission electron microscopy (TEM). Mechanical properties of the extruded alloy were examined by mechanical testing machine. The results show that after BM, the particle size and microstructures of the mixed alloy powder change obviously. After 48 h BM, the average size of mixed powder is about 30 nm, and then after hot extrusion, the average size of grains reaches about 70 rim. The compressive strength of the extruded alloy reaches 710 MPa under certain conditions of milling time and composition. As a result of the identification of the nano-/micro-strueture-property relationship of the samples, such high strength is attributed mainly to the nanocrystalline grains of a(Al) and nanoscaled FeNiCrCoAl3 particles, and the fine secondary phase of Al2Cu and Fe-rich phases. 展开更多
关键词 aluminium alloys FeNiCrCoAl3 reinforced particles high entropy alloy ball milling hot extrusion nano-precipitates
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Microstructures and mechanical properties of BP/7A04 Al matrix composites 被引量:6
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作者 Cai-he FAN Ling OU +3 位作者 Ze-yi HU Jian-jun YANG Gang CHEN Hong-ge YAN 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2019年第10期2027-2034,共8页
The microstructures and interface structures of basalt particle reinforced 7A04 Al matrix composites (BP/7A04 Al) were analyzed by using OM, TEM, SEM and EDS, and the mechanical properties of 7A04 Al alloy were compar... The microstructures and interface structures of basalt particle reinforced 7A04 Al matrix composites (BP/7A04 Al) were analyzed by using OM, TEM, SEM and EDS, and the mechanical properties of 7A04 Al alloy were compared with those of BP/7A04 Al matrix composites. The results show that the basalt particles are dispersed in the Al matrix and form a strong bonding interface with the Al matrix. SiO2 at the edge of the basalt particles is continuously replaced by Al2O3 formed in the reaction, forming a high-temperature reaction layer with a thickness of several tens of nanometers, and Al2O3 strengthens the bonding interface between basalt particles and Al matrix. The dispersed basalt particles promote the dislocation multiplication, vacancy formation and precipitation of the matrix, and the precipitated phases mainly consist of plate-like η(MgZn2) phase and bright white band-shaped or ellipsoidal T (Al2Mg3Zn3) phase. The bonding interface, high dislocation density and dispersion strengthening phase significantly improve the mechanical properties of the composites. The yield strength and ultimate tensile strength of BP/7A04 Al matrix composites are up to 665 and 699 MPa, which increase by 11.4% and 10.9% respectively compared with 7A04 Al alloy without basalt particles. 展开更多
关键词 Al matrix composites basalt particle interface structure precipitated phase strengthening mechanism
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Influence of TiB_2 nanoparticles on elevated-temperature properties of Al-Mn-Mg 3004 alloy 被引量:4
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作者 Kun LIU 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2017年第4期771-778,共8页
Two contents(1.5%and3%)of TiB2nanoparticles were introduced in Al?Mn?Mg3004alloy to study their effects on theelevated-temperature properties.Results show that TiB2nanoparticles were mainly distributed at the interden... Two contents(1.5%and3%)of TiB2nanoparticles were introduced in Al?Mn?Mg3004alloy to study their effects on theelevated-temperature properties.Results show that TiB2nanoparticles were mainly distributed at the interdendritic grain boundarieswith a size range of20?80nm,which is confirmed by transmission electron microscopy(TEM)and X-ray diffraction(XRD).Therefore,the volume fraction of the dispersoid free zones is greatly reduced and the motion of grain boundaries and dislocations isinhibited more effectively at elevated temperature.After peak precipitation heat treatment,the yield strengths in the alloy with3%TiB2addition at room temperature and300°C were increased by20%and13%respectively,while the minimum creep rate at300°Cwas reduced to only1/5of the base alloy free of TiB2,exhibiting a considerable improvement of elevated-temperature properties inAl?Mn?Mg alloys. 展开更多
关键词 Al-Mn-Mg 3004 alloy TiB2 nanoparticle dispersoid free zone elevated temperature property creep
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Sustainable solid-state synthesis of uniformly distributed PdAg alloy nanoparticles for electrocatalytic hydrogen oxidation and evolution 被引量:1
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作者 Caili Xu Qian Chen +3 位作者 Rong Ding Shengtian Huang Yun Zhang Guangyin Fan 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2021年第2期251-258,共8页
New sustainable syntheses based on solid-state strategies have sparked enormous attention and provided novel routes for the synthesis of supported metallic alloy nanocatalysts(SMACs).Despite considerable recent progre... New sustainable syntheses based on solid-state strategies have sparked enormous attention and provided novel routes for the synthesis of supported metallic alloy nanocatalysts(SMACs).Despite considerable recent progress in this field,most of the developed methods suffer from either complex operations or poorly controlled morphology,which seriously limits their practical applications.Here,we have developed a sustainable strategy for the synthesis of PdAg alloy nanoparticles(NPs)with an ultrafine size and good dispersion on various carbon matrices by directly grinding the precursors in an agate mortar at room temperature.Interestingly,no solvents or organic reagents are used in the synthesis procedure.This simple and green synthesis procedure provides alloy NPs with clean surfaces and thus an abundance of accessible active sites.Based on the combination of this property and the synergistic and alloy effects between Pd and Ag atoms,which endow the NPs with high intrinsic activity,the PdAg/C samples exhibit excellent activities as electrocatalysts for both the hydrogen oxidation and evolution reactions(HOR and HER)in a basic medium.Pd9Ag1/C showed the highest activity in the HOR with the largest j0,m value of 26.5 A g Pd^–1 and j0,s value of 0.033 mA cmPd^–2,as well as in the HER,with the lowest overpotential of 68 mV at 10 mA cm^–2.As this synthetic method can be easily adapted to other systems,the present scalable solid-state strategy may open opportunity for the general synthesis of a wide range of well-defined SMACs for diverse applications. 展开更多
关键词 Solid-state synthesis Supported metallic alloy nanoparticles ELECTROCATALYSIS Hydrogen oxidation reaction Hydrogen evolution reaction
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低碳汽车齿轮钢20CrMnTi伪渗碳过程晶粒粗化行为
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作者 伍伟 袁清 +3 位作者 莫家璇 任杰 张志成 徐光 《金属热处理》 CAS CSCD 北大核心 2024年第2期84-90,共7页
设计了一种不含Nb元素的20CrMnTi齿轮钢,通过母相奥氏体晶粒尺寸统计、析出物分布规律分析,最终探明了伪渗碳温度对齿轮钢母相奥氏体晶粒尺寸的影响规律和机理。结果表明,不含Nb元素的20CrMnTi齿轮钢最高伪渗碳温度为970℃。相比于热轧... 设计了一种不含Nb元素的20CrMnTi齿轮钢,通过母相奥氏体晶粒尺寸统计、析出物分布规律分析,最终探明了伪渗碳温度对齿轮钢母相奥氏体晶粒尺寸的影响规律和机理。结果表明,不含Nb元素的20CrMnTi齿轮钢最高伪渗碳温度为970℃。相比于热轧态,经过伪渗碳处理后,(Ti,Mo)(C,N)颗粒中C含量减少,N含量增加,证实了第二相(Ti,Mo)(C,N)颗粒发生回溶、熟化,渗碳温度较高时(980℃),细小弥散颗粒的回溶和熟化更为明显。其次,伪渗碳温度为980℃时,细小弥散的第二相(Ti,Mo)(C,N)颗粒体积分数急剧下降,大尺寸第二相(Ti,Mo)(C,N)颗粒增多,减弱了对母相奥氏体晶粒的钉扎作用,导致晶粒发生异常长大。 展开更多
关键词 20CrMnTi齿轮钢 伪渗碳处理 母相奥氏体 析出颗粒 熟化
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铜对中碳硅锰钢连续冷却相变的影响 被引量:5
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作者 安治国 孟延军 +3 位作者 史远 李建朝 孙晓冉 孙岩 《钢铁》 CAS CSCD 北大核心 2017年第12期80-85,共6页
为了探索含铜中碳硅锰钢连续冷却转变过程中的相变规律,采用DIL805L型膨胀仪研究了铜对中碳硅锰钢连续冷却过程中显微组织和硬度的影响,借助高分辨透射电镜研究了连续冷却过程中含铜相的析出行为。结果表明,在中碳硅锰钢的连续冷却过程... 为了探索含铜中碳硅锰钢连续冷却转变过程中的相变规律,采用DIL805L型膨胀仪研究了铜对中碳硅锰钢连续冷却过程中显微组织和硬度的影响,借助高分辨透射电镜研究了连续冷却过程中含铜相的析出行为。结果表明,在中碳硅锰钢的连续冷却过程中,铜的加入使得铁素体转变的孕育期延长,且降低贝氏体和马氏体开始转变温度。富铜颗粒在铁素体中弥散析出,细化连续相变组织。冷却速度小于21℃/s时,含铜中碳硅锰钢由于富铜颗粒析出以及贝氏体和马氏体组织增加引起显微硬度增加。当冷却速度大于21℃/s时,铜反而会降低钢中贝氏体和马氏体组织的显微硬度。 展开更多
关键词 中碳硅锰钢 连续冷却相变 显微组织 富铜析出颗粒
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IrNi nanoparticle-decorated flower-shaped NiCo_2O_4 nanostructures:controllable synthesis and enhanced electrochemical activity for oxygen evolution reaction 被引量:2
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作者 陈志范 赵宏滨 +1 位作者 张久俊 徐甲强 《Science China Materials》 SCIE EI CSCD 2017年第2期119-130,共12页
In this work,we demonstrated the enhanced oxygen evolution reaction(OER) activity of flower-shaped cobalt-nickel oxide(NiCo_2O_4) decorated with iridium-nickel bimetal as an electrode material.The samples were pre... In this work,we demonstrated the enhanced oxygen evolution reaction(OER) activity of flower-shaped cobalt-nickel oxide(NiCo_2O_4) decorated with iridium-nickel bimetal as an electrode material.The samples were prepared by carefully depositing pre-synthesized IrNi nanopartides on the surfaces of the NiCo_2O_4 nano-flowers.Compared with bare NiCo_2O_4,IrNi,and IrNi/Co_3O_4,the IrNi/NiCo_2O_4 exhibited significantly enhanced electrocatalytic activity in the OER,including a lower overpotential of 210 mV and a higher current density at an overpotential of 540 mV.We found that the IrNi/NiCo_2O_4 showed more efficient electron transport behavior and reduced polarization because of its bimetal IrNi modification by analyzing its Tafel slope and turnover frequency.Furthermore,the electrocatalytic mechanism of IrNi/NiCo_2O_4 in the OER was studied,and it was found that the combined active sites of the composite effectively improved the rate determining step.The synergic effect of the bimetal and metal oxide plays an important role in this reaction,enhancing the transmission efficiency of electrons and providing more active sites for the OER.The results reveal that IrNi/NiCo_2O_4 is an excellent electrocatalyst for OER. 展开更多
关键词 ELECTROCATALYSIS OER BIMETAL
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