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Mechanism of microarc oxidation on AZ91D Mg alloy induced byβ-Mg_(17)Al_(12) phase 被引量:1
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作者 Dajun Zhai Xiaoping Li Jun Shen 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2024年第4期712-724,共13页
This work proposed a strategy of indirectly inducing uniform microarc discharge by controlling the content and distribution ofβ-Mg_(17)Al_(12)phase in AZ91D Mg alloy.Two kinds of nano-particles(ZrO_(2)and TiO_(2))wer... This work proposed a strategy of indirectly inducing uniform microarc discharge by controlling the content and distribution ofβ-Mg_(17)Al_(12)phase in AZ91D Mg alloy.Two kinds of nano-particles(ZrO_(2)and TiO_(2))were designed to be added into the substrate of Mg alloy by friction stir processing(FSP).Then,Mg alloy sample designed with different precipitated morphology ofβ-Mg_(17)Al_(12)phase was treated by microarc oxidation(MAO)in Na_(3)PO_(4)/Na2SiO3electrolyte.The characteristics and performance of the MAO coating was analyzed using scanning electron microscopy(SEM),energy dispersive spectrometer(EDS),X-ray diffraction(XRD),X-ray photoelectron spectroscopy(XPS),contact angle meter,and potentiodynamic polarization.It was found that the coarseα-Mg grains in extruded AZ91D Mg alloy were refined by FSP,and theβ-Mg_(17)Al_(12)phase with reticular structure was broken and dispersed.The nano-ZrO_(2)particles were pinned at the grain boundary by FSP,which refined theα-Mg grain and promoted the precipitation ofβ-Mg_(17)Al_(12)phase in grains.It effectively inhibited the“cascade”phenomenon of microarcs,which induced the uniform distribution of discharge pores.The MAO coating on Zr-FSP sample had good wettability and corrosion resistance.However,TiO_(2)particles were hardly detected in the coating on TiFSP sample. 展开更多
关键词 AZ91D Mg alloy microarc oxidation friction stir processing ZrO_(2) TiO_(2) β-Mg_(17)Al_(12)
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Twinning behaviors of Mg-Sn alloy with basal or prismatic Mg_(2)Sn
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作者 Rui-hao FU Yang-jie WAN +6 位作者 Xun-fei XIONG Dong-di YIN Man-ping LIU Bin JIANG Zi-rong ZHOU Yu-yang GAO Ying ZENG 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2024年第9期2800-2813,共14页
The Mg-Sn alloys,with basal or prismatic Mg_(2)Sn laths,were employed to reveal the effect of precipitate orientation on twinning behavior quantitatively.The Mg-5wt.%Sn alloys with basal or prismatic Mg_(2)Sn were com... The Mg-Sn alloys,with basal or prismatic Mg_(2)Sn laths,were employed to reveal the effect of precipitate orientation on twinning behavior quantitatively.The Mg-5wt.%Sn alloys with basal or prismatic Mg_(2)Sn were compressed to study the twinning behaviors.Subsequently,an Orowan strengthening model was developed to quantitatively investigate the critical resolved shear stress(CRSS)increment of precipitates on twinning.The results revealed that the prismatic precipitates hindered the transfer and growth of tensile twins more effectively compared with the basal precipitates.The decreased proportion of tensile twins containing prismatic Mg_(2)Sn might be attributed to a larger CRSS increment for tensile twins compared with that for basal precipitates.The obvious decreased twinning transfer in the alloy with prismatic Mg_(2)Sn could be due to its higher geometrically necessary dislocation and enhanced CRSS of tensile twins.Notably,the prismatic precipitates have a better hindering effect on tensile twins during compression. 展开更多
关键词 Mg−Sn alloy orientation regulation twinning behavior Mg_(2)Sn lath Orowan strengthening
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Key technology and application of AB_(2) hydrogen storage alloy in fuel cell hydrogen supply system
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作者 Ming Yao Jianguang Yuan +3 位作者 Bao Zhang Youhua Yan Shaoxiong Zhou Ying Wu 《Materials Reports(Energy)》 EI 2024年第1期113-122,共10页
At present,there is limited research on the application of fuel cell power generation system technology using solid hydrogen storage materials,especially in hydrogen-assisted two-wheelers.Considering the disadvantages... At present,there is limited research on the application of fuel cell power generation system technology using solid hydrogen storage materials,especially in hydrogen-assisted two-wheelers.Considering the disadvantages of low hydrogen storage capacity and poor kinetics of hydrogen storage materials,our primary focus is to achieve smooth hydrogen ab-/desorption over a wide temperature range to meet the requirements of fuel cells and their integrated power generation systems.In this paper,the Ti_(0.9)Zr_(0.1)Mn_(1.45)V_(0.4)Fe_(0.15) hydrogen storage alloy was successfully prepared by arc melting.The maximum hydrogen storage capacity reaches 1.89 wt% at 318 K.The alloy has the capability to absorb 90% of hydrogen storage capacity within 50 s at 7 MPa and release 90% of hydrogen within 220 s.Comsol Multiphysics 6.0 software was used to simulate the hydrogen ab-/desorption processes of the tank.The flow rate of cooling water during hydrogen absorption varied in a gradient of(0.02 t x)m s^(-1)(x=0,0.02,0.04,0.06,0.08,0.1,0.12).Cooling water flow rate is positively correlated with the hydrogen absorption rate but negatively correlated with the cost.When the cooling rate is 0.06 m s^(-1),both simulation and experimentation have shown that the hydrogen storage tank is capable of steady hydrogen desorption for over 6 h at a flow rate of 2 L min^(-1).Based on the above conclusions,we have successfully developed a hydrogen-assisted two-wheeler with a range of 80 km and achieved regional demonstration operations in Changzhou and Shaoguan.This paper highlights the achievements of our team in the technological development of fuel cell power generation systems using solid hydrogen storage materials as hydrogen storage carriers and their application in twowheelers in recent years. 展开更多
关键词 AB_(2)hydrogen storage alloy Hydrogen storage tanks Simulation Hydrogen-electric coupling system Power-assisted two-wheelers
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Microstructure and mechanical properties of stationary shoulder friction stir welding joint of 2A14-T62 aluminum alloy
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作者 邓建峰 王博 +3 位作者 王生希 郭伟强 黄智恒 费文潘 《China Welding》 CAS 2024年第2期31-38,共8页
2A14-T62 butt joint was successfully welded by stationary shoulder friction stir welding(SSFSW)method.The results showed that using a pin with small shoulder could broaden the process window,and under a rotation speed... 2A14-T62 butt joint was successfully welded by stationary shoulder friction stir welding(SSFSW)method.The results showed that using a pin with small shoulder could broaden the process window,and under a rotation speed of 2000 r/min and welding speed of 30 mm/min,joint with smooth surface,small reduction in thickness and little inner defects was obtained.The weld nugget zone was approx-imately circular,which was a unique morphology for SSFSW.The heat-affected zone(HAZ)and thermo-mechanically affected zone(TMAZ)were both quite narrow due to the lower heat input and slight mechanical action of the stationary shoulder.The fraction of high angle grain boundaries(HAGBs)exhibited a“W”shape along horizontal direction(from advancing side to retreating side),and the minim-um value located at HAZ.The average ultimate tensile strength and elongation of the joint were 325 MPa and 4.5%,respectively,with the joint efficiency of 68.3%.The joint was ductile fractured and the fracture surface contained two types of dimples morphology in different re-gions of the joint.Microhardness distribution in the joint exhibited a“W”shape,and the difference along the thickness direction was negli-gible.The joint had strong stress corrosion cracking susceptibility,and the slow stain rate tensile strength was 139 MPa.Microcrack and Al2O3 particulates were observed at the fracture surface. 展开更多
关键词 2A14-T62 aluminum alloy stationary shoulder friction stir welding microstructure mechanical property stress corrosion cracking
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阴极电流密度对6061铝合金在含Na_(2)WO_(4)电解液中微弧氧化膜结构和耐磨性能的影响 被引量:2
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作者 邵明增 武宏 +2 位作者 杨洪波 杨蕾 王强 《表面技术》 EI CAS CSCD 北大核心 2024年第1期87-95,共9页
目的 研究恒流模式下阴极电流密度对6061铝合金在含Na2WO4的电解液中制备的微弧氧化膜厚度、形貌、相组成及耐磨性能的影响。方法 固定阳极电流密度为5.0 A/dm^(2),阴极电流密度分别为0、1.25、2.5、3.75、5.0 A/dm2,对6061铝合金进行... 目的 研究恒流模式下阴极电流密度对6061铝合金在含Na2WO4的电解液中制备的微弧氧化膜厚度、形貌、相组成及耐磨性能的影响。方法 固定阳极电流密度为5.0 A/dm^(2),阴极电流密度分别为0、1.25、2.5、3.75、5.0 A/dm2,对6061铝合金进行微弧氧化40 min。用涡流测厚仪测量了氧化膜的厚度,用扫描电镜观察了微弧氧化膜的表面形貌和截面形貌,用能谱分析仪分析了氧化膜的表面成分,用X射线衍射分析仪分析了微弧氧化膜的相组成,用往复式摩擦磨损试验机测试了氧化膜的耐磨性能。结果 随着阴极电流密度的增加,氧化膜内的W含量逐渐减少,氧化膜颜色逐渐变浅,氧化膜厚度逐渐增加。微弧氧化膜的主要组成相为α-Al2O3和γ-Al2O3。当阴极电流密度从0 A/dm2增加到3.75 A/dm2时,氧化膜内孔洞的数量和尺寸逐渐减少,孔洞到氧化膜/基体界面的距离逐渐增加,氧化膜的耐磨性能逐渐提升。当阴极电流密度为3.75 A/dm2时,氧化膜的磨损率最低,仅为1.07×10-4mm3/(N·m)。但阴极电流密度增加到5.0 A/dm2时,氧化膜表层出现孔洞和剥落,耐磨性能下降。结论 阴极电流的加入有助于增加6061铝合金微弧氧化膜的厚度,提高氧化膜的致密性和耐磨性能,但过高的阴极电流会导致氧化膜表层出现孔洞,降低耐磨性能。 展开更多
关键词 铝合金 微弧氧化 阴极电流 钨酸钠 耐磨性能
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纳米Cr_(2)O_(3)对铝合金微弧氧化膜组织和性能的影响
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作者 方琴 陈庚 +4 位作者 曾舟 李京筱 白莹莹 苗景国 王正云 《兵器材料科学与工程》 CAS CSCD 北大核心 2024年第4期77-84,共8页
在恒流模式下对7050铝合金开展微弧氧化试验。用SEM、EDS、XRD、膜层测厚仪、维氏硬度计、电化学工作站和磨损试验机等研究了不同纳米Cr_(2)O_(3)含量对7050铝合金微弧氧化陶瓷膜组织和性能的影响。结果表明:添加纳米Cr_(2)O_(3)能减小... 在恒流模式下对7050铝合金开展微弧氧化试验。用SEM、EDS、XRD、膜层测厚仪、维氏硬度计、电化学工作站和磨损试验机等研究了不同纳米Cr_(2)O_(3)含量对7050铝合金微弧氧化陶瓷膜组织和性能的影响。结果表明:添加纳米Cr_(2)O_(3)能减小陶瓷膜孔径,提升致密度,优化陶瓷膜结构;当纳米Cr_(2)O_(3)由1 g/L增至5 g/L时,陶瓷膜的厚度、硬度均先增后减;与未添加相比,添加纳米Cr_(2)O_(3)的陶瓷膜的耐蚀性和耐磨性均明显提升;陶瓷膜主要由γ-Al_(2)O_(3)相和少量的α-Al_(2)O_(3)相、莫来石相、Cr_(2)O_(3)相构成;总体来看,当纳米Cr_(2)O_(3)为3 g/L时,陶瓷膜的性能最优,厚度、显微硬度、自腐蚀电流和磨耗比分别为30.98μm、1273HV0.1、5.162×10^(-8)A/cm^(2)、0.0913%。 展开更多
关键词 微弧氧化 7050铝合金 陶瓷膜 Cr_(2)O_(3)
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Ag掺杂Mo-12Si-8.5B合金在25~600℃的摩擦学行为
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作者 胡华荣 尹果 +3 位作者 杨洪宇 郭源君 颜建辉 陈芳 《摩擦学学报(中英文)》 EI CAS CSCD 北大核心 2024年第7期884-892,共9页
本文中采用放电等离子烧结法制备了Mo-12Si-8.5B和Mo-12Si-8.5B-10%Ag这2种合金,通过高温真空摩擦磨损试验仪测试了2种合金与Al_(2)O_(3)摩擦副在25~600℃间的干摩擦学性能.结果表明:与Mo-12Si-8.5B合金相比,在25~600℃区间Mo-12Si-8.5B... 本文中采用放电等离子烧结法制备了Mo-12Si-8.5B和Mo-12Si-8.5B-10%Ag这2种合金,通过高温真空摩擦磨损试验仪测试了2种合金与Al_(2)O_(3)摩擦副在25~600℃间的干摩擦学性能.结果表明:与Mo-12Si-8.5B合金相比,在25~600℃区间Mo-12Si-8.5B-10%Ag合金表现出更低的摩擦系数和磨损率.在600℃时,Mo-12Si-8.5B-10%Ag合金的摩擦系数和磨损率均可达到最小值,其值分别为0.41和1.14×10^(-5)mm^(3)/(N·m),此时Mo-12Si-8.5B-10%Ag合金的干摩擦性能表现最佳,这与Mo-12Si-8.5B-10%Ag合金磨损表面的MoO_(3)、SiO_(2)和Ag_(2)MoO_(4)等润滑相的存在及Ag在25~600℃范围内起到的润滑效果有关.此外,在25~200℃区间,Mo-12Si-8.5B-10%Ag合金的磨损机制主要为黏着磨损和剥层磨损,在400~600℃范围内,则以黏着磨损和氧化磨损为主. 展开更多
关键词 Mo-12Si-8.5B-10%Ag合金 Al_(2)O_(3) 中低温 干摩擦 磨损机理
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2系铝合金的搅拌摩擦焊接接头微观组织与力学性能研究 被引量:1
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作者 陈平 《北京印刷学院学报》 2024年第3期32-37,共6页
采用搅拌摩擦焊对铝板进行对接焊试验,具体形式为单面焊双面成型,采用拉伸机和显微维氏硬度仪对试样进行力学性能测试,利用蔡司金相与扫描电子显微镜研究母材和焊接接头的微观组织。结果表明,在微观组织方面,前进速度不变时,随旋转速度... 采用搅拌摩擦焊对铝板进行对接焊试验,具体形式为单面焊双面成型,采用拉伸机和显微维氏硬度仪对试样进行力学性能测试,利用蔡司金相与扫描电子显微镜研究母材和焊接接头的微观组织。结果表明,在微观组织方面,前进速度不变时,随旋转速度的增加,材料焊合区的组织更均匀,晶粒尺寸更为细小均匀致密;热机影响区存在有板条状的粗大组织和细小的等轴晶,且晶粒尺寸在逐渐变小;热影响区平均晶粒尺寸呈现增大的趋势。在硬度方面,焊接接头硬度热影响区最低,搅拌焊合区次之,热机影响区位于二者之间。在拉伸方面,不同焊接工艺下试样的拉伸断裂位置均在铝合金的焊接接头处,焊接接头断口呈现比较明显的韧性断裂特征。1000r·min^(-1)及100mm/min下的焊接接头的断裂伸长率为17.1%、抗拉强度可以达到410MPa,其焊接接头的力学性能最优。由此得出结论,铝合金搅拌摩擦焊可以获得性能比较优良的焊接接头,可为其他铝合金材料的FSW焊接提供技术参考。 展开更多
关键词 搅拌摩擦焊 2系铝合金 微观组织 力学性能
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重熔对Al-Ti-La中间合金中Ti_(2)Al_(20)La相的影响
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作者 丁万武 田旭东 +4 位作者 陈建超 安家志 余海存 魏振鹏 杨成亮 《有色金属工程》 CAS 北大核心 2024年第8期56-66,共11页
通过扫描电镜、X射线衍射和电子探针等分析研究了重熔过程中不同保温时间和温度对Al-Ti-La中间合金中Ti_(2)Al_(20)La相的含量、形态尺寸和稳定性的影响。结果表明:在750℃下,随着保温时间的延长,Ti_(2)Al_(20)La相的溶解度逐渐增大,含... 通过扫描电镜、X射线衍射和电子探针等分析研究了重熔过程中不同保温时间和温度对Al-Ti-La中间合金中Ti_(2)Al_(20)La相的含量、形态尺寸和稳定性的影响。结果表明:在750℃下,随着保温时间的延长,Ti_(2)Al_(20)La相的溶解度逐渐增大,含量由未处理的20.776%下降至13.72%,形态由块状演变为圆整和细小的片状,长宽比由2.33下降至1.52;在1000℃下,保温15 min后溶解度较大,含量降低至4.5%,形态演变为尖锐的长条状,长宽比上升至2.55;溶解产生的La原子与Al在晶界处形成La-Al金属间化合物(IMC),Ti原子在基体中的分布密度随保温时间的延长和保温温度的升高而增高,以游离态均匀分布在基体中。 展开更多
关键词 Al-Ti-La合金 Ti_(2)Al_(20)La 重熔 保温时间
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Mo_(2)C-TiN_(0.3)复合材料的高温高压制备及性能
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作者 邹芹 王宽 +2 位作者 李艳国 戴伟绩 罗永安 《金刚石与磨料磨具工程》 CAS 北大核心 2024年第4期440-448,共9页
将Mo_(2)C和TiN_(0.3)粉体采用机械合金化和高温高压烧结相结合的方法进行分层烧结,并制备30%Mo_(2)C-70%TiN_(0.3)的烧结体复合材料,分析Mo_(2)C-TiN_(0.3)烧结体的物相组成、微观组织结构及力学性能。结果表明:Mo_(2)C和TiN_(0.3)间... 将Mo_(2)C和TiN_(0.3)粉体采用机械合金化和高温高压烧结相结合的方法进行分层烧结,并制备30%Mo_(2)C-70%TiN_(0.3)的烧结体复合材料,分析Mo_(2)C-TiN_(0.3)烧结体的物相组成、微观组织结构及力学性能。结果表明:Mo_(2)C和TiN_(0.3)间存在明显的相互扩散,且形成了2层不同的扩散层;随着烧结温度不断升高,Mo_(2)C-TiN_(0.3)烧结体的晶粒尺寸逐渐变大,会导致烧结体的机械性能变差;在烧结过程中有高硬高脆的MoC生成,能够维持Mo_(2)C-TiN_(0.3)烧结体的硬度在19.0~20.0 GPa,但会降低其断裂韧性。 展开更多
关键词 TiN_(0.3) Mo_(2)C 扩散 高温高压烧结 机械合金化
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CeO_(2)添加量对电弧增材制造铁基形状记忆合金组织和性能的影响
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作者 尹小琴 朱建 +2 位作者 唐第东 王宏宇 黄金雷 《机械工程材料》 CAS CSCD 北大核心 2024年第4期83-88,共6页
采用粉芯丝材+电弧增材制造技术制备了含不同质量分数(0,1%,2%,3%)CeO_(2)的Fe-14Mn-6Si-9Cr-5Ni铁基形状记忆合金,研究了CeO_(2)添加量对试验合金显微组织和形状记忆性能的影响。结果表明:添加质量分数1%的CeO_(2)后,合金晶内析出相减... 采用粉芯丝材+电弧增材制造技术制备了含不同质量分数(0,1%,2%,3%)CeO_(2)的Fe-14Mn-6Si-9Cr-5Ni铁基形状记忆合金,研究了CeO_(2)添加量对试验合金显微组织和形状记忆性能的影响。结果表明:添加质量分数1%的CeO_(2)后,合金晶内析出相减少,晶界处析出较大尺寸的稀土化合物,组织均匀,弯曲变形后未出现ε马氏体跨晶生长现象,且马氏体交叉状态较少;当CeO_(2)质量分数增加至2%和3%时,晶内析出相增多,分布均匀性变差,且在弯曲变形后ε马氏体跨晶生长和交叉特征增多;随着CeO_(2)添加量增加,试验合金的晶粒尺寸减小,层错概率增大,形状回复率先增大后减小,当CeO_(2)质量分数为1%时晶粒尺寸较小,层错概率较大,形状回复率最大,形状记忆性能最好。 展开更多
关键词 铁基形状记忆合金 电弧增材制造 CeO_(2) 粉芯丝材 钉扎效应
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Ti_(2)AlNb合金粉末热等静压成形的组织和性能
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作者 吴杰 朱旭晖 +3 位作者 尹一峰 尚学文 卢正冠 徐磊 《航空制造技术》 CSCD 北大核心 2024年第17期50-58,共9页
分别采用等离子旋转电极雾化法(Plasma rotating electrode process,PREP)和无坩埚感应熔炼超声气体雾化法(Electrode induction melting gas atomization,EIGA)制备了Ti_(2)AlNb洁净预合金粉末,并对预合金粉末进行了表征。通过热等静压... 分别采用等离子旋转电极雾化法(Plasma rotating electrode process,PREP)和无坩埚感应熔炼超声气体雾化法(Electrode induction melting gas atomization,EIGA)制备了Ti_(2)AlNb洁净预合金粉末,并对预合金粉末进行了表征。通过热等静压(Hot isostatic pressing,HIP)工艺制备了Ti_(2)AlNb合金,研究了制粉工艺对Ti_(2)AlNb合金显微组织与力学性能的影响。试验结果表明,与PREP法相比,EIGA法制备的Ti_(2)AlNb粉末振实密度更高;基于粉末热等静压近净成形技术,在1030℃/140 MPa/3 h的条件下开展了Ti_(2)AlNb叶轮的成形研究,有限元模拟结果显示,粉末振实密度越高,部件热等静压后变形程度越小,综合考虑构件成形,优选振实密度更高的EIGA制粉工艺制备Ti_(2)AlNb粉末合金复杂部件。 展开更多
关键词 Ti_(2)AlNb合金 粉末冶金 热等静压 近净成形 有限元仿真
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Cu-Zn-based alloy/oxide interfaces for enhanced electroreduction of CO_(2) to C_(2+) products 被引量:6
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作者 Zi-Yang Zhang Hao Tian +3 位作者 Lei Bian Shi-Ze Liu Yuan Liu Zhong-Li Wang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2023年第8期90-97,I0004,共9页
The electrochemical CO_(2)reduction reaction to produce multi-carbon(C_(2+)) hydrocarbons or oxygenate compounds is a promising route to obtain a renewable fuel of high energy density.However,producing C_(2+)at high c... The electrochemical CO_(2)reduction reaction to produce multi-carbon(C_(2+)) hydrocarbons or oxygenate compounds is a promising route to obtain a renewable fuel of high energy density.However,producing C_(2+)at high current densities is still a challenge.Herein,we develop a Cu-Zn alloy/Cu-Zn aluminate oxide composite electrocatalytic system for enhanced conversion of CO_(2)to C_(2+)products.The Cu-Zn-Al-Layered Double Hydroxide(LDH) is used as a precursor to decompose into uniform Cu-Zn oxide/Cu-Zn aluminate pre-catalyst.Under electrochemical reduction,Cu-Zn oxide generates Cu-Zn alloy while Cu-Zn aluminate oxide remains unchanged.The alloy and oxide are closely stacked and arranged alternately,and the aluminate oxide induces the strong electron interaction of Cu,Zn and Al,creating a large number of highly active reaction interfaces composed of 0 to+3 valence metal sites.With the help of the interface effect,the optimized Cu_(9)Zn_(1)/Cu_(0.8)Zn_(0.2)Al_(2)O_(4)catalyst achieves a Faradaic efficiency of 88.5% for C_(2+)products at a current density of 400 mA cm^(-2)at-1.15 V versus reversible hydrogen electrode.The in-situ Raman and attenuate total reflectance-infrared absorption spectroscopy(ATR-IRAS) spectra show that the aluminate oxide at the interface significantly enhances the adsorption and activation of CO_(2)and the dissociation of H2O and strengthens the adsorption of CO intermediates,and the alloy promotes the C-C coupling to produce C_(2+)products.This work provides an efficient strategy to construct highly active reaction interfaces for industrial-scale electrochemical CO_(2)RR. 展开更多
关键词 Electrochemical CO_(2)reduction reaction C_(2+)products Cu-Zn alloy Cu-Zn aluminate oxide Interface
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Effects of Ce content on the modification of Mg_(2)Si phase in Mg-5Al-2Si alloy 被引量:3
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作者 Bo Hu Wen-Jie Zhu +4 位作者 Zi-Xin Li Seul Bi Lee De-Jiang Li Xiao-Qin Zeng Yoon Suk Choi 《Journal of Magnesium and Alloys》 SCIE EI CAS CSCD 2023年第7期2299-2311,共13页
The effect of Ce content(0–1.6 wt.%)on the modification of Mg_(2)Si phase in the as-cast Mg-5Al-2Si alloy was investigated.The original Chinese script type Mg_(2)Si phase was refined distinctly and transformed to dis... The effect of Ce content(0–1.6 wt.%)on the modification of Mg_(2)Si phase in the as-cast Mg-5Al-2Si alloy was investigated.The original Chinese script type Mg_(2)Si phase was refined distinctly and transformed to dispersive block shape gradually by adding Ce element.The length of Chinese script type Mg_(2)Si phase was reduced from 110 to 50μm with increasing Ce content to 1.6 wt.%.The results calculated by Pandat software indicated that the added Ce element first combined with Si to form CeSi_(2)phase,which could serve as the heterogeneous nucleation of Mg_(2)Si phase due to the small lattice mismatch of 7.97%.The modification of Mg_(2)Si phase was mainly attributed to the facts that Ce changed the growth steps of Mg_(2)Si phase and CeSi_(2)promoted the nucleation of Mg_(2)Si phase.With increasing Ce content from 0 wt.%to 1.6 wt.%,the YS,UTS and EL at 150℃were improved from 67.7 MPa,91.2 MPa and 1.6%to 84.2 MPa,128 MPa and 7.5%,respectively. 展开更多
关键词 Mg-Al-Si alloys Mg_(2)Si modification Heterogeneous nucleation Mechanical properties
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织构化钛合金表面MoS_(2)薄膜的制备及其微动摩擦学性能研究 被引量:1
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作者 赵乾程 曹文辉 +3 位作者 宋俊杰 胡天昌 贾小斌 胡丽天 《摩擦学学报(中英文)》 EI CAS CSCD 北大核心 2024年第6期842-853,共12页
钛合金作为1种性能优异的轻金属结构材料,其较差的耐磨性限制了钛合金在摩擦学领域的应用.本文中通过将表面织构化与固体润滑薄膜相结合在钛合金表面制备了MoS_(2)复合润滑薄膜,考察了织构参数以及摩擦对偶材料对其微动摩擦学行为的影响... 钛合金作为1种性能优异的轻金属结构材料,其较差的耐磨性限制了钛合金在摩擦学领域的应用.本文中通过将表面织构化与固体润滑薄膜相结合在钛合金表面制备了MoS_(2)复合润滑薄膜,考察了织构参数以及摩擦对偶材料对其微动摩擦学行为的影响.研究表明:当摩擦对偶为GCr15球时,表面织构化与固体润滑剂相结合能显著减小材料的磨损和延长润滑寿命,织构密度为20%的样品表面容易形成转移膜,润滑寿命最长.而当摩擦对偶为TC4球时,在相同测试条件下,表面复合结构的抗磨寿命远低于摩擦对偶为GCr15球时的寿命.摩擦对偶材料影响着复合润滑结构的润滑寿命,表面织构能够起到补充固体润滑剂和捕获磨屑的作用,从而达到抗磨减摩的目的,同时适宜的织构密度能明显延长复合润滑结构的微动寿命. 展开更多
关键词 钛合金 表面织构 MoS_(2)润滑 微动 摩擦对偶
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Accelerated prediction of Cu-based single-atom alloy catalysts for CO_(2) reduction by machine learning 被引量:2
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作者 Dashuai Wang Runfeng Cao +5 位作者 Shaogang Hao Chen Liang Guangyong Chen Pengfei Chen Yang Li Xiaolong Zou 《Green Energy & Environment》 SCIE EI CAS CSCD 2023年第3期820-830,共11页
Various strategies,including controls of morphology,oxidation state,defect,and doping,have been developed to improve the performance of Cu-based catalysts for CO_(2) reduction reaction(CO_(2)RR),generating a large amo... Various strategies,including controls of morphology,oxidation state,defect,and doping,have been developed to improve the performance of Cu-based catalysts for CO_(2) reduction reaction(CO_(2)RR),generating a large amount of data.However,a unified understanding of underlying mechanism for further optimization is still lacking.In this work,combining first-principles calculations and machine learning(ML)techniques,we elucidate critical factors influencing the catalytic properties,taking Cu-based single atom alloys(SAAs)as examples.Our method relies on high-throughput calculations of 2669 CO adsorption configurations on 43 types of Cu-based SAAs with various surfaces.Extensive ML analyses reveal that low generalized coordination numbers and valence electron number are key features to determine catalytic performance.Applying our ML model with cross-group learning scheme,we demonstrate the model generalizes well between Cu-based SAAs with different alloying elements.Further,electronic structure calculations suggest surface negative center could enhance CO adsorption by back donating electrons to antibonding orbitals of CO.Finally,several SAAs,including PCu,AgCu,GaCu,ZnCu,SnCu,GeCu,InCu,and SiCu,are identified as promising CO_(2)RR catalysts.Our work provides a paradigm for the rational design and fast screening of SAAs for various electrocatalytic reactions. 展开更多
关键词 Cu-based single-atom alloy CO adsorption Machine learning First principles CO_(2)reduction reaction
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Assessment of Mg(OH)_(2)/TiO_(2) coating in the Mg-Ca-Zn alloy for improved corrosion resistance and antibacterial performance 被引量:1
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作者 Leonardo Hernández Jesús Ramón-Sierra +4 位作者 Montserrat Soria-Castro Ángel Bacelis Geonel Rodríguez-Gattorno Elizabeth Ortiz-Vázquez Gloria Acosta 《Journal of Magnesium and Alloys》 SCIE EI CAS CSCD 2023年第1期361-378,共18页
The high activity of metallic magnesium and alloys limits its potential in biomedical applications;in recent years,extensive efforts have been devoted to modulating this reactivity.In this work,we present Mg(OH)_(2) a... The high activity of metallic magnesium and alloys limits its potential in biomedical applications;in recent years,extensive efforts have been devoted to modulating this reactivity.In this work,we present Mg(OH)_(2) and TiO_(2)barrier coatings to reduce the degradation of magnesium alloy(Mg-Ca-Zn)surfaces.These coatings were deposited by the anodization method and the spin-coating technique,respectively.The anodized layer was coated with TiO_(2)generated from the hydrolysis of 3%weight of TTIP(Ti[OCH(CH_(3))_(2)]_(4),Titanium(IV)isopropoxide)in 2-Propanol deposited by the spin-coating method.Studying the degradation in Ringer’s solution by electrochemical impedance spectroscopy and OCP revealed a 98%reduction in pittings in uncoated samples after 14 days of immersion.The p H measurements revealed that the TiO_(2)coating reduced the alkalization of the physiological environment,keeping the pH at 6.0 values.In vitro studies of two types of bacteria(E.coli and S.aureus)exhibited zones of inhibition in the agar and activity bactericidal(kill time test).The mechanisms behind the improved degradation resistance and enhanced antibacterial activity are presented and discussed here.Surface modification with Mg(OH)_(2)/TiO_(2)coatings is a promising strategy to control the biodegradation of magnesium implants for bone regeneration. 展开更多
关键词 Magnesium alloy EIS Mg(OH)_(2) TiO_(2) Antibacterial coatings
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合金冷墩钢10B21钢水流动性生产实践研究
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作者 吴红广 蔺学浩 《福建冶金》 2024年第5期14-16,共3页
针对安钢合金冷墩钢10B21因钢水流动性差造成生产事故,分析了水口堵塞原因,并提出了改进措施,通过提高转炉终点碳、降低转炉冶炼后期点吹比例、控制转炉下渣量、优化精炼操作等措施,钢水的流动性明显改善,生产事故大幅度降低。
关键词 合金冷墩钢 钢水流动性 TIN Ti_(2)O_(3)
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CeO_(2)颗粒对7075铝合金微弧氧化膜生长行为及耐磨/耐蚀性能的影响 被引量:1
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作者 詹中伟 张骐 +6 位作者 刘小辉 王帅星 庞志伟 孙志华 葛玉麟 王琪超 杜楠 《表面技术》 EI CAS CSCD 北大核心 2024年第17期71-82,共12页
目的通过CeO_(2)颗粒复合,进一步改善铝合金微弧氧化膜的耐磨和耐蚀性能。方法在硅酸盐-磷酸盐电解液体系中加入CeO_(2)颗粒,利用微弧氧化技术在7075-T6铝合金表面制备CeO_(2)颗粒复合氧化膜;从氧化电压、放电行为及膜层厚度的变化规律... 目的通过CeO_(2)颗粒复合,进一步改善铝合金微弧氧化膜的耐磨和耐蚀性能。方法在硅酸盐-磷酸盐电解液体系中加入CeO_(2)颗粒,利用微弧氧化技术在7075-T6铝合金表面制备CeO_(2)颗粒复合氧化膜;从氧化电压、放电行为及膜层厚度的变化规律探讨CeO_(2)颗粒含量对微弧氧化膜生长过程的影响;通过扫描电子显微镜、动电位极化曲线、球-盘磨损试验等研究电解液中CeO_(2)颗粒浓度对微弧氧化膜微观结构、耐磨性能和耐蚀性能的影响。结果通过CeO_(2)颗粒的复合,改变了铝合金微弧氧化成膜过程的能耗分布,加速了微弧氧化膜的放电击穿。CeO_(2)颗粒复合会使膜层的生长速率有所下降,但氧化膜的致密性、均匀性及膜基的结合强度得到明显改善。CeO_(2)颗粒主要以熔融和嵌合等方式存在于氧化膜中。相较于普通微弧氧化膜,复合膜的摩擦因数普遍降低了约0.2,比磨损率也更低,耐磨性更佳。此外,复合膜呈现出更好的耐腐蚀性,其自腐蚀电流密度至少下降了50%,且在模拟海水中浸泡2000 h后腐蚀增重更小、腐蚀更轻微。在电解液中加入10 g/L的CeO_(2)颗粒时,所得复合膜的综合性能较佳。结论CeO_(2)颗粒复合以熔融或嵌合的方式沉积到铝合金微弧氧化膜中,有效减少了膜层的微孔等缺陷,提高了膜层的致密性和硬度,改善了膜层的耐蚀性和耐磨性。 展开更多
关键词 7075-T6铝合金 微弧氧化 CeO_(2)颗粒 硬度 耐磨性 耐蚀性
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CuGa_(2)前驱体合金的制备和去合金化过程中纳米多孔铜的形成
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作者 周玉鑫 胡劲 +3 位作者 朱家军 王开军 段云彪 张维钧 《材料科学与工程学报》 CAS CSCD 北大核心 2024年第5期782-789,共8页
在220℃的加热条件下制备前驱体CuGa_(2)合金,运用化学腐蚀与电化学腐蚀两种去合金方法制备纳米多孔铜,分析不同浓度的腐蚀介质对多孔结构形成的影响,并分别用扫描电子显微镜(SEM)、X射线衍射(XRD)、能量色散X射线光谱(EDS)和电感耦合... 在220℃的加热条件下制备前驱体CuGa_(2)合金,运用化学腐蚀与电化学腐蚀两种去合金方法制备纳米多孔铜,分析不同浓度的腐蚀介质对多孔结构形成的影响,并分别用扫描电子显微镜(SEM)、X射线衍射(XRD)、能量色散X射线光谱(EDS)和电感耦合等离子体质谱仪(ICP-Ms)分析样品的相组成和微观形貌。结果表明,合金化过程中以甲基硅油作为防氧化保护介质可获得前驱体CuGa_(2)合金;不同腐蚀介质对纳米多孔铜的形成有显著影响。在电化学腐蚀过程中,由于不同溶液中Cu,Ga与CuGa_(2)的平衡电位不同对纳米多孔铜的形成影响显著,1M HCl溶液中CuGa_(2)的平衡电位与Cu的平衡电位相近,Ga、Cu原子会共同溶解导致无法形成多孔结构;1M NaOH溶液中Cu与CuGa_(2)的平衡电位的电位差较大,可进行充分腐蚀获得多孔结构,形成的多孔孔隙分布杂乱且不均匀,孔径范围为120 nm~1μm。前驱体合金经1M HCl溶液的化学腐蚀,由于H^(+)的腐蚀作用,Cl^(-)促进Cu原子的扩散重排,获得的多孔纳米铜形貌与结构更加清晰均匀且连续,其孔径范围为20~100 nm。 展开更多
关键词 合金化 CuGa 2合金 腐蚀介质 去合金 纳米多孔铜
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