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Electrochemical hydrogen storage characteristics of nanocrystalline and amorphous Mg_2Ni-type alloys prepared by melt-spinning 被引量:3
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作者 张羊换 吕科 +3 位作者 赵栋梁 郭世海 祁焱 王新林 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2011年第3期502-511,共10页
The nanocrystalline and amorphous Mg2Ni-type alloys with nominal compositions of Mg2Ni1-xMnx (x=0, 0.1, 0.2, 0.3, 0.4) were synthesized by melt-spinning technique. The spun alloy ribbons with a continuous length, a ... The nanocrystalline and amorphous Mg2Ni-type alloys with nominal compositions of Mg2Ni1-xMnx (x=0, 0.1, 0.2, 0.3, 0.4) were synthesized by melt-spinning technique. The spun alloy ribbons with a continuous length, a thickness of about 30 μm and a width of about 25 mm are obtained. The structures of the as-spun alloy ribbons were characterized by XRD and HRTEM. The electrochemical hydrogen storage characteristics of the as-spun alloy ribbons were measured by an automatic galvanostatic system. The electrochemical impedance spectrums (EIS) were plotted by an electrochemical workstation. The hydrogen diffusion coefficients (D) in the alloys were calculated by virtue of potential-step measurement. The results show that all the as-spun (x=0) alloys hold a typical nanocrystalline structure, whereas the as-spun (x=0.4) alloy displays a nanocrystalline and amorphous structure, confirming that the substitution of Mn for Ni facilitates the glass formation in the Mg2Ni-type alloy. The substitution of Mn for Ni significantly improves the electrochemical hydrogen storage performances of the alloys, involving the discharge capacity and the electrochemical cycle stability. With an increase in the amount of Mn substitution from 0 to 0.4, the discharge capacity of the as-spun (20 m/s) alloy increases from 96.5 to 265.3 mA·h/g, and its capacity retaining rate (S20) at the 20th cycle increases from 31.3% to 70.2%. Furthermore, the high rate dischargeability (HRD), electrochemical impedance spectrum and potential-step measurements all indicate that the electrochemical kinetics of the alloy electrodes first increases then decreases with raising the amount of Mn substitution. 展开更多
关键词 Mg2ni-type alloy electrochemical hydrogen storage MELT-SPINNING substituting Ni with Mn
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Gaseous and Electrochemical Hydrogen Storage Kinetics of As-quenched Nanocrystalline and Amorphous Mg_2Ni-type Alloys 被引量:4
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作者 张羊换 YANG Tai +3 位作者 SHANG Hongwei ZHANG Guofang CAI Ying ZHAO Dongliang 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2013年第3期604-611,共8页
The nanocrystalline and amorphous Mg2Ni-type Mg2Ni1-xCox (x = 0, 0.1, 0.2, 0.3, 0.4) alloys were synthesized by melt quenching technology. The structures of the as-cast and quenched alloys were characterized by XRD,... The nanocrystalline and amorphous Mg2Ni-type Mg2Ni1-xCox (x = 0, 0.1, 0.2, 0.3, 0.4) alloys were synthesized by melt quenching technology. The structures of the as-cast and quenched alloys were characterized by XRD, SEM and HRTEM. The gaseous hydrogen storage kinetics of the alloys was measured using an automatically controlled Sieverts apparatus. The alloy electrodes were charged and discharged with a constant current density in order to investigate the electrochemical hydrogen storage kinetics of the alloys. The results demonstrate that the substitution of Co for Ni results in the formation of secondary phases MgCo2 and Mg instead of altering the major phase Mg2Ni. No amorphous phase is detected in the as-quenched Co- ffee alloy, however, a certain amount of amorphous phase is clearly found in the as-quenched alloys substituted by Co. Furthermore, both the rapid quenching and the Co substitution significantly improve the gaseous and electrochemical hydrogen storage kinetics of the alloys, for which the notable increase of the hydrogen diffusion coefficient (D) along with the limiting current density (IL) and the obvious decline of the electrochemical impedance generated by both the Co substitution and the rapid quenching are basically responsible. 展开更多
关键词 Mg2ni-type alloy rapid quenching substituting Ni with Co hydrogen storage kinetics
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Influences of melt spinning on electrochemical hydrogen storage performance of nanocrystalline and amorphous Mg_2Ni-type alloys 被引量:4
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作者 张羊换 李保卫 +3 位作者 任慧平 侯忠辉 胡峰 王新林 《Journal of Central South University》 SCIE EI CAS 2011年第6期1825-1832,共8页
In order to improve the electrochemical hydrogen storage performance of the Mg2Ni-type electrode alloys, Mg in the alloy was partially substituted by La, and the nanocrystalline and amorphous Mg2Ni-type Mg20-xLaxNi10 ... In order to improve the electrochemical hydrogen storage performance of the Mg2Ni-type electrode alloys, Mg in the alloy was partially substituted by La, and the nanocrystalline and amorphous Mg2Ni-type Mg20-xLaxNi10 (x-=0, 2) alloys were synthesized by melt-spinning technique. The microstructures of the as-spun alloys were characterized by X-ray diffraction (XRD), scanning electron microscopy (SEM) and transmission electron microscopy (TEM). The electrochemical hydrogen storage properties of the experimental alloys were tested. The results show that no amorphous phase is detected in the as-spun Mg20Ni10 alloy, but the as-spun Mg18La2Ni10 alloy holds a major amorphous phase. As La content increases from 0 to 2, the maximum discharge capacity of the as-spun (20 m/s) alloys rises from 96.5 to 387.1 mA.h/g, and the capacity retaining rate (S20) at the 20th cycle grows from 31.3% to 71.7%. Melt-spinning engenders an impactful effect on the electrochemical hydrogen storage performances of the alloys. With the increase in the spinning rate from 0 to 30 m/s, the maximum discharge capacity increases from 30.3 to 135.5 mA.h/g for the Mg20Ni10 alloy, and from 197.2 to 406.5 mA-h/g for the Mg18La2Ni10 alloy. The capacity retaining rate (S20) of the Mg2oNi10 alloy at the 20th cycle slightly falls from 36.7% to 27.1%, but it markedly mounts up from 37.3% to 78.3% for the Mg18La2Ni10 alloy. 展开更多
关键词 Mg2ni-type hydrogen storage alloy MELT-SPINNING STRUCTURE electrochemical performance
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Influence of substituting Ni with Co on hydriding and dehydriding kinetics of melt spun nanocrystalline and amorphous Mg_2Ni-type alloys 被引量:2
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作者 张羊换 赵栋梁 +3 位作者 李保卫 马志鸿 郭世海 王新林 《Journal of Central South University》 SCIE EI CAS 2011年第2期303-309,共7页
In order to improve the hydriding and dehydriding kinetics of the Mg2Ni-type alloys,Ni in the alloy is substituted by element Co. The nanocrystalline and amorphous Mg2Ni-type Mg2Ni1-xCox (x=0,0.1,0.2,0.3,0.4) alloys w... In order to improve the hydriding and dehydriding kinetics of the Mg2Ni-type alloys,Ni in the alloy is substituted by element Co. The nanocrystalline and amorphous Mg2Ni-type Mg2Ni1-xCox (x=0,0.1,0.2,0.3,0.4) alloys were synthesized by melt-spinning technique. The structures of the as-cast and spun alloys were studied with an X-ray diffractometer (XRD) and a high resolution transmission electronic microscope (HRTEM). An investigation on the thermal stability of the as-spun alloys was carried out with a differential scanning calorimeter (DSC). The hydrogen absorption and desorption kinetics of the alloys were measured with an automatically controlled Sieverts apparatus. The results demonstrate that the substitution of Co for Ni does not alter the major phase of Mg2Ni but results in the formation of secondary phase MgCo2. No amorphous phase is detected in the as-spun Co-free alloy,but a certain amount of amorphous phase is clearly found in the as-spun Co-containing alloys. The substitution of Co for Ni exerts a slight influence on the hydriding kinetics of the as-spun alloy. However,it dramatically enhances the dehydriding kinetics of the as-cast and spun alloys. As Co content (x) increases from 0 to 0.4,the hydrogen desorption capacity increases from 0.19% to 1.39% (mass fraction) in 20 min for the as-cast alloy,and from 0.89% to 2.18% (mass fraction) for the as-spun alloy (30 m/s). 展开更多
关键词 Mg2ni-type alloy MELT-SPINNING substituting Ni Co structure HYDRIDING dehydriding KINETICS
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An investigation of hydrogen storage kinetics of melt-spun nanocrystalline and amorphous Mg_2Ni-type alloys 被引量:3
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作者 张羊换 祁焱 +3 位作者 赵栋梁 郭世海 马志鸿 王新林 《Journal of Rare Earths》 SCIE EI CAS CSCD 2011年第1期87-93,共7页
The nanocrystalline and amorphous Mg2Ni-type Mg2- xLaxNi (x=0, 0.2) hydrogen storage alloys were synthesized by melt-spinning technique. The as-spun alloy ribbons were obtained. The microstructures of the as-spun ri... The nanocrystalline and amorphous Mg2Ni-type Mg2- xLaxNi (x=0, 0.2) hydrogen storage alloys were synthesized by melt-spinning technique. The as-spun alloy ribbons were obtained. The microstructures of the as-spun ribbons were characterized by X-ray diffraction (XRD), high resolution transmission electronic microscopy (HRTEM) and electron diffraction (ED). The hydrogen absorption and desorption kinetics of the alloys were measured using an automatically controlled Sieverts apparatus, and their electrochemical kinetics were tested by an automatic galvanostatic system. The electrochemical impedance spectrums (EIS) were plotted by an electrochemical workstation (PARSTAT 2273). The hydrogen diffusion coefficients in the alloys were calculated by virtue of potential-step method. The obtained results showed that no amorphous phase was detected in the as-spun La-free alloy, but the as-spun alloys substituted by La held a major amorphous phase, con- firming that the substitution of La for Mg markedly intensified the glass forming ability of the Mg2Ni-type alloy. The substitution of La for Mg notably improved the electrochemical hydrogen storage kinetics of the Mg2Ni-type alloy. Furthermore, the hydrogen storage kinetics of the experimental alloys was evidently ameliorated with the spinning rate growing. 展开更多
关键词 Mg2ni-type hydrogen storage alloy MELT-SPINNING substituting Mg with La hydrogen storage kinetics rare earths
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Gaseous and electrochemical hydrogen storage behaviors of nanocrystalline and amorphous Nd-added Mg_2Ni-type alloys 被引量:2
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作者 Yang-Huan Zhang Sheng-Long Liu +3 位作者 Tai Yang Guo-Fang Zhang Xia Li Dong-Liang Zhao 《Rare Metals》 SCIE EI CAS CSCD 2015年第7期463-471,共9页
Melt spinning technology was used to prepare the Mg2Ni-type(Mg24Ni10Cu2)100-xNdx(x = 0, 5, 10, 15,20) alloys in order to obtain a nanocrystalline and amorphous structure.The effects of the spinning rate on the structu... Melt spinning technology was used to prepare the Mg2Ni-type(Mg24Ni10Cu2)100-xNdx(x = 0, 5, 10, 15,20) alloys in order to obtain a nanocrystalline and amorphous structure.The effects of the spinning rate on the structures and gaseous and electrochemical hydrogen storage behaviors of the alloys were investigated.The analysis of X-ray diffraction(XRD), transmission electron microscope(TEM), and scanning electron microscope(SEM) linked with energy-dispersive spectroscopy(EDS)reveals that all the as-cast alloys hold a multiphase structure, involving the main phase Mg2 Ni and some secondary phases such as Mg6 Ni, Nd5Mg41, and Nd Ni.The as-spun Nd-free alloy displays an entire nanocrystalline structure,whereas the as-spun Nd-added alloys hold a nanocrystalline and amorphous structure, and the amorphization degree visibly increases with the spinning rate increasing.The melt spinning ameliorates the hydrogen storage performances of the alloys dramatically.When the spinning rate rises from 0(the as-cast was defined as the spinning rate of 0 m s-1) to 40 m s-1, the discharge capacity increases from 86.4 to 452.8 m Ah g-1, the S20(the capacity maintain rate at 20 th cycle) value increases from53.2 % to 89.7 %, the hydrogen absorption saturation ratio(Ra5, a ratio of the hydrogen absorption quantity in 5 min to the saturated hydrogen absorption capacity) increases from36.9 % to 91.5 %, and the hydrogen desorption ratio(Rd10,a ratio of the hydrogen desorption quantity in 10 min to the saturated hydrogen absorption capacity) increases from16.4 % to 47.7 % for the(x = 10) alloy, respectively. 展开更多
关键词 Mg2ni-type alloy Element addition Melt spinning NA
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Influence of rapid quenching on hydrogen storage characteristics of nanocrystalline Mg_2Ni-type alloys 被引量:2
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作者 张羊换 赵栋梁 +3 位作者 李保卫 郭世海 祁焱 王新林 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2010年第8期1439-1446,共8页
Nanocrystalline Mg2Ni-type alloys with nominal compositions of Mg20Ni10–xCux(x=0,1,2,3,4,mass fraction,%) were synthesized by rapid quenching technique.The microstructures of the as-cast and quenched alloys were char... Nanocrystalline Mg2Ni-type alloys with nominal compositions of Mg20Ni10–xCux(x=0,1,2,3,4,mass fraction,%) were synthesized by rapid quenching technique.The microstructures of the as-cast and quenched alloys were characterized by XRD,SEM and HRTEM.The electrochemical hydrogen storage performances were tested by an automatic galvanostatic system.The hydriding and dehydriding kinetics of the alloys were measured using an automatically controlled Sieverts apparatus.The results show that all the as-quenched alloys hold the typical nanocrystalline structure and the rapid quenching does not change the major phase Mg2Ni.The rapid quenching significantly improves the electrochemical hydrogen storage capacity of the alloys,whereas it slightly impairs the cycling stability of the alloys.Additionally,the hydrogen absorption and desorption capacities of the alloys significantly increase with rising quenching rate. 展开更多
关键词 Mg2ni-type alloy rapid quenching hydrogen storage characteristic
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Highly Improved Gaseous Hydrogen Storage Characteristics of the Nanocrystalline and Amorphous Nd-Cu-added Mg_2Ni-type Alloys by Melt Spinning 被引量:1
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作者 Yanghuan Zhang Tingting Zhai +3 位作者 Baowei Li Huiping Ren Wengang Bu Dongliang Zhao 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2014年第10期1020-1026,共7页
The nanocrystalline and amorphous Mg-Nd-Ni-Cu quaternary alloys with a composition of (Mg24Ni10Cu2)loo-xNdx (x = 0-20) were prepared by melt spinning. The X-ray diffraction and transmission electron microscopy ins... The nanocrystalline and amorphous Mg-Nd-Ni-Cu quaternary alloys with a composition of (Mg24Ni10Cu2)loo-xNdx (x = 0-20) were prepared by melt spinning. The X-ray diffraction and transmission electron microscopy inspections reveal that, by varying the spinning rate and the Nd content, different microstructures could be obtained by melt spinning. Particularly, the as-spun Nd-free alloy holds an entire nanocrystalline structure but the as-spun Nd-added alloy has a nanocrystalline and amorphous structure, which implies that the addition of Nd facilitates the glass forming in the Mg2Ni-type alloy. Also, the degree of the amorphization in the as-spun Nd-added alloys clearly increases with increasing the spinning rate and the Nd content. The H-storage capacity and the hydrogenation kinetics of amorphous, partially and completely nanocrystalline alloys were investigated and it was found that they are dependent on the microstructure and the phase composition of the alloys. Specially, enhancing the spinning rate from 0 (the as-cast was defined as the spinning rate of 0 m/s) to 40 m/s makes the hydrogen absorption saturation ratio (R5a) (a ratio of the hydrogen absorption quantity in 5 min to the saturated hydrogen absorption capacity) increase from 35.2% to 90.3% and the hydrogen desorption ratio (R10d) (a ratio of the hydrogen desorption quantity in 10 min to the saturated hydrogen absorption capacity) rise from 12.7% to 44.9% for the (x = 5) alloy. And the growing of the Nd content from 0 to 20 gives rise to the R5a and R10d values rising from 85.7% to 94.5% and from 36.7% to 54.8% for the as-spun (30 m/s) alloys, respectively. 展开更多
关键词 Mg2ni-type alloy Nd addition Melt spinning STRUCTURES Hydrogen storage
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Electrochemical Performance of Nanocrystalline and Amorphous Mg–Nd–Ni–Cu-Based Mg_2Ni-type Alloy Electrodes Used in Ni-MH Batteries 被引量:1
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作者 Yanghuan Zhang Haitao Wang +3 位作者 Xiaoping Dong Wengang Bu Zeming Yuan Guofang Zhang 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2014年第6期1088-1098,共11页
Nanocrystalline and amorphous Mg2Ni-type(Mg24Ni10Cu2)100–xNdx(x = 0, 5, 10, 15, 20) alloys were prepared by melt-spinning technology. The structures of as-cast and spun alloys were characterised by X-ray diffract... Nanocrystalline and amorphous Mg2Ni-type(Mg24Ni10Cu2)100–xNdx(x = 0, 5, 10, 15, 20) alloys were prepared by melt-spinning technology. The structures of as-cast and spun alloys were characterised by X-ray diffraction,scanning electron microscopy and transmission electron microscopy. Electrochemical performance of the alloy electrodes was measured using an automatic galvanostatic system. The electrochemical impedance spectra and Tafel polarisation curves of the alloy electrodes were plotted using an electrochemical work station. The hydrogen diffusion coefficients were calculated using the potential step method. Results indicate that all the as-cast alloys present a multiphase structure with Mg2 Ni type as the major phase with Mg6 Ni, Nd5Mg41 and Nd Ni as secondary phases. The secondary phases increased with the increasing Nd content. The as-spun Nd-free alloy exhibited nanocrystalline structure, whereas the as-spun Nd-doped alloys exhibited nanocrystalline and amorphous structures. These results suggest that adding Nd facilitates glass formation of Mg2Ni-type alloys. Melt spinning and Nd addition improved alloy electrochemical performance, which includes discharge potential characteristics, discharge capacity, electrochemical cycle stability and high-rate discharge ability. 展开更多
关键词 Mg2ni-type alloy Nd addition Melt spinning Structure Electrochemical performance
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Effect of melt spinning on gaseous hydrogen storage characteristics of nanocrystalline and amorphous Nd-added Mg_2Ni-type alloys
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作者 张羊换 袁泽明 +3 位作者 杨泰 祁焱 郭世海 赵栋梁 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第11期2754-2762,共9页
Nanocrystalline and amorphous Mg-Nd-Ni-Cu quaternary alloys with a composition of(Mg_(24)Ni_(10)Cu_2)_(100-x)Nd_x(x=0, 5, 10, 15, 20) were prepared by melt spinning technology and their structures as well as gaseous h... Nanocrystalline and amorphous Mg-Nd-Ni-Cu quaternary alloys with a composition of(Mg_(24)Ni_(10)Cu_2)_(100-x)Nd_x(x=0, 5, 10, 15, 20) were prepared by melt spinning technology and their structures as well as gaseous hydrogen storage characteristics were investigated. The XRD, TEM and SEM linked with EDS detections reveal that the as-spun Nd-free alloy holds an entire nanocrystalline structure but a nanocrystalline and amorphous structure for the as-spun Nd-added alloy, implying that the addition of Nd facilitates the glass forming in the Mg_2Ni-type alloy. Furthermore, the degree of amorphization of the as-spun Nd-added alloy and thermal stability of the amorphous structure clearly increase with the spinning rate rising. The melt spinning ameliorates the hydriding and dehydriding kinetics of the alloys dramatically. Specially, the rising of the spinning rate from 0(the as-cast was defined as the spinning rate of 0 m/s) to 40 m/s brings on the hydrogen absorption saturation ratio(R_5~a)(a ratio of the hydrogen absorption quantity in 5 min to the saturated hydrogen absorption capacity) increasing from 36.9% to 91.5% and the hydrogen desorption ratio(R_(1 0)~d)(a ratio of the hydrogen desorption quantity in 10 min to the saturated hydrogen absorption capacity) rising from 16.4% to 47.7% for the(x=10) alloy, respectively. 展开更多
关键词 Mg2ni-type alloy Nd addition melt spinning nanocrystalline and amorphous alloy hydrogen storage kinetics
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Gaseous and Electrochemical Hydrogen Storage Properties of Nanocrystalline Mg<sub>2</sub>Ni-Type Alloys Prepared by Melt Spinning
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作者 Zhihong Ma Bo Li +3 位作者 Huiping Ren Zhonghui Hou Guofang Zhang Yanghuan Zhang 《Materials Sciences and Applications》 2011年第3期141-150,共10页
A partial substitution of Ni by Cu has been carried out in order to improve the hydrogen storage characteristics of the Mg2Ni-type alloys. The nanocrystalline Mg20Ni10-xCux (x = 0, 1, 2, 3, 4) alloys are synthesized b... A partial substitution of Ni by Cu has been carried out in order to improve the hydrogen storage characteristics of the Mg2Ni-type alloys. The nanocrystalline Mg20Ni10-xCux (x = 0, 1, 2, 3, 4) alloys are synthesized by the melt-spinning technique. The structures of the as-cast and spun alloys have been characterized by X-ray diffraction (XRD), scanning electron microscope (SEM) and high resolution transmission electron microscope (HRTEM). The electrochemical performances were evaluated by an automatic galvanostatic system. The hydrogen absorption and desorption kinetics of the alloys were determined by using an automatically controlled Sieverts apparatus. The results indicate that the substitution of Cu for Ni does not alter the major phase Mg2Ni. The Cu substitution significantly ameliorates the electrochemical hydrogen storage performances of alloys, involving both the discharge capacity and the cycle stability. The hydrogen absorption capacity of alloys has been observed to be first increase and then decrease with an increase in the Cu contents. However, the hydrogen desorption capacity of the alloys exhibit a monotonous growth with an increase in the Cu contents. 展开更多
关键词 Mg2ni-type Alloy Cu SUBSTITUTION Melt SPINNING Hydrogen Storage Property
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Improved Hydrogen Storage Kinetics of Nanocrystalline and Amorphous Mg-Nd-Ni-Cubased Mg_2Ni-type Alloys by Adding Nd
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作者 张羊换 ZHAI Tingting +3 位作者 YANG Tai YUAN Zeming ZHANG Guofang DONG Xiaoping 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2015年第6期1115-1124,共10页
In order to improve the gaseous and electrochemical hydrogen storage kinetics of the M2Nitype alloy, the elements Cu and Nd were added in the alloy. The nanocrystalline and amorphous Mg2Ni-type alloys with the composi... In order to improve the gaseous and electrochemical hydrogen storage kinetics of the M2Nitype alloy, the elements Cu and Nd were added in the alloy. The nanocrystalline and amorphous Mg2Ni-type alloys with the composition of(Mg24Ni10Cu2)100-xNdx(x = 0, 5, 10, 15, 20) were prepared by melt spinning technology. The effects of Nd content on the structures and hydrogen storage kinetics of the alloys were investigated. The characterization by X-ray diffraction(XRD), transmission electron microscopy(TEM) and scanning electron microscopy(SEM) reveals that all the as-cast alloys hold multiphase structures, containing Mg2Ni-type major phase as well as some secondary phases Mg6Ni, Nd5Mg41, and Nd Ni, whose amounts clearly grow with increasing Nd content. Furthermore, the as-spun Nd-free alloy displays an entire nanocrystalline structure, whereas the as-spun Nd-added alloys hold a mixed structure of nanocrystalline and amorphous structure and the amorphization degree of the alloys visibly increases with the rising of the Nd content, suggesting that the addition of Nd facilitates the glass forming in the Mg2Ni-type alloy. The measurement of the hydrogen storage kinetics indicates that the addition of Nd significantly improves the gaseous and electrochemical hydrogen storage kinetics of the alloys. The addition of Nd enhances the diffusion ability of hydrogen atoms in the alloy, but it impairs the charge-transfer reaction on the surface of the alloy electrode, which makes the high rate discharge ability(HRD) of the alloy electrode fi rst mount up and then go down with the growing of Nd content. 展开更多
关键词 Mg2ni-type alloy Nd addition structures hydrogen storage kinetics
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Highly Improved Electrochemical Performances of the Nanocrystalline and Amorphous Mg_2Ni-type Alloys by Substituting Ni with M (M=Cu,Co,Mn)
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作者 张羊换 YUAN Zeming +3 位作者 YANG Tai ZHAI Tinging LIU Zhuocheng GUO Shihai 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2017年第3期685-694,共10页
The element Ni in the Mg2Ni alloy is partially substituted by M(M = Cu, Co, Mn) in order to ameliorate the electrochemical hydrogen storage performances of Mg2Ni-type electrode alloys. The nanocrystalline and amorph... The element Ni in the Mg2Ni alloy is partially substituted by M(M = Cu, Co, Mn) in order to ameliorate the electrochemical hydrogen storage performances of Mg2Ni-type electrode alloys. The nanocrystalline and amorphous Mg20Ni10-xMx(M = None, Cu, Co, Mn; x = 0-4) alloys were prepared by melt spinning. The effects of the M(M = Cu, Co, Mn) content on the structures and electrochemical hydrogen storage characteristics of the as-cast and spun alloys were comparatively studied. The analyses by XRD, SEM and HRTEM reveal that all the as-cast alloys have a major phase of Mg2Ni but the M(M = Co, Mn) substitution brings on the formation of some secondary phases, MgCo2 and Mg for the(M = Co) alloy, and Mn Ni and Mg for the(M = Mn) alloy. Besides, the as-spun(M = None, Cu) alloys display an entirely nanocrystalline structure, whereas the as-spun(M = Co, Mn) alloys hold a nanocrystalline/amorphous structure, suggesting that the substitution of M(M = Co, Mn) for Ni facilitates the glass formation in the Mg2Ni-type alloys. The electrochemical measurements indicate that the variation of M(M = Cu, Co, Mn) content engenders an obvious effect on the electrochemical performances of the as-cast and spun alloys. To be specific, the cyclic stabilities of the alloys augment monotonously with increasing M(M = Cu, Co, Mn) content, and the capacity retaining rate(S20) is in an order of(M = Cu) 〉(M = Co) 〉(M = Mn) 〉(M = None) for x≤1 but changes to(M = Co) 〉(M = Mn) 〉(M = Cu) 〉(M = None) for x≥2. The discharge capacities of the as-cast and spun alloys always grow with the rising of M(M = Co, Mn) content but first mount up and then go down with increasing M(M = Cu) content. Whatever the M content is, the discharge capacities are in sequence:(M = Co) 〉(M = Mn) 〉(M = Cu) 〉(M = None). The high rate discharge abilities(HRDs) of all the alloys grow clearly with rising M(M = Cu, Co) content except for(M = Mn) alloy, whose HRD has a maximum value with varying M(M = Mn) content. Furthermore, for the as-cast alloys, the HRD is in order of(M = Co) 〉(M = Mn) 〉(M = Cu) 〉(M = None), while for the as-spun(20 m·s^-1) alloys, it changes from(M = Co) 〉(M = Mn) 〉(M = Cu) 〉(M = None) for x = 1 to(M = Cu) 〉(M = Co) 〉(M = None) 〉(M = Mn) for x = 4. 展开更多
关键词 Mg2ni-type alloy element substitution melt spinning nanocrystalline and amorphous electrochemical performances
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新型固态弹热制冷材料研究进展
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作者 龚斌 从道永 《材料研究与应用》 2026年第1期1-15,共15页
当前全球制冷需求急剧上升,传统蒸汽压缩制冷技术的温室气体泄漏和低制冷能效导致严峻环境问题。在此背景下,零温室效应且高能效的固态制冷技术成为研究热点,其中弹热制冷易实现显著绝热温度变化,是最具潜力替代传统蒸汽压缩制冷的技术... 当前全球制冷需求急剧上升,传统蒸汽压缩制冷技术的温室气体泄漏和低制冷能效导致严峻环境问题。在此背景下,零温室效应且高能效的固态制冷技术成为研究热点,其中弹热制冷易实现显著绝热温度变化,是最具潜力替代传统蒸汽压缩制冷的技术之一。目前,弹热材料研究主要集中于形状记忆合金,包括Ni-Ti基、Cu基、Fe基和Heusler型形状记忆合金等。然而,各类弹热合金材料普遍存在相变潜热、循环稳定性、工作温区与制冷效率相互制约的问题。在各类弹热合金中,对Ni-Ti基合金研究最为系统深入。该合金室温下可实现17—24 K的绝热温度变化,通过元素掺杂、晶粒细化、增材制造等手段可优化弹热性能,是最接近商用化的弹热制冷材料,但其面临循环稳定性较差、工作温区窄等挑战。未来对于弹热材料的研究可着重多个方向:通过对Ni-Ti基合金高熵化,提升强度与宽温域性能,结合增材制造实现复杂结构的近净成形,平衡各项性能指标;借助原位表征技术揭示马氏体相变过程中的缺陷演化规律,建立疲劳寿命与晶格参数的定量关系;拓展梯度结构合金等前沿方向。 展开更多
关键词 弹热制冷 形状记忆合金 超弹性 弹热效应 绝热温度变化 循环稳定性 Ni-Ti基合金 Heusler型合金
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Sm_(5)(Ni,Co,Mn,Al)_(19)退火态合金的储氢和电化学性能
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作者 靳添福 雷鸣 +2 位作者 张乾坤 马哲文 罗永春 《中国有色金属学报》 北大核心 2026年第1期253-268,共16页
采用真空电弧熔炼和热处理制备了稀土-镍系Sm_(5)(Ni,Co,Mn,Al)_(19)储氢合金,研究了退火温度对新型A_(5)B_(19)型SmNi_(3.33)Mn_(0.17)Co_(0.2)Al_(0.1)超点阵结构退火合金的相结构及其储氢与电化学性能的影响。结果表明,退火合金组织... 采用真空电弧熔炼和热处理制备了稀土-镍系Sm_(5)(Ni,Co,Mn,Al)_(19)储氢合金,研究了退火温度对新型A_(5)B_(19)型SmNi_(3.33)Mn_(0.17)Co_(0.2)Al_(0.1)超点阵结构退火合金的相结构及其储氢与电化学性能的影响。结果表明,退火合金组织主要由2H-Ce_(2)Ni_(7)型主相与少量3R-Ce_(5)Co_(19)型、CaCu_(5)型和PuNi_(3)型等相组成。退火合金的放氢PCT曲线平台压为0.0156~0.0461 MPa,其氢化物生成焓ΔH^(Θ)为-35.48~-36.40 kJ/mol,最大可逆吸氢量达1.358%。随着退火温度的升高,合金电极的放电容量(326~377 mA·h/g)和高倍率放电性能ρ值呈现先增加后减小的变化趋势。当退火温度≥1253 K时,合金电极的循环稳定性S_(100)≥95.8%,其中1273 K退火的合金具有最大放电容量(377 mA·h/g)和优异的循环稳定性(S_(100)=96.5%),在900 mA/g和1800 mA/g放电电流密度下的高倍率放电性能ρ值分别为85.1%和56.4%,表现出良好的综合电化学性能。 展开更多
关键词 镍/金属氢化物电池 Sm-Ni系A_(5)B_(19)型超点阵结构储氢合金 热处理 相结构 储氢 电化学性能
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通过纳米TiC原位析出MC型碳化物强化镍基高温合金
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作者 邢磊 王文菲 +6 位作者 张豫龙 赵鑫宇 黄昊 姚曼 吴爱民 杨照辉 郝胜智 《材料导报》 北大核心 2025年第S2期591-598,共8页
金属碳化物是镍基高温合金中主要的强化相,其形貌及分布对材料力学性能具有直接影响。然而,碳化物与基体之间的界面结合力较弱,易成为裂纹萌生源,从而限制高温合金的服役可靠性。通过铸造工艺向K4202高温合金中引入不同质量分数的纳米Ti... 金属碳化物是镍基高温合金中主要的强化相,其形貌及分布对材料力学性能具有直接影响。然而,碳化物与基体之间的界面结合力较弱,易成为裂纹萌生源,从而限制高温合金的服役可靠性。通过铸造工艺向K4202高温合金中引入不同质量分数的纳米TiC颗粒,以改善其力学性能,并结合第一性原理分子动力学(AIMD)模拟深入探讨其在异质形核过程中的界面作用机制。模拟结果表明,[Ti]-TiC(111)/Ni界面在预形核层(PNL)有序性、电荷转移行为及原子结合强度等方面表现优异,为促进Ni形核的理想界面结构。实验结果显示,纳米TiC的引入显著改变了合金晶体结构,使粗大柱状晶显著转变为均匀细化的等轴晶,晶粒、枝晶及MC型碳化物尺寸均明显减小,组织均匀性显著提升。力学性能测试结果表明,适量添加纳米TiC可使K4202合金室温下抗拉强度提高24%以上,延展性亦得到明显改善。进一步分析表明,纳米TiC不仅诱导形成高密度MC型碳化物,增强异质形核效应,还抑制碳化物粗化与长大,有效降低碳化物-基体界面失稳风险。MC碳化物的原位析出与其对晶体生长的阻碍作用协同,促进组织细化并增强晶界结合力。综上所述,纳米TiC在高温合金组织调控及强韧性提升中的作用机制得到验证,为高性能镍基复合材料的设计提供了新思路。 展开更多
关键词 镍基复合材料 纳米TIC 异质形核 MC型碳化物 AIMD模拟 力学性能
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Effect of Nd content on electrochemical performances of nanocrystalline and amorphous (Mg_(24)Ni_(10)Cu_2)_(100-x)Nd_x(x=0-20) alloys prepared by melt spinning 被引量:8
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作者 张羊换 杨泰 +3 位作者 卜文刚 蔡颖 张国芳 赵栋梁 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2013年第12期3668-3676,共9页
The nanocrystalline and amorphous Mg2Ni-type alloys with a chemical composition of (Mg24Ni10Cu2)100-xNdx (x=0, 5, 10, 15, 20) were fabricated by melt spinning technology. The effects of spinning rate on the struct... The nanocrystalline and amorphous Mg2Ni-type alloys with a chemical composition of (Mg24Ni10Cu2)100-xNdx (x=0, 5, 10, 15, 20) were fabricated by melt spinning technology. The effects of spinning rate on the structure and electrochemical hydrogen storage performance of the alloys were investigated. The as-spun Nd-free alloy displays an entire nanocrystalline structure, whereas the as-spun Nd-added alloys hold a nanocrystalline and amorphous structure, suggesting that the addition of Nd facilitates the glass forming of the Mg2Ni-type alloys. Increasing the spinning rate from 0 to 40 m/s gives rise to the discharge capacity growing from 42.5 to 100.6 mA·h/g for the x=0 alloy and from 86.4 to 452.8 mA·h/g for the x=10 alloy. And the cycle stability (S20) rises from 40.2%to 41.1%for the x=0 alloy and from 53.2%to 89.7%for the x=10 alloy, respectively. 展开更多
关键词 hydrogen storage alloy Mg2ni-type alloy ND melt spinning structure
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Electrochemical properties of nanocrystalline and amorphous Mg-Y-Ni alloys applied to Ni-MH battery 被引量:6
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作者 张羊换 韩忠刚 +3 位作者 袁泽明 杨泰 祁焱 赵栋梁 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2015年第11期3736-3746,共11页
The as-cast Mg2Ni-type Mg20–xYxNi10 (x=0, 1, 2, 3 and 4) electrode alloys were prepared by vacuum induction melting. Subsequently, the as-cast alloys were mechanically milled in a planetary-type ball mill. The analys... The as-cast Mg2Ni-type Mg20–xYxNi10 (x=0, 1, 2, 3 and 4) electrode alloys were prepared by vacuum induction melting. Subsequently, the as-cast alloys were mechanically milled in a planetary-type ball mill. The analyses of scanning electron microscopy (SEM), X-ray diffraction (XRD) and transmission electron microscopy (TEM) reveal that nanocrystalline and amorphous structure can be obtained by mechanical milling, and the amount of amorphous phase increases with milling time prolonging. The electrochemical measurements show that the discharge capacity of Y0 alloy increases with milling time prolonging, while that of the Y-substituted alloys has a maximum value in the same condition. The cycle stabilities of the alloys decrease with milling time prolonging. The effect of milling time on the electrochemical kinetics of the alloys is related to Y content. Whenx=0, the high rate discharge ability, diffusion coefficient of hydrogen atom, limiting current density and charge transfer rate all increase with milling time prolonging, but the results are exactly opposite whenx=3. 展开更多
关键词 hydrogen storage Mg2ni-type alloy mechanical milling element substitution electrochemical performance
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Enhanced hydrogen storage kinetics of nanocrystalline and amorphous Mg_2N-type alloy by substituting Ni with Co 被引量:6
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作者 张羊换 宋春红 +3 位作者 任慧平 李志刚 胡锋 赵栋梁 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2011年第9期2002-2009,共8页
In order to improve the hydrogen storage kinetics of the Mg2Ni-type alloys, Ni in the alloy was partially substituted with element Co. The Mg2Ni-type Mg2Ni1-xCox (x=0, 0.1, 0.2, 0.3, 0.4) alloys were fabricated by m... In order to improve the hydrogen storage kinetics of the Mg2Ni-type alloys, Ni in the alloy was partially substituted with element Co. The Mg2Ni-type Mg2Ni1-xCox (x=0, 0.1, 0.2, 0.3, 0.4) alloys were fabricated by melt-spinning technique. The structures of the as-spun alloys were characterized by XRD and TEM. The gaseous and electrochemical hydrogen storage kinetics of the alloys was measured. The results show that the substitution of Co for Ni notably enhances the glass forming ability of the Mg2Ni-type alloy. The amorphization degree of the alloys visibly increases with rising of Co content. Furthermore, the substitution of Co for Ni significantly improves the hydrogen storage kinetics of the alloys. With an increase in the amount of Co substitution from 0 to 0.4, the hydrogen absorption saturation ratio of the as-spun (15 m/s) alloy increases from 81.2% to 84.9%, the hydrogen desorption ratio from 17.60% to 64.79%, the hydrogen diffusion coefficient increases from 1.07×10-11 to 2.79×10-11 cm2/s and the limiting current density increases from 46.7 to 191.7 mA/g, respectively. 展开更多
关键词 Mg2ni-type alloy substituting Ni with Co melt spinning hydrogen storage kinetics
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杂多酸处理对La-Y-Ni系A_(2)B_(7)型储氢合金电化学性能的影响 被引量:1
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作者 王成均 雷鸣 +2 位作者 沈秉金 张乾坤 罗永春 《兰州理工大学学报》 北大核心 2025年第1期25-33,共9页
制备了退火态A_(2)B_(7)型La_(0.33)Y_(0.67)Ni_(3.23)Mn_(0.17)Al_(0.1)储氢合金,采用磷钨酸(H_(3)PW_(12)O_(40)),(phosphotungstic acid,TPA)水溶液对该退火合金进行浸渍处理,研究了TPA处理对合金组织结构、表面形貌、组成以及合金... 制备了退火态A_(2)B_(7)型La_(0.33)Y_(0.67)Ni_(3.23)Mn_(0.17)Al_(0.1)储氢合金,采用磷钨酸(H_(3)PW_(12)O_(40)),(phosphotungstic acid,TPA)水溶液对该退火合金进行浸渍处理,研究了TPA处理对合金组织结构、表面形貌、组成以及合金电化学性能的影响.结果表明:经TPA处理后的合金表面形成了腐蚀性凹坑或微孔,同时在合金表面形成了含有高氧化价态钨酸根离子的富Ni层.TPA处理可明显改善合金电极的电化学性能,当TPA质量浓度为0.1 mol/L时,合金电极的交换电流密度I_(0)最大,此时合金电极具有最大的1 C放电容量(364 mAh/g),其容量保持率S_(100)和大电流放电性能HRD_(900)分别为93.23%和81.92%,明显优于未处理合金电极的S_(100)(88.12%)和HRD 900(76.05%).TPA处理前后电极表面与电解质溶液界面处的电子转移阻抗是影响电极高倍率放电动力学性能的控制步骤. 展开更多
关键词 La-Y-Ni系A_(2)B_(7)型储氢合金 杂多酸 表面处理
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