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Microstructure and phase composition of hypoeutectic Te–Bi alloy as evaporation source for photoelectric cathode
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作者 Bao-guang Wang Wen-hui Yang +1 位作者 Hong-ye Gao Wen-huai Tian 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2018年第5期584-590,共7页
A hypoeutectic 60Te–40Bi alloy in mass percent was designed as a tellurium atom evaporation source instead of pure tellurium for an ultraviolet detection photocathode.The alloy was prepared by slow solidification at ... A hypoeutectic 60Te–40Bi alloy in mass percent was designed as a tellurium atom evaporation source instead of pure tellurium for an ultraviolet detection photocathode.The alloy was prepared by slow solidification at about 10^(-2) K·s^(-1).The microstructure,crystal structure,chemical composition,and crystallographic orientation of each phase in the as-prepared alloy were investigated by optical microscopy,scanning electron microscopy,X-ray diffraction,electron backscatter diffraction,and transmission electron microscopy.The experimental results suggest that the as-prepared 60Te–40Bi alloy consists of primary Bi_2Te_3 and eutectic Bi_2Te_3/Te phases.The primary Bi_2Te_3 phase has the characteristics of faceted growth.The eutectic Bi_2Te_3 phase is encased by the eutectic Te phase in the eutectic structure.The purity of the eutectic Te phase reaches 100wt%owing to the slow solidification.In the eutectic phases,the crystallographic orientation relationship between Bi_2Te_3 and Te is confirmed as[0001]_(Bi2 Te3)//[1213]_Te and the direction of Te phase parallel to[1120]_(Bi2 Te3)is deviated by 18°from N(2111)_Te. 展开更多
关键词 te–bi alloy MICROSTRUCTURE orientation MISFIT
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Effects ofslip mode on microstructure evolution and compressive flow behavior of extruded dilute Mg−0.5Bi−0.5Sn−0.5Mn alloy
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作者 Zhi-yong YOU Wei-li CHENG +6 位作者 Guo-lei LIU Jian LI Li-fei WANG Hui YU Hong-xia WANG Ze-qin CUI Jin-hui WANG 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2024年第11期3599-3614,共16页
The influence of the slip mode on the microstructure evolution and compressive flow behavior at different strains in an extruded dilute Mg−0.5Bi−0.5Sn−0.5Mn alloy was analyzed through electron backscatter diffraction,... The influence of the slip mode on the microstructure evolution and compressive flow behavior at different strains in an extruded dilute Mg−0.5Bi−0.5Sn−0.5Mn alloy was analyzed through electron backscatter diffraction,X-ray diffraction,transmission electron microscopy,and hot compression tests.The results showed that at a low strain of 0.05,the basal,pyramidaland<c+a>slip modes were simultaneously activated.Nevertheless,at the middle stage of deformation(strain of 0.1,0.2 and 0.5),theslip mode was difficult to be activated and<c+a>slip mode became dominant.The deformation process between strains of 0.2 and 0.5 was primarily characterized by the softening effect resulting from the simultaneous occurrence of continuous dynamic recrystallization and discontinuous dynamic recrystallization.Ultimately,at strain of 0.8,a dynamic equilibrium was established,with the flow stress remaining constant due to the interplay between the dynamic softening brought about by discontinuous dynamic recrystallization and the work-hardening effect induced by the activation of the basalslip mode. 展开更多
关键词 dilute Mg−bi−Sn−Mn alloy slip mode hot compression flow behavior dynamic recrystallization
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n型Bi_(2-x)Sb_(x)Te_(3-y)Se_(y)基化合物的缺陷结构调控与电热输运性能
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作者 李睿英 罗婷婷 +6 位作者 李貌 陈硕 鄢永高 吴劲松 苏贤礼 张清杰 唐新峰 《物理学报》 SCIE EI CAS CSCD 北大核心 2024年第9期244-253,共10页
Bi_(2)Te_(3)基化合物是目前室温附近性能最好的热电材料,但其存在着大量复杂的缺陷结构,缺陷工程是调控材料热电性能的核心手段,因此理解和有效地调控缺陷形态和浓度是获得高性能Bi_(2)Te_(3)基热电材料的关键.本文系统地研究了四元n型... Bi_(2)Te_(3)基化合物是目前室温附近性能最好的热电材料,但其存在着大量复杂的缺陷结构,缺陷工程是调控材料热电性能的核心手段,因此理解和有效地调控缺陷形态和浓度是获得高性能Bi_(2)Te_(3)基热电材料的关键.本文系统地研究了四元n型Bi_(2-x)Sb_(x)Te_(3-y)Se_(y)基化合物的缺陷演化过程及其对热电输运性能的影响规律.Sb和Se的固溶引入的带电伴生结构缺陷使得材料的载流子浓度发生了巨大变化,在Bi_(2-x)Sb_(x)Te_(2.994)Cl_(0.006)样品中,Sb的固溶降低了反位缺陷Sb_(Te)_(2)形成能,诱导产生了反位缺陷Sb_(Te)_(2),使得少数载流子空穴浓度从2.09×10^(16)cm^(-3)增加至3.99×10^(17)cm^(-3),严重劣化了电性能.在Bi_(1.8)Sb_(0.2)Te_(2.994-y)Se_(y)Cl_(0.006)样品中,Se的固溶使得Se(Te)_(2)+SbBi的缺陷形成能更低,抑制了反位缺陷Sb_(Te)_(2)的产生,Bi_(1.8)Sb_(0.2)Te_(2.694)Se_(0.30)Cl_(0.006)样品的少数载流子空穴浓度降至1.49×10^(16)cm^(-3),消除了其对材料热电性能的劣化效果,显著地提升了材料的功率因子,室温下达到4.49 mW/(m·K^(2)).结合Sb和Se固溶增强合金化散射降低材料的热导率,Bi_(1.8)Sb_(0.2)Te_(2.844)Se_(0.15)Cl_(0.006)样品在室温下获得最大ZT值为0.98.该研究为调控具有复杂成分的Bi_(2)Te_(3)基材料的点缺陷、载流子浓度和热电性能提供了重要的指导. 展开更多
关键词 bi2te3基化合物 缺陷工程 热电性能
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Microstructures and tensile properties of as-cast Mg-5Sn-1Si magnesium alloy modified with trace elements of Y,Bi,Sb and Sr 被引量:5
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作者 He-shuai Yu Xue-feng Guo Hong-bao Cui 《China Foundry》 SCIE CAS 2021年第1期9-17,共9页
The microstructures and mechanical properties of as-cast Mg-5 Sn-1 Si magnesium alloy modified with trace elements Y,Bi,Sb and Sr were investigated and compared.Results show that the microstructure of the as-cast Mg-5... The microstructures and mechanical properties of as-cast Mg-5 Sn-1 Si magnesium alloy modified with trace elements Y,Bi,Sb and Sr were investigated and compared.Results show that the microstructure of the as-cast Mg-5 Sn-1 Si alloy consists ofα-Mg,Mg_(2) Si,Mg_(2) Sn and Mg_(2)(Si_xSn_(1-x))phases.After adding 0.8 wt.%Y,0.3 wt.%Bi,0.9 wt.%Sb and 0.9 wt.%Sr,respectively into the Mg-5 Sn-1 Si magnesium alloy,Mg_(24)Y_(5),Mg_(3) Bi_(2),Mg_(3) Sb_(2) and Mg_(2) Sr phases are precipitated accordingly.Trace elements can refineα-Mg grain and Chinese scriptshaped Mg_(2) Si phase.Refinement efficiency of different trace elements onα-Mg grain and Mg_(2) Si phase is varied.Sr element has the best refinement effect,followed by Sb and Bi,while Y has the least refinement effect.Mg-5 Sn-1 Si-0.9 Sr alloy has higher tensile properties than the other three modified alloys.The refinement mechanism of Y,Bi and Sr elements on Mg-5 Sn-1 Si magnesium alloy can be explained by the growth restriction factors and the solute undercooling.For Mg-5 Sn-1 Si-0.9 Sb alloy,the heterogeneous nuclei of Mg_(3) Sb_(2) phase is the main reason for the refinement of grains and second phases. 展开更多
关键词 magnesium alloy Mg-5Sn-1Si alloy Y bi SB SR Mg2Si phase
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Promoting dynamic recrystallization and improving strength and ductility of Mg-7Bi alloy through Al addition
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作者 Gun Woong An Sang-Cheol Jin +2 位作者 Hyun Ji Kim Sumi Jo Sung Hyuk Park 《Journal of Magnesium and Alloys》 SCIE EI CAS CSCD 2024年第8期3339-3356,共18页
This study investigated the influence of the addition of Al to a Mg-7Bi(B7,wt%)alloy,particularly its recrystallization behavior during extrusion and its resulting mechanical properties.The addition of 2 wt%Al to the ... This study investigated the influence of the addition of Al to a Mg-7Bi(B7,wt%)alloy,particularly its recrystallization behavior during extrusion and its resulting mechanical properties.The addition of 2 wt%Al to the B7 alloy resulted in a lower grain size,a reduction in the number density of fine Mg3Bi2 particles,and a higher area fraction of relatively coarse Mg3Bi2 particles in the extrusion billet.These microstructural changes increased the nucleation sites for recrystallization,reduced the Zener pinning effect,and enhanced particle-stimulated nucleation,all of which promoted dynamic recrystallization behavior during extrusion.As a result,the area fraction of recrystallized grains in the extruded alloy increased from 77%to 94%.The extruded B7 alloy exhibited a strong<10-10>fiber texture,whereas the extruded Mg-7Bi-2Al(BA72)alloy had a weak<10-10>-<2-1-10>texture,which was attributed to the minimal presence of unrecrystallized grains and the dispersed orientation of the recrystallized grains.The tensile yield strength(TYS)of the extruded BA72 alloy was higher than that of the extruded B7 alloy(170 and 124 MPa,respectively),which resulted from the enhanced grain-boundary and solid-solution strengthening effects.The tensile elongation(EL)of the BA72 alloy also exceeded that of the B7 alloy(20.3%and 6.1%,respectively),the result of the uniform formation of fine twins under tension in the former and the formation of a few coarse twins among the unrecrystallized grains in the latter.Consequently,the addition of a small amount of Al to the B7 alloy significantly improved both the strength and ductility of the extruded alloy,resulting in a remarkable increase in the product of the TYS and EL from 756 to 3451 MPa%and expanding its potential range of applications as a lightweight extruded structural component. 展开更多
关键词 Mg-7bi alloy Al addition Extrusion Recrystallization Microstructure
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Temperature-induced liquid state change and its effects on solidification of thermoelectric alloy Bi_(0.3)Sb_(1.7)Te_3 被引量:2
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作者 Zhang Wenjin Wu Zhan +1 位作者 Yu Yuan Zu Fangqiu 《China Foundry》 SCIE CAS 2014年第3期168-172,共5页
The behaviors of electrical resistivity vs temperature(ρ-T) of the molten p-type thermoelectric alloy Bi0.3Sb1.7Te3(at.%) were explored in heating and cooling processes. An obvious hump appeared on the ρ-T curve fro... The behaviors of electrical resistivity vs temperature(ρ-T) of the molten p-type thermoelectric alloy Bi0.3Sb1.7Te3(at.%) were explored in heating and cooling processes. An obvious hump appeared on the ρ-T curve from 932 ℃ to 1,020 ℃ at the heating process, while the curve became smooth in the following cooling, which suggests an irreversible temperature-induced liquid-liquid structure transition(TI-LLST) occurred in the liquid alloy. Based on this judgment, solidification experiments were carried out to find out the effects of the different liquid states. It was verified that, for the melt experiencing the presumed TI-LLST, both the nucleation and growth undercooling degrees were elevated and the solidification time was remarkably prolonged. On the other hand, the configuration of Bi0.3Sb1.7Te3 phase was refined, and its preferential orientation was weakened. 展开更多
关键词 electrical resistivity liquid-liquid structure transition bi0.3Sb1.7te3 SOLIDIFICATION
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Effects of Electroless Plating with Cu Content on Thermoelectric and Mechanical Properties of p-type Bi0.5Sb1.5Te3 Bulk Alloys 被引量:2
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作者 代雪婷 黄中月 +2 位作者 YU Yuan ZHOU Chongjian ZU Fangqiu 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2018年第4期797-801,共5页
Bi_(0.5)Sb_(1.5)Te_3/Cu core/shell powders were prepared by electroless plating and hydrogen reduction, and then sintered into bulk by spark plasma sintering. After electroless plating, with increasing the Cu cont... Bi_(0.5)Sb_(1.5)Te_3/Cu core/shell powders were prepared by electroless plating and hydrogen reduction, and then sintered into bulk by spark plasma sintering. After electroless plating, with increasing the Cu content, the electrical conductivity keeps enhancing significantly. The highest electrical conductivity reaches 3341 S/cm at room temperature in Bi0.5Sb1.5Te3 with 0.67 wt% Cu bulk sample. Moreover, the lowest lattice thermal conductivity reaches 0.32 W/m·K at 572.2 K in Bi0.5Sb1.5Te3 with 0.67 wt% Cu bulk sample, which is caused by the scattering of the rich-copper particles with different dimensions and massive grain boundaries. According to the results, the ZT values of all Bi0.5Sb1.5Te3/Cu bulk samples have improved in a high temperature range. In Bi0.5Sb1.5Te3 with 0.15 wt% Cu bulk sample, the highest ZT value at 573.4 K is 0.81. When the Cu content increases to 0.67 wt%, the highest ZT value reaches 0.85 at 622.2 K. Meanwhile, the microhardness increases with increasing the Cu content. 展开更多
关键词 bi0.5Sb1.5te3 electroless plating thermoelectric property mechanical property sparkplasma sintering
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Effect of SrO Content on Structure,Thermal Properties and Chemical Stability of Bi2O3-B2O3-ZnO-SrO Low-melting Glass for Si-Al Alloy Package 被引量:3
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作者 WU Zhilun ZHANG Ming +2 位作者 ZHANG Chunyan MENG Fancheng LIN Huixing 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2020年第2期368-376,共9页
The 40Bi2O3-30B2O3-(30-x)ZnO-xSrO (x=0-15mol%,BBZSr) glass system was prepared by the conventional melt quenching method.The effect of SrO addition on structure,thermal properties,chemical stability and sealing perfor... The 40Bi2O3-30B2O3-(30-x)ZnO-xSrO (x=0-15mol%,BBZSr) glass system was prepared by the conventional melt quenching method.The effect of SrO addition on structure,thermal properties,chemical stability and sealing performance of BBZSr glass were investigated thoroughly.The experimental results show that the total proportions of [BO3] group and [BO4] group decrease and the vibrations of [BiO3] group and [BiO6] group become weaker with the increase of SrO addition content,suggesting the glass network structure is strengthened owing to the SrO addition.Hence,both the thermal and chemical stability were significantly improved as the SrO content was increased.When the SrO content increased from 0 to 15mol%,the glass transition temperature and softening temperature slightly increased from 380 to 388 ℃ and from 392.7 to 402.2 ℃,respectively,meanwhile the coefficient of thermal expansion also increased from 10.49×10^-6 to 11.16×10^-6/℃ (30-300 ℃).The BBZSr glass with 15mol% SrO exhibited excellent comprehensive properties with low glass transition temperature(384.9 ℃),low softening temperature(400.3 ℃),high coefficient of thermal expansion (11.14×10^-6 ℃,30-300 ℃),good thermal and chemical stability.Besides,the glass had the good wetting behavior and sealing performance for Al-50%Si alloy. 展开更多
关键词 low-melting sealing lead-free glass bi2O3-B2O3-ZnO-SrO glass silicon-aluminium alloy thermal expansion
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Effects of homogenization temperature on microstructure and mechanical properties of high-speed-extruded Mg–5Bi–3Al alloy 被引量:1
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作者 Jae Won Cha Sang-Cheol Jin +1 位作者 Jae-Gil Jung Sung Hyuk Park 《Journal of Magnesium and Alloys》 SCIE EI CAS CSCD 2022年第10期2833-2846,共14页
This study investigates the effects of billet homogenization temperature on the dynamic recrystallization behavior during high-speed extrusion and resultant microstructure and tensile properties of the Mg–5Bi–3Al(BA... This study investigates the effects of billet homogenization temperature on the dynamic recrystallization behavior during high-speed extrusion and resultant microstructure and tensile properties of the Mg–5Bi–3Al(BA53,wt%)alloy.Two billets homogenized at 350 and450℃(350H and 450H billets)are extruded at a high speed of 69 m/min.The 350H billet has a relatively smaller grain size and a higher abundance of fine Mg3Bi2particles compared to the 450H billet.During extrusion of the 350H billet,enhanced dynamic recrystallization occurs as a result of its finer grains and abundance of particles,while the growth of recrystallized grains is suppressed by the grain-boundary pinning effect of particles.Ultimately,the extruded 350H material is characterized by smaller grains,relatively greater number of Mg3Bi2particles,and a higher internal strain energy than the extruded 450H material.The tensile strength of the extruded 350H material is higher than that of the extruded 450H material owing to stronger grain-boundary hardening,particle hardening,and strain hardening effects.The extruded 350H material also exhibits a higher tensile elongation as its smaller grains inhibit the formation of crack-inducing undesirable twins during tension.The results from this study demonstrate that a decrease in the homogenization temperature from 450 to 350℃leads to improved strength and ductility in the high-speed-extruded BA53 material. 展开更多
关键词 Mg–bi–Al alloy High-speed extrusion HOMOGENIZATION Dynamic recrystallization tensile properties
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The Influence of Different Contents of Bi Addition on the Corrosion Behavior of Various Zirconium-Based Alloys 被引量:1
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作者 Meiyi Yao Xiaotong Wu +6 位作者 Wenrong Duan Weipeng Zhang Li Zhu Linghong Zou Jinlong Zhang Qiang Li Bangxin Zhou 《Journal of Environmental Protection》 2016年第4期495-501,共7页
Zr-4(Zr-1.5Sn-0.2Fe-0.1Cr,wt%), S5(Zr-0.8Sn-0.34Nb-0.39Fe-0.1Cr), T5(Zr-0.7Sn-1.07Nb-0.32Fe-0.08Cr) and Zr-1Nb were adopted to prepare Bi-containing zirconium alloys for systematically investigating the effect of Bi a... Zr-4(Zr-1.5Sn-0.2Fe-0.1Cr,wt%), S5(Zr-0.8Sn-0.34Nb-0.39Fe-0.1Cr), T5(Zr-0.7Sn-1.07Nb-0.32Fe-0.08Cr) and Zr-1Nb were adopted to prepare Bi-containing zirconium alloys for systematically investigating the effect of Bi addition on the corrosion resistance of zirconium alloys. The specimens were corroded in superheated steam at 400℃/10.3 MPa, and in lithiated water with 0.01 M LiOH or in deionized water at 360℃/18.6 MPa by autoclave testing. Results show that the corrosion resistance increases with the increasing of Bi content dissolved in α-Zr. But the presence of Bi-con- taining second phase particles (SPPs) is unfavorable for the enhancement of corrosion resistance. This indicates that the Bi dissolved in α-Zr matrix plays an important role in improving the corrosion resistance, while the precipitation of the Bi-containing SPPs does harm to the corrosion resistance. 展开更多
关键词 bi Zirconium alloy Corrosion Resistance SPPS
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Surface tension of liquid Au-Bi-Sn alloys 被引量:2
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作者 Guo, Zhongnan Li, Shan +1 位作者 Mikula, Adolf Yuan, Wenxia 《Rare Metals》 SCIE EI CAS CSCD 2012年第3期250-254,共5页
The surface tension of a promising lead-free solder Au-Bi-Sn alloys was investigated both by the sessile-drop method and calculation. Experimental measurements were carried out for two cross-sections with the constant... The surface tension of a promising lead-free solder Au-Bi-Sn alloys was investigated both by the sessile-drop method and calculation. Experimental measurements were carried out for two cross-sections with the constant gold to bismuth ration of 1:1 and 1:2. For all the investigated compositions, decrease of the surface tension is observed with increasing temperature. Meanwhile, the surface tension values were also calculated based on Butler’s equation, with using the newest research on thermodynamics data of Au-Bi-Sn ternary system. Compared with the experimental results, a good agreement was obtained. 展开更多
关键词 sessile-drop method Au-bi-Sn alloys density surface tension Butler’s equation
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Compatibility of T91 steel with liquid Pb-Bi eutectic alloy at 450℃ 被引量:1
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作者 Zhang Yutuo Dong Hong +1 位作者 Wang Pei Ye Zhongfei 《China Foundry》 SCIE CAS 2014年第3期197-200,共4页
Pb-Bi eutectic alloy has been receiving increasing attention as a heavy liquid metal coolant in accelerator driven systems and Generation IV fission reactors. Compatibility of structural materials with liquid PbBi eut... Pb-Bi eutectic alloy has been receiving increasing attention as a heavy liquid metal coolant in accelerator driven systems and Generation IV fission reactors. Compatibility of structural materials with liquid PbBi eutectic alloy at high temperature is one of the issues concerned. In the present study, corrosion tests of T91 steel in stagnant Pb-Bi eutectic alloy in saturated oxygen condition at 450 oC were carried out. After experiments, the thickness and compositional profile of the oxide layer on the specimen were analyzed using SEM and EDX. Analysis results show that the thickness of the oxide layer increases as the exposure time increases from 500 h to 1,000 h. The thickness of the oxide layer remains almost unchanged at 15 to 16 mm from 1,000 to 1,500 h. Formation of a thick and protective oxide layer at 450 oC prevents the penetration of liquid Pb-Bi eutectic alloy into the matrix of the T91 steel. 展开更多
关键词 T91 steel Pb-bi eutectic alloy compatibility OXIDE
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STRUCTUREAND PROPERTY OF DIRECTIONALLY SOLIDIFIED EUTECTIC Bi/MnBi ALLOY
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作者 FU Xuli LI Jun +2 位作者 WANG Wu YANG Yongqing SHU Guangji Southeast University,Nanjing,China 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 1992年第12期512-515,共4页
Eutectic Bi/MnBi magnetic alloy was prepared by directional solidification.When the growth rate,R>2 cm/h,the MnBi fibre spacing,λ,distributed homogeneously in Bi matrix,follows λ~2R=constant.The thermal gradient.... Eutectic Bi/MnBi magnetic alloy was prepared by directional solidification.When the growth rate,R>2 cm/h,the MnBi fibre spacing,λ,distributed homogeneously in Bi matrix,follows λ~2R=constant.The thermal gradient.G_L,does not influence λ.The magnetic property,B_r of Bi/MnBi alloy decreases with the increase of R and increases with the increase of G_L. 展开更多
关键词 eutectic bi/Mnbi alloy growth rate thermal gradient fiber spacing magnetic property
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Effect of Antimony Additions on Corrosion and Mechanical Properties of Sn-Bi Eutectic Lead-Free Solder Alloy 被引量:1
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作者 Alberto Torres Luis Hernández Octavio Domínguez 《Materials Sciences and Applications》 2012年第6期355-362,共8页
The goal of the present work is to investigate the effects of the addition of Sb (0, 3 and 6 wt%) on structure, melting, corrosion and mechanical properties of Sn-Bi eutectic solder alloys. The mechanical properties o... The goal of the present work is to investigate the effects of the addition of Sb (0, 3 and 6 wt%) on structure, melting, corrosion and mechanical properties of Sn-Bi eutectic solder alloys. The mechanical properties of the bulk Sn-Bi-Sb solders were higher as the amount of antimony increases, making compressive strength augment from 65 MPa to 100 MPa when 6 wt% Sb was incorporated to the Sn-Bi eutectic alloy. The three alloys presented a melting temperature that is smaller to the one exhibited by the eutectic alloy Sn-38Pb (Tm = 183°C). According to the electrochemical results, the addition of higher contents of Sb to the Sn-Bi eutectic alloy had a positive effect: it ennobled the Ecorr values. 展开更多
关键词 Lead Free SOLDER alloys Sn-bi-Sb MECHANICAL PROPERTIES CORROSION PROPERTIES
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Thermoelectric Performance of Micro/Nano-Structured Bismuth-Antimony-Telluride Bulk from Low Cost Mechanical Alloying
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作者 Z. Li G. L. Zhao +2 位作者 P. Zhang S. Guo J. Tang 《Materials Sciences and Applications》 2012年第12期833-837,共5页
In this work, micro/nano-structured Bi0.5Sb1.5Te3bulk thermoelectric materials were synthesized by mechanical alloying from elemental shots of Bi, Sb, and Te. Cold pressing and subsequent heat treatments with hydrogen... In this work, micro/nano-structured Bi0.5Sb1.5Te3bulk thermoelectric materials were synthesized by mechanical alloying from elemental shots of Bi, Sb, and Te. Cold pressing and subsequent heat treatments with hydrogen reduction were used to form bulk solid samples with good thermoelectric properties in the temperature range around 75℃to 100℃. In comparison to crystal growth methods and chemical solution synthesis, the reported technique can be readily implemented for mass production with relatively low cost. 展开更多
关键词 Thermoelectric bi0.5Sb1.5te3 Mechanical alloyING Hydrogen Reduction
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Influence of pressure on the solid state phase transformation of Cu-Al-Bi alloy
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作者 李工 刘建华 +1 位作者 王文魁 刘日平 《Chinese Physics B》 SCIE EI CAS CSCD 2010年第9期464-468,共5页
The solid state phase transformation of Cu-Al-Bi alloy under high pressure was investigated by x-ray diffraction, energy dispersive spectroscopy and transmission electron microscopy. Experimental results show that the... The solid state phase transformation of Cu-Al-Bi alloy under high pressure was investigated by x-ray diffraction, energy dispersive spectroscopy and transmission electron microscopy. Experimental results show that the initial crystalline phase in the Cu-Al-Bi alloy annealed at 750 ℃ under the pressures in the range of 0-6 GPa is α-Cu solid solution (named as α-Cu phase below), and high pressure has a great influence on the crystallisation process of the Cu-Al-Bi alloy. The grain size of the α-Cu phase decreases with increasing pressure as the pressure is below about 3 GPa, and then increases (P 〉 3 GPa). The mechanism for the effects of high pressure on the crystallisation process of the alloy has been discussed. 展开更多
关键词 Cu-Al-bi alloy high pressure microstructure grain growth
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Microstructures and Thermal Properties of Sn–Bi–Zn–Ga Alloys as Heat Transfer and Heat Storage Materials
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作者 WANG Qingmeng CHENG Xiaomin 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2019年第3期676-683,共8页
Low melting point alloy is a potential high-temperature heat transfer medium because of the high thermal conductivity, low solidus temperature and wide range of use temperature. Consequently, we investigated the possi... Low melting point alloy is a potential high-temperature heat transfer medium because of the high thermal conductivity, low solidus temperature and wide range of use temperature. Consequently, we investigated the possibility of using Sn-Bi-Zn-Ga alloys as heat storage and heat transfer material. Moreover, we investigated the microstructure and phase compositions by electron probe micro-analysis (EPMA) and X-ray diffusion (XRD). Results show that the new structures and phases are formed in the alloy matrix with Ga additions, which lead to the improvement of the thermal properties. An extensive thermophysical characterization of the Sn-Bi-Zn-Ga alloys has been performed by differential scanning calorimeter (DSC) analysis. The addition of Ga lowers the peak temperature and increases the heat capacity of the alloys. The thermal expansion of the test alloys increases with increasing temperature and the densities decreases with Ga additions. As the density, specific heat capacity and thermal diffusivity change with temperature and physical state, the thermal conductivity of the alloys first decreases and then increases. These results demonstrate the feasibility of using Sn-Bi-Zn-Ga alloys as the high-temperature heat transfer fluid. 展开更多
关键词 heat transfer fluid microstructure Sn-bi-Zn-Ga alloyS thermal properties
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Microstructure of Ag-Sn-Cu-Bi-Ni alloy after oxidation
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作者 吴春萍 易丹青 +3 位作者 李荐 王斌 许灿辉 卢小东 《中国有色金属学会会刊:英文版》 CSCD 2007年第A01期551-555,共5页
Ag-Sn-Cu-Bi-Ni alloy was internally oxidized in air. The phase constitution,surface morphology and microstructure evolution of the alloy after internal oxidation were analyzed by X-ray diffractometry,optical microscop... Ag-Sn-Cu-Bi-Ni alloy was internally oxidized in air. The phase constitution,surface morphology and microstructure evolution of the alloy after internal oxidation were analyzed by X-ray diffractometry,optical microscopy and scanning electron microscopy,respectively. The results show that the surface color of samples after internal oxidation is different from the different oxidation time and temperatures. The oxidation reaction firstly takes place on the grain boundaries. The microstructure developed on the initial stage of internal oxidation is fir-tree crystal texture. However,this texture structure disappears accompanied by grain growth and oxides forming during the prolonged oxidation. Finally,the oxide particles are uniformly dispersed in the silver matrix. 展开更多
关键词 合金 表面处理技术 微观结构
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机械合金化法制备的Mn_(15)Bi_(34)Te_(51)和La_(15)Bi_(34)Te_(51)热电材料 被引量:11
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作者 胡淑红 赵新兵 朱铁军 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2002年第4期287-290,共4页
用机械合金化法制备了Mn15Bi34Te51和La15Bi34Te51合金,XRD分析表明Mn15Bi34Te51和La15Bi34Te51分别在真空球磨150h和100h后实现合金化,La15Bi34Te51在真空球磨150h后形成了纳米结构的合金,镧原子的加入有助于Bi2Te3基合金的晶粒细化及... 用机械合金化法制备了Mn15Bi34Te51和La15Bi34Te51合金,XRD分析表明Mn15Bi34Te51和La15Bi34Te51分别在真空球磨150h和100h后实现合金化,La15Bi34Te51在真空球磨150h后形成了纳米结构的合金,镧原子的加入有助于Bi2Te3基合金的晶粒细化及非晶化。对La15Bi34Te51合金的XRD结构分析表明镧原子有可能进入了Bi2Te3层状结构的Te-Te原子层间。La15Bi34Te51合金Seebeck系数的测量表明当晶粒尺寸减小到纳米尺寸时,载流子散射机制有可能发生改变,导致了Seebeck系数的大幅上升。 展开更多
关键词 Mn15bi34te51 La15bi34te51 热电材料 机械合金化 纳米结构
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Bi_2Te_3基热电材料的研究现状及发展 被引量:9
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作者 侯贤华 胡社军 +3 位作者 汝强 赵灵智 余洪文 李伟善 《材料导报》 EI CAS CSCD 北大核心 2007年第7期111-114,118,共5页
热电材料是能将热能和电能直接相互转化的功能材料,它的出现为解决能源紧缺和环境污染提供了广阔的应用前景。从理论和实验两个方面对Bi2Te3基热电材料近年来国内外的研究现状及发展进行了简要介绍和评述,并指出了今后的发展方向。在理... 热电材料是能将热能和电能直接相互转化的功能材料,它的出现为解决能源紧缺和环境污染提供了广阔的应用前景。从理论和实验两个方面对Bi2Te3基热电材料近年来国内外的研究现状及发展进行了简要介绍和评述,并指出了今后的发展方向。在理论上主要基于能带理论、半导体超晶格以及密度泛函理论去寻求影响该材料的相关因子,在实验上主要采用分子束外延、激光脉冲沉积、合金化和水热合成法等方法制备该热电材料。 展开更多
关键词 热电材料 bi2te3 SEEBECK系数 电导率 热导率
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