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Role of C and Fe in Grain Refinement of an AZ63B Magnesium Alloy by Al-C Master Alloy 被引量:7
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作者 Yichuan PAN+, Xiangfa LIU and Hua YANG Key Laboratory of Liquid Structure and Heredity of Materials, Ministry of Education, Shandong University,Jinan 250061, China 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2005年第6期822-826,共5页
In this study, grain refining effect of Al-1.5℃ master alloy was examined on an AZ63B magnesium alloy, and the refining mechanism was studied through investigating the role of C and Fe in this process. The results sh... In this study, grain refining effect of Al-1.5℃ master alloy was examined on an AZ63B magnesium alloy, and the refining mechanism was studied through investigating the role of C and Fe in this process. The results show that addition of Al-1.5℃ master alloy leads to significant decrease of the mean grain size from about 270μm to 50μm at the center of the AZ63 alloy ingot. Grain refinement by carbon addition is mainly due to the heterogeneity nucleation on the Al-, C-, O-, Fe- and Mn-rich particles, but not constitutional undercooling caused by the carbon solute element. Fe plays an important role in the formation of the nucleating particles, but not acts as an inhibiting element. 展开更多
关键词 Grain refinement AZ63B MAGNESIUM al-c master alloy Nucleating particle
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Electrolytic preparation of Al-Ca master alloy on liquid Al cathode
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作者 杨宝刚 邱竹贤 高炳亮 《中国有色金属学会会刊:英文版》 CSCD 2000年第2期246-249,共4页
As a newly developing superplastic aluminum alloy, Al Ca alloy has been widely used in industry, however the technology for preparing Al Ca master alloy and its influencing factors need to be further studied. Therefor... As a newly developing superplastic aluminum alloy, Al Ca alloy has been widely used in industry, however the technology for preparing Al Ca master alloy and its influencing factors need to be further studied. Therefore the Al Ca master alloy was prepared by using liquid aluminum cathode and a mixture of 80%CaCl 2 18%KCl 2%CaF 2 as the molten salt electrolysis in a laboratory electrolyte cell; the effects of electrolysis temperature, cathodic current density and electrolytic duration on current efficiency and Ca content of Al Ca alloy as well were studied. Through laboratory experiments, the parameters for smooth electrolytic reaction were proposed. The proper electrolysis technology is as follows: with the 80%CaCl 2 18%KCl 2%CaF 2 electrolyte, the electrolytic temperature is 973 K and the cathodic current density is 0.8 A/cm 2, the electrolysis can go on smoothly and a calcium content of 17.5%(mass fraction) can be obtained. With the increase of electrolysis duration, the calcium content in the alloy increases whereas the current efficiency decreases. 展开更多
关键词 al-ca master alloy ELECTROLYSIS current efficiency CALCIUM content
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Grain refining mechanism of Al-3B master alloy on hypoeutectic Al-Si alloys 被引量:11
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作者 刘源 丁超 李言祥 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2011年第7期1435-1440,共6页
Al-3B master alloy is a kind of efficient grain refiner for hypoeutectic Al-Si alloys. Experiments were carried out to evaluate the effect of undissolved AlB2 particles in Al-3B master alloy on the grain refinement of... Al-3B master alloy is a kind of efficient grain refiner for hypoeutectic Al-Si alloys. Experiments were carried out to evaluate the effect of undissolved AlB2 particles in Al-3B master alloy on the grain refinement of Al-7Si. It is found that the number and the settlement of AlB2 particles in the melt all have effect on the grain refining efficiency. On the basis of experiments and theoretical analysis, a new grain refinement mechanism was proposed to explain the grain refinement action of Al-3B on hypoeutectic Al-Si alloys. The formation of 'Al-AlB2' shell structure is the direct reason for grain refinement and the undissolved AlB2 particles is the indirect nucleating base for subsequent α(Al) phase. 展开更多
关键词 Al-3B master alloy hypoeutectic Al-Si alloys nucleation mechanism grain refinement
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Preparation of V-Ti-Fe master alloys by metallothermic reduction method 被引量:5
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作者 王斌 刘奎仁 +2 位作者 陈建设 高腾跃 何季麟 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2012年第6期1507-1512,共6页
V-Ti-Fe master alloys were prepared by metaUothermic reduction method, and the influences of the mass ratio of V205 to TiO2, Al and Al-Mg alloy addition amounts on the metal recovery rates and alloy compositions were ... V-Ti-Fe master alloys were prepared by metaUothermic reduction method, and the influences of the mass ratio of V205 to TiO2, Al and Al-Mg alloy addition amounts on the metal recovery rates and alloy compositions were investigated. The results show that appropriate technological parameters are: the mass ratio of V205 to TiO2 is 0.5:1, Al addition represents 95% of the theoretical value, and the Al-Mg alloy addition amount is one third that of the Al addition. The results from energy spectrum analysis show that V and Fe distribute uniformly in the prepared alloy, while the segregation for Ti, i.e. Ti-rich phase is detected. A spray refming process was carried out to reduce the impurity contents of Al and O in the prepared alloys. The Al content drops from 4.27% to 1.86%, and the O content drops from 2.10% to 0.91% after the refining process. 展开更多
关键词 V-Ti-Fe master alloys metallothermic reduction method recovery rates refining process
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Grain refinement mechanism of Al-5C master alloy in AZ31 magnesium alloy 被引量:6
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作者 张爱民 郝海 张兴国 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2013年第11期3167-3172,共6页
Al-5C master alloy was prepared by powder in situ synthesis process, and its effects on grain refinement of AZ31 alloy and refining mechanism were investigated. The results indicate that the AI 5C master alloy consist... Al-5C master alloy was prepared by powder in situ synthesis process, and its effects on grain refinement of AZ31 alloy and refining mechanism were investigated. The results indicate that the AI 5C master alloy consists of a(Al) and A14C3 phases, and the size distribution of Al4C3 particles is controlled by sintering time. The AI 5C master alloy can remarkably reduce the grain size of AZ31 alloy, which decreases with the increasing addition amount of AI-SC master alloy when the addition amount is below 2%. The refining mechanism is attributed to the formation of new compounds of Al-C-Mnparticles by Al4C3 and Mn, which might act as nucleating substrates for a-Mg grain. 展开更多
关键词 AZ31 magnesium alloy grain refinement AI-SC master alloy AI C Mn compounds
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Influence of Al-Mn master alloys on microstructures and electrochemical properties of Mg-Al-Pb-Mn alloys 被引量:2
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作者 陈彬 王日初 +2 位作者 彭超群 冯艳 王乃光 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2014年第2期423-430,共8页
Mg-Al-Pb alloy is one of the newly developed materials for the seawater activated batteries. As-cast Mg-6Al-5Pb and Mg-6Al-5Pb-0.5Mn alloys with different additions of Al-15%Mn (mass fraction), Al-30%Mn and Al-50%Mn... Mg-Al-Pb alloy is one of the newly developed materials for the seawater activated batteries. As-cast Mg-6Al-5Pb and Mg-6Al-5Pb-0.5Mn alloys with different additions of Al-15%Mn (mass fraction), Al-30%Mn and Al-50%Mn master alloys were prepared by melting and casting. Their microstructures were observed by optical microscopy and scanning electron microscopy. The electrochemical properties, hydrogen evolution and mass loss of Mg-6Al-5Pb-0.5Mn alloys were studied. The results show that Mg-6Al-5Pb-0.5Mn alloy added with Al-50%Mn master alloy provides more negative corrosion average potential (-1.66 V), smaller corrosion current density (7 μm/cm2) and lower free corrosion rate (0.51 mg·cm-2·h-1) than other alloys. This is probably attributed to the presence of Al11Mn4 phase, which facilitates the self-peeling of corrosion products and enlarges the electrochemical reaction area as well as enhances the electrochemical activity. 展开更多
关键词 AL-MN Mg-Al-Pb-Mn AL-MN master alloy Mg-Al-Pb-Mn hydrogen evolution corrosion seawater activated batteries
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Microstructure evolution of Al-Sr master alloy during continuous extrusion 被引量:3
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作者 毕胜 运新兵 +3 位作者 裴久扬 赵颖 闫志勇 张旭 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2017年第2期305-311,共7页
The microstructure evolution of Al–Sr master alloy during continuous extrusion was investigated using X-ray diffractometer, scanning electron microscope and transmission electron microscope. Results indicate that t... The microstructure evolution of Al–Sr master alloy during continuous extrusion was investigated using X-ray diffractometer, scanning electron microscope and transmission electron microscope. Results indicate that the continuous extrusion process could change the Al4Sr particles of the alloy significantly in size and morphology. The as-cast needle-like Al4Sr particles are broken into small blocks in upsetting zone and crushed heavily in adhesion zone. Plenty of dislocations get tangled up in right-angle bending zone. Al4Sr particles grow in the extending zone. Finally, Al4Sr particles in products are approximately 28 μm in length. Al2Sr particles precipitate during the process. Compared with products by horizontal extrusion, Al4Sr particles by continuous extrusion are finer and distribute more evenly. 展开更多
关键词 Al-Sr master alloy grain refiner continuous extrusion microstructure evolution
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Effect of cooling rate on morphology of primary particles in Al-Sc-Zr master alloy 被引量:2
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作者 徐聪 杜柔 +4 位作者 王雪姣 Shuji HANADA Hiroshi YAMAGATA 王文红 马朝利 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2014年第7期2420-2426,共7页
Al-1.0%Sc-1.0%Zr (mass fraction) master alloy was prepared at different cooling rates. The morphology and thermodynamics data of the primary particles of the master alloy were investigated by X-ray diffraction (XRD... Al-1.0%Sc-1.0%Zr (mass fraction) master alloy was prepared at different cooling rates. The morphology and thermodynamics data of the primary particles of the master alloy were investigated by X-ray diffraction (XRD), scanning electron microscopy (SEM) and differential scanning calorimetry (DSC). It shows that the primary particles are dendrite-shaped particles comprised of several attached small cubic, cusped-cubic or crucifer shape particles at slow cooling rate. However, the primary particles are separated with crucifer shape at intermediate cooling rate, and they are cubic with cusped-cubic shape at high cooling rate. Meanwhile, the separated and attached particles present AlaSc/AlaZr1-xScx core-shell structure. The formation mechanism of the structure was systematically investigated by a mathematical model. 展开更多
关键词 Al-Sc-Zr master alloy MORPHOLOGY core-shell structure cooling rate formation mechanism
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Production of Al-B master alloys by mixing KBF_4 salt into molten aluminum 被引量:3
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作者 王青亮 赵洪生 +2 位作者 栗争光 沈利 赵九洲 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2013年第1期294-300,共7页
Two mixing techniques,the immersion method and the vortex method,were adopted in the production of Al-3%B master alloys since the generally used production route involving the direct addition of KBF4 salt to molten al... Two mixing techniques,the immersion method and the vortex method,were adopted in the production of Al-3%B master alloys since the generally used production route involving the direct addition of KBF4 salt to molten aluminum has several drawbacks.The experimental results demonstrate that the Al-B master alloys produced by the immersion method show a microstructure characterized by the appearances of AlB12 phase and many agglomerations of boride particles,while the Al-B master alloy produced by the vortex method exhibits a well dispersed microstructure of AlB2 particles in the matrix.The distinct microstructure features result from the differences in the stirring speed during the salt additions and the average size of the salt droplets achieved by the salt additions. 展开更多
关键词 Al-B master alloy AGGLOMERATION AlB12 mixing technique
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Grain refining effect of Mg by novel particle cluster-containing Al-Ti-C master alloy 被引量:2
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作者 刘晓滕 郝海 +1 位作者 朱小旭 张兴国 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2015年第6期1804-1810,共7页
A novel A1-Ti-C master alloy containing A14C3 and TiC particle clusters, which exhibits great refining potential for Mg, was prepared. With the addition of 2% A1-Ti-C master alloy, the grains transform to equiaxed cry... A novel A1-Ti-C master alloy containing A14C3 and TiC particle clusters, which exhibits great refining potential for Mg, was prepared. With the addition of 2% A1-Ti-C master alloy, the grains transform to equiaxed crystal with a diameter of (110-a:17) ~tm. The results indicate that A14C3 and TiC particle cluster, rather than a single particle, plays an important role in the refining process. Compared with the simplex smooth nucleating substrate, concave regions on the particle cluster provide easier route for the transformation from liquid Mg atoms to stable nucleus. Nucleus with a small size can also reach the critical nucleation radius when they attach on the concave regions of the substrate. A14C3 and TiC particle clusters thus become more favorable nucleating substrate for a-Mg grains. 展开更多
关键词 Mg A1-Ti-C master alloy particle cluster grain refinement
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Al-Si-P master alloy and its modification and refinement performance on Al-Si alloys 被引量:11
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作者 ZUO Min LIU Xiangfa +1 位作者 DAI Hongshang LIU Xiangjun 《Rare Metals》 SCIE EI CAS CSCD 2009年第4期412-417,共6页
An Al-Si-P master alloy has been developed by an in-situ reaction and the electron probe microanalyzer (EPMA) results show that there are many pre-formed AlP particles contained in the master alloy. Silicon introduc... An Al-Si-P master alloy has been developed by an in-situ reaction and the electron probe microanalyzer (EPMA) results show that there are many pre-formed AlP particles contained in the master alloy. Silicon introduced into the system plays an important role in remarkably improving the distribution and content of AlP particles due to their similar crystal structure and lattice parameters. ZL109 alloys have shown fast modification response to the addition of 0.5% Al-15Si-3.5P master alloy at 720℃, with a mass of primary Si precipitating in size of about 15 μm. Also, coarse primary Si grains in AI-30Si alloy can be refined dramatically from 150 μm to 37 μm after the addition of 2.0% Al-15Si-3.5P master alloy at 850℃. The P recovery of the Al-15Si-3.5P master alloy is much higher than that of a Cu-8.5P master alloy due to the pre-formed AlP particles. 展开更多
关键词 Al-Si alloys Al-Si-P master alloy primary Si P recovery MODIFICATION REFINEMENT
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Preparation of Al-Sr Master Alloy in Aluminum Electrolysis Cell 被引量:6
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作者 杨宝刚 于佩志 +1 位作者 李冰 邱竹贤 《Rare Metals》 SCIE EI CAS CSCD 2000年第3期192-196,共4页
Al Sr master alloy was prepared by using liquid aluminum cathode and a mixture of Na 3AlF 6 - SrCO 3 as the basic molten salt electrolyte in a laboratory electrolysis cell.The effects of electrolyte compositi... Al Sr master alloy was prepared by using liquid aluminum cathode and a mixture of Na 3AlF 6 - SrCO 3 as the basic molten salt electrolyte in a laboratory electrolysis cell.The effects of electrolyte composition,electrolysis temperature,cathodic current density and the electrolytic duration on Sr content of Al Sr alloy were studied.Through laboratory experiments,the parameters for smooth electrolytic reaction were proposed. 展开更多
关键词 Al Sr master alloy ELECTROLYSIS Strontium content
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Refinement of primary Si in Cu-50Si alloys with novel Al-Zr-P master alloy 被引量:5
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作者 Min Zuo Zhong-Shi Zhang +1 位作者 Xin-Ying Teng Hao-Ran Geng 《Rare Metals》 SCIE EI CAS CSCD 2013年第3期252-257,共6页
In this article, a novel Al-6Zr-2P master alloy with ZrP particles was successfully synthesized, and the refining performance of this novel master alloy for the primary Si in Cu-50Si alloys was also investigated. By m... In this article, a novel Al-6Zr-2P master alloy with ZrP particles was successfully synthesized, and the refining performance of this novel master alloy for the primary Si in Cu-50Si alloys was also investigated. By means of the fracture plane observation, it is found that the ZrP phase would precipitate first in the solidification pro- cess, and then, the ZrAl3 phase grows around them. Fur- thermore, it is observed that the refining effect can be remarkably improved by changing the addition sequence of the raw materials. After the melting of commercial Cu, the 2.0 wt% Al-6Zr-2P master alloy and crystalline Si were added in sequence, and the mean size of the primary Si in Cu-50Si alloy can be significantly refined from 255.7 to 75.3 gm. Meanwhile, the refining mechanism was dis- cussed in detail. 展开更多
关键词 Al-Zr-P master alloy Cu-Si alloy ZRP Microstructure Phase transformation
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INFLUENCE OF Al-5Ti-1B MASTER ALLOY ON MICROSTRUCTURE AND DAMPING CAPACITY OF ZA27 ALLOY 被引量:5
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作者 Zhang, Zhongming Wang, Jincheng +3 位作者 Lu, Yili Song, Guangsheng Yang, Gencang Zhou, Yaohe 《中国有色金属学会会刊:英文版》 EI CSCD 1998年第3期145-149,共5页
1INTRODUCTIONThedampingcapacityofamaterialisameasureoftheenergythatisdissipatedinthematerialduringmechanical... 1INTRODUCTIONThedampingcapacityofamaterialisameasureoftheenergythatisdissipatedinthematerialduringmechanicalvibrationundercyc... 展开更多
关键词 ZA27 alloy Al 5Ti 1B master alloy MODIFICATION DAMPING capacity DAMPING mechanism
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Influences of Preparation Conditions and Melt Treatment Procedures on Melt Treatment Performance of Al-5Ti-B and Al-10Sr Master Alloys 被引量:4
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作者 Pengfa FENG Jinglin TANG Xinyan JIN Shuangshou LI Daben ZENG 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2006年第1期50-54,共5页
The influences of preparation conditions of Al-5Ti-B (as-cast and hot-rolled) and Al-10Sr (as-cast and hotextruded) and melt treatment procedures on the grain refinement and modification performance of A356 alloy ... The influences of preparation conditions of Al-5Ti-B (as-cast and hot-rolled) and Al-10Sr (as-cast and hotextruded) and melt treatment procedures on the grain refinement and modification performance of A356 alloy are experimentally studied. For the two master alloys, the 50% reduction is sufficient to meet the demands of the efficient grain refinement and modification of A356 alloy. When Al-STi-B is introduced into the melt prior to degassing, the grain refinement efficiency of Al-5Ti-B will be greatly increased due to the better dispersity of TiB2 particles. Al-5Ti-B master alloy is less prone to affect the modification effect of Al-10Sr when they are used together. 展开更多
关键词 Grain refinement MODIFICATION Hot deformation master alloys A356 alloy
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Refining Effect of a New Al3Ti1B1RE Master Alloy on Al Sheets Used for Can Manufacture and Behavior of Rare Earths in Master Alloy 被引量:11
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作者 傅高升 陈文哲 钱匡武 《Journal of Rare Earths》 SCIE EI CAS CSCD 2003年第5期571-576,共6页
The refining effect of Al3Ti1B1RE master alloy on Al sheets used for pressure can manufacture and the behavior of mixed rare earths in master alloy were investigated with XRD, OM, SEM and EDAX. It is found that the r... The refining effect of Al3Ti1B1RE master alloy on Al sheets used for pressure can manufacture and the behavior of mixed rare earths in master alloy were investigated with XRD, OM, SEM and EDAX. It is found that the refining effect of the refiner on the material has superiority over foreign or domestic Al5Ti1B refiner, and the refiner still retains its refining ability for 6 h after adding it to molten Al, thus improving the strength and plasticity of the material remarkably. The excellent refining effect and stability of AlTiBRE refiner result from that RE can lower the surface energy of molten Al and improve the wetting characteristics of molten Al on refinement nuclei such as TiAl 3, TiB 2, etc., thus giving full play to the effect of heterogeneous nucleation and impeding the congregating tendency of TiB 2 phase in molten Al. At the same time, RE gathering in front of solid/liquid interface are also easy to cause composition supercooling in molten Al, thus impeding the growth of α Al grains and promoting α Al nucleation on refinement nuclei. In addition, RE also play certain role in purification and grain refinement, or modification, especially their effect of purification can improve the metallurgical quality of AlTiBRE master alloy. 展开更多
关键词 matel materials Al sheets used for can manufacture grain refinement Al3Ti1B1RE master alloy refining mechanism rare earths
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Effect of cooling rate on morphology and type of vanadium-containing phases in Al-10V master alloy 被引量:3
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作者 Qing-feng Zhu Yi Meng +3 位作者 Yan-lei Kang Shu-ping Kong Yang-peng Ou Yu-bo Zuo 《China Foundry》 SCIE 2019年第5期300-306,共7页
Effects of cooling rates on the morphology, sizes and species of primary vanadium-containing phases in Al-10V master alloys were investigated. The results show that the primary vanadium-containing phases with differen... Effects of cooling rates on the morphology, sizes and species of primary vanadium-containing phases in Al-10V master alloys were investigated. The results show that the primary vanadium-containing phases with different morphologies and compositions present in Al-10V master alloys at different cooling rates with the pouring temperature of 1,170 °C. When the Al-10V master alloy is solidified in the refractory mold at a cooling rate of 2 °C·s-1, the vanadium-containing phases are mainly plate-like Al10V phases, with the average size of 100.0 μm in the center and 93.2 μm at the edge of the ingot. When the master alloy is solidified in the graphite mold at a cooling rate of 24.3 °C·s-1, the primary vanadium-containing phases are dendritic Al3V phases, with the average length of 297.0 μm for the first dendrite in the center and 275.0 μm at the edge of the ingot. The secondary dendrite arm spacing (SDAS) is 9.5 μm in the center and 9.3 μm at the edge of the ingot, respectively. When the solidification is carried out in the copper mould at a cooling rate of 45.7 °C·s-1, the primary vanadium-containing phases are also Al3V phases but with smaller size, compared with that prepared at the cooling rate of 24.3 °C·s-1. As a result, the average length is 190.0 μm for the first dendrite in the center and 150.0 μm at the edge of the ingot. The SDAS is 9.8 μm in the center and 4.4 μm at the edge of the ingot, respectively. 展开更多
关键词 Al-V master alloy cooling rate vanadium-containing phase SOLIDIFICATION
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Improvement in grain refinement efficiency of Mg-Zr master alloy for magnesium alloy by friction stir processing 被引量:8
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作者 Chengqi Wang Ming Sun +2 位作者 Feiyan Zheng Liming Peng Wenjiang Ding 《Journal of Magnesium and Alloys》 SCIE EI CAS 2014年第3期239-244,共6页
Previous studies have proved that the zirconium(Zr)alloying and grain refining performance of a Mg-Zr master alloy on Mg alloy is closely related to the distribution of Zr particle size,and a Mg-Zr master alloy with m... Previous studies have proved that the zirconium(Zr)alloying and grain refining performance of a Mg-Zr master alloy on Mg alloy is closely related to the distribution of Zr particle size,and a Mg-Zr master alloy with more Zr particles in size range of 1-5μm exhibits a better refining efficiency.In this paper,friction stir processing(FSP)was used to modify the Zr particles size distribution of a commercially available Mg-30 wt.%Zr master alloy,and the subsequent grain refinement ability was studied by trials on a typical Mg-3Nd-0.2Zn-0.6Zr(wt.%,NZ30K)alloy.It is found that plenty of large Zr particles in the as-received Mg-30%Zr master alloy are broken by FSP.Grain refinement tests reveal that the refining efficiency of Mg-30%Zr alloy is significantly improved by FSP,which is attributed to the better distribution of Zr particles.The refinement effect by adding 0.6%FSP-ed Mg-30%Zr is approximately equivalent to that by adding 1.0%as-received Mg-30%Zr.Due to the easy and convenient operation of FSP,this study provides a new method to develop a more efficient Mg-Zr refiner. 展开更多
关键词 Friction stir processing(FSP) Magnesium alloy Mg-Zr master alloy Grain refinement
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Aluminothermic Reduction of K_2ZrF_6 for Preparation of Al-Zr Master Alloy 被引量:2
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作者 Rajagopalan P.K., Sharma I.G. and Krishnan T.S. Materials Processing Division, Bhabha Atomic Research Centre, Mumbai 400085, India Bose D.K. Uranium Extraction Division, Bhabha Atomic Research Centre, Mumbai 400085, India 《Rare Metals》 SCIE EI CAS CSCD 1999年第2期40-43,共4页
This paper summarizes a process for the preparation of Al5%Zr master alloy by the reduction of K2ZrF6 with aluminium. The reduction in grain size of aluminium by addition of known quantity of master alloy is also stud... This paper summarizes a process for the preparation of Al5%Zr master alloy by the reduction of K2ZrF6 with aluminium. The reduction in grain size of aluminium by addition of known quantity of master alloy is also studied. 展开更多
关键词 Grain refinement master alloy alloy yield Zirconium recovery
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Grain refinement of AZ31 magnesium alloy by Al-Ti-C-Y master alloy 被引量:2
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作者 许春香 卢斌峰 +1 位作者 吕正玲 梁伟 《Journal of Rare Earths》 SCIE EI CAS CSCD 2008年第4期604-608,共5页
Al-Ti-C-Y master alloy was prepared by combining SHS technique and melting-casting method. The microstructure of master alloy and its grain-refining effect on AZ31 alloy were investigated by means of OM, XRD, SEM and ... Al-Ti-C-Y master alloy was prepared by combining SHS technique and melting-casting method. The microstructure of master alloy and its grain-refining effect on AZ31 alloy were investigated by means of OM, XRD, SEM and EDS. Experimental results indicated that the prepared master alloy consisted of α-Al, TiAl3, TiC and Al3Y phases, and exhibited good grain-refining performance of AZ31 alloy. Morphology of α-Mg changed from coarse dendritic to free equiaxed and the average grain size of α-Mg matrix reduced from the original 580 to 170 μm after adding 1.0 wt.% master alloy. The grain refining efficiency of Al-Ti-C-Y master alloy on AZ31 alloy was mainly attributed to heterogeneous nucleation of TiC particles and grain growth restriction of Al-Y compound or TiC at grain boundaries. 展开更多
关键词 Al-Ti-C-Y master alloy grain refinement AZ31 magnesium alloy rare earths
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