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国家自然科学基金(50971104)

作品数:3 被引量:4H指数:2
相关作者:郑亚萍王楠任群姚文静张莉更多>>
相关机构:西北工业大学更多>>
发文基金:国家自然科学基金中国航空科学基金西北工业大学研究生创业种子基金更多>>
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调幅分解及形核对相分离作用机理研究被引量:2
2012年
以SCN-30wt%H_2O,SCN-50 wt%H_2O和SCN-80 wt%H_2O三组透明体系,在恒温场下实现了形核和调幅分解两种过程;在此基础上,施加温度梯度,研究了第二相液滴的迁移运动规律.结果表明,相分离在临界成分体系以调幅分解方式进行,在另外两种体系中以形核长大方式进行;调幅分解与形核过程相比,反应进行得更快,液滴长大到同一尺寸所需时间仅为形核所需时间的1/3—1/2.且临界成分体系有更大的不混溶间隙,所以第二相液滴具有更多迁移时间,揭示了偏晶体系相分离过程中在临界成分处易获得壳-核组织的内在机理.在单向温度场中,测量了不同半径的液滴迁移速率,并且与理论Marangoni迁移速率值作比较,发现液滴迁移速率和Marangoni理论迁移速率符合较好.说明了在较好地抑制自然对流条件下Marangoni迁移对于相分离过程起主要作用.
任群王楠张莉王建元郑亚萍姚文静
关键词:调幅分解形核
Competitive Nucleation and Rapid Growth of Co-Si Intermetallic Compounds during Eutectic Solidification under Containerless Processing Condition
2011年
The liquid-solid transitions of (Co2Si+CoSi) and (CoSi+CoSi2) eutectic alloys were realized in drop tube and the rapid eutectic growth mechanism of intermetallic compounds was examined. The experimental and calculated results indicate that with increasing Co content, the intermetallic compound prefers nucleating primarily. The eutectic microstructures experience the transitions of 'lamellar-anomalous-divorced' eutectic with undercooling. In undercooled state, the growth of CoSi intermetallic compound always lags behind others, and no matter how large the undercooling is, this intermetallic compound grows under the solutal diflusion control. The calculated coupled zone demonstrates that (Co2Si+CoSi) eutectic can form within certain undercooling regime, when the composition is in the range from 23.6% to 25.4% Si. And the calculated coupled zone of (CoSi+CoSi2) covers a composition range from 40.8% to 43.8% Si.
Wenjing YaoZipeng YeNan WangXiujun HanJianyuan WangXixing Wen
关键词:UNDERCOOLING
Controlling the Properties of Solvent-free Fe_3O_4 Nanofluids by Corona Structure被引量:2
2012年
We studied the relationship between corona structure and properties of solvent-free Fe3O4 nanofluids. We proposed a series of corona structures with different branched chains and synthesize different solvent-free nanofluids in order to show the effect of corona structure on the phase behavior, dispersion, as well as rheology properties. Results demonstrate novel liquid-like behaviors without solvent at room temperature. Fe3O4 magnetic nanoparticles content is bigger than 8% and its size is about 23 nm. For the solvent-free nanofluids,the long chain corona has the internal plasticization, which can decrease the loss modulus of system, while the short chain of corona results in the high viscosity of nanofluids. Long alkyl chains of modifiers lead to lower viscosity and better flowability of nanofluids. The rheology and viscosity of the nanofluids are correlated to the microscopic structure of the corona, which provide an in-depth insight into the preparing nanofluids with promising applications based on their tunable and controllable physical properties.
Yumo TanYaping ZhengNan WangAibo Zhang
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