Characterization of the in-flight solidification of Sn-Pb uniform droplets

被引:0
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作者
Tuffile, CD [1 ]
Ando, T [1 ]
Chun, JH [1 ]
机构
[1] Northeastern Univ, Dept Mech Ind & Mfg Engn, Snell Engn Ctr 334, Boston, MA 02115 USA
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中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The effects of chamber atmosphere on the undercooling and microstructural evolution in traveling Sn-5wt.%Pb droplets were investigated using a non-adiabatic calorimetric method and a droplet solidification simulation model which accounted for large droplet undercoolings and subsequent rapid solidification. The droplets were produced by the controlled breakup of a laminar jet to have the same molten diameter of 185 mu m and solidified in an identical manner, Use of 99.9% pure industrial-grade nitrogen and a CaSO4-desiccated nitrogen - 2% hydrogen gas mixture as the chamber atmosphere produced droplet undercoolings of 74 and 146 K, respectively, in a consistent manner, The increase in droplet undercooling was achieved by control of oxide catalyst formation on the droplet surface. Droplets quenched from the fully molten state retained about 0.0003 J more enthalpy per droplet than those quenched after nucleation and recalescence. This retention of enthalpy was attributed to such structural metastability as supersaturation and size refinement, Formation of a non-equilibrium phase is thermodynamically possible though not confirmed in the present study, The results provide critical information for advanced microstructural control in both controlled spray forming and powder production.
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页码:359 / 371
页数:13
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