首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Thermoelectric current and magnetic field interaction influence on the structure of directionally solidified Sn-10 wt.%Pb alloy
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Thermoelectric current and magnetic field interaction influence on the structure of directionally solidified Sn-10 wt.%Pb alloy

机译:热电流和磁场相互作用对定向凝固Sn-10 wt。%Pb合金的组织结构的影响

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摘要

In this experimental work Sn-10 wt.%Pb alloy is directionally solidified in Bridgman setup at various growth velocities (from 0.5 um/s to 20 um/s) under transverse 0.4 T magnetic field. Temperature gradient of 8 K/mm is maintained perpendicular to the solidification direction during experiments. Liquid phase convection and its influence on the structure and segregation of an alloy, caused by magnetic field and thermoelectric current interaction (thermoelectromagnetic convection or TEMC) is studied experimentally and estimated theoretically in this work. Detailed velocity order of magnitude estimation is carried out. Besides optical microscopy, component distribution along the diameter of the sample is quantitatively measured by scanning electron microscopy. Results show that significant influence on the macrosegregation and dendrite spacing of a metallic alloy is achieved if sample is solidified with applied transverse magnetic field at low solidification velocity.
机译:在这项实验工作中,Sn-10 wt。%Pb合金在Bridgman装置中在0.4 T的横向磁场下以各种生长速度(从0.5 um / s到20 um / s)定向凝固。在实验过程中,垂直于凝固方向保持8 K / mm的温度梯度。在这项工作中,实验研究了液相对流及其对由磁场和热电流相互作用(热电磁对流或TEMC)引起的合金结构和偏析的影响,并在理论上进行了估算。进行详细的速度量级估计。除了光学显微镜,还通过扫描电子显微镜对沿样品直径的组分分布进行了定量测量。结果表明,如果样品以较低的凝固速度施加横向磁场进行凝固,则对金属合金的宏观偏析和枝晶间距会产生显着影响。

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