Jeon Sangho, Sansoucie Michael P, Matson Douglas M
Department of Mechanical Engineering, Tufts University, Medford, Massachusetts 02155, USA.
NASA Marshall Space Flight Center, Huntville, Alabama 35812, USA.
J Chem Thermodyn. 2019 Nov;138:51-58. doi: 10.1016/j.jct.2019.06.001. Epub 2019 Jun 3.
Thermophysical properties of Fe-Cr-Ni melts are studied using electrostatic levitation and rapid solidification techniques. Six hypoeutectic FeCr Ni alloys with a Cr/Ni ratio of around 0.8 were melted and solidified at different degrees of undercooling. From the observed relationship between the undercooling and thermal plateau time, the hypercooling limit and heat of fusion of FeCr Ni melts are determined as a function of Cr mass fraction. A ratio of specific heat and total hemispherical emissivity of the Fe-Cr-Ni melts is calculated using the time-temperature profiles. A new method is presented to evaluate the temperature dependence of specific heat for undercooled melts and applied to this alloy family.
利用静电悬浮和快速凝固技术研究了Fe-Cr-Ni熔体的热物理性质。对六种Cr/Ni比约为0.8的亚共晶FeCrNi合金在不同过冷度下进行了熔化和凝固。根据观察到的过冷度与热平台时间之间的关系,确定了FeCrNi熔体的过冷极限和熔化热与Cr质量分数的函数关系。利用时间-温度曲线计算了Fe-Cr-Ni熔体的比热容与总半球发射率之比。提出了一种评估过冷熔体比热容温度依赖性的新方法,并将其应用于该合金系。