Guan Ren-guo1, Zhao En-jun2, Wang Fu-xing1, et al. Heat and mass transfers of melt alloy during the Vibrating Wavelike Sloping Plate process. [J]. Special Casting & Nonferrous Alloys (S1):368-371(2008)
Guan Ren-guo1, Zhao En-jun2, Wang Fu-xing1, et al. Heat and mass transfers of melt alloy during the Vibrating Wavelike Sloping Plate process. [J]. Special Casting & Nonferrous Alloys (S1):368-371(2008)DOI:
Heat and mass transfers of melt alloy during the Vibrating Wavelike Sloping Plate process
摘要
采用试验与数值模拟相结合的方法
对波浪型倾斜板振动作用下金属熔体在斜板表面的传热与传质进行了研究。结果表明
在波浪型倾斜板振动过程中
熔体在斜板表面宏观上沿斜板表面法向散热
合金等温线从靠近斜板侧向靠近空气侧逐渐向下偏移。微观熔体质点在斜板表面沿各个方向散热均匀
这种动态传热规律促进了爆发形核
为细小球形晶的形成提供了重要前提条件。振动与金属流动大大提高了溶质扩散系数
加速溶质在液相中扩散
使熔体内部成分场均匀
为晶粒爆发形核和保持球状生长提供了重要条件。
Abstract
Heat and mass transfers during the Vibrating Wavelike Sloping Plate process (VWSP) were studied by the methods of numerical simulation and experiment. The results show that during the VWSP process
the heat of the melt diffuses along the normal line to the sloping plate surface in the macroscopic scale
and the isothermal line gradually deviates from the sloping plate surface to the interface between the melt and the air. Micro mass point dissipates heat homogenously along very directions on the surface
which promotes eruptive nucleation and provides important preconditions for fine spherical grain formation. Vibration and metal flow greatly improve solute diffusion coefficient and accelerate the solute diffusion in the liquid phase
which leads to homogenous solute distribution and provides preconditions for eruptive nucleation and spherical growth.
Yang Xiaorong Mao Weimin Pei Sheng 北京科技大学材料科学与工程学院
毛卫民 北京科技大学材料科学与工程学院
裴胜 北京科技大学材料科学与工程学院
Xiao Changyan 武汉工程大学机电工程学院,化工装备强化与本质安全湖北省重点实验室
Lin Chong 武汉工程大学机电工程学院,化工装备强化与本质安全湖北省重点实验室;华中科技大学材料科学与工程学院,材料成形与模具技术全国重点实验室
Tan Weiwen 武汉工程大学机电工程学院,化工装备强化与本质安全湖北省重点实验室
Li Jie 武汉工程大学机电工程学院,化工装备强化与本质安全湖北省重点实验室
Wu Shusen 华中科技大学材料科学与工程学院,材料成形与模具技术全国重点实验室
相关机构
School of Materials Science and Engineering,University of Science andTechnology Beijing
Hubei Provincial Key Laboratory of Chemical Equipment Intensification and Intrinsic Safety, School of Mechanical and Electrical Engineering, Wuhan Institute of Technology
State Key Laboratory of Materials Processing and Die & Mould Technology, School of Materials Science and Engineering, Huazhong University of Science and Technology
Chinalco Guangxi Nonferrous Rare Earth Development Co., Ltd.
Guangxi Guorui Rare Scandium New Material Technology Co., Ltd.