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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Simultaneous Observation of Melt Flow and Motion of Equiaxed Crystals During Solidification Using a Dual Phase Particle Image Velocimetry Technique. Part II: Relative Velocities
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Simultaneous Observation of Melt Flow and Motion of Equiaxed Crystals During Solidification Using a Dual Phase Particle Image Velocimetry Technique. Part II: Relative Velocities

机译:使用双相粒子图像测速技术同时观察凝固过程中等轴晶体的熔体流动和运动。第二部分:相对速度

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摘要

A two-camera Particle Image Velocimetry (PIV) technique is applied to study the flow pattern and the equiaxed crystal motion during an equiaxed/columnar solidification process of Ammonium Chloride in a die cast cell. This technique is able to measure simultaneously the liquid and the equiaxed grain velocity pattern as already shown in Part I of this paper. The interaction between the equiaxed grains and the melt flow was explored by means of relative velocities. In single isolated configurations, the settling velocity of equiaxed crystal was found to be 41 times smaller than spheres of equivalent size. The coupling between the fluid flow and the equiaxed crystals was found to be important in areas of high crystal density. Chaotic and turbulent behaviors are found to be damped in regions of high equiaxed crystal density.
机译:应用两相机粒子图像测速(PIV)技术研究压铸电池中氯化铵的等轴/柱状凝固过程中的流动模式和等轴晶体运动。如本文第一部分所示,该技术能够同时测量液体和等轴晶粒速度模式。等轴晶粒与熔体流动之间的相互作用是通过相对速度进行的。在单个隔离的配置中,发现等轴晶体的沉降速度比等效尺寸的球小41倍。发现在高晶体密度的区域中,流体流和等轴晶体之间的耦合很重要。发现在高等轴晶密度的区域中,混沌和湍流行为受到抑制。

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