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X-RAY OBSERVATIONS SHOWING THE EFFECT OF FLUID FLOW ON DENDRITIC SOLIDIFICATION IN Ga-In ALLOYS

机译:X射线观测,显示流体流动对Ga-In合金中树枝状凝固的影响

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The directional solidification of Ga-25wt%In alloys within a Hele-Shaw cell has been studied by X-ray radioscopy. The investigations were focused on the influence of melt convection on the dendritic growth. Natural convection occurs during a bottom up solidification because a lighter solute is rejected during crystallization. Forced convection has been produced by a specific electromagnetic pump. The direction of forced melt flow is almost horizontal at the solidification front. Melt flow induces various effects on grain morphology caused primarily by convective transport of solute, such as facilitation of the growth of primary trunks or lateral branches, dendrite remelting, fragmentation or freckle formation depending on the dendrite orientation, the flow direction and intensity. Forced flow eliminates solutal plumes and damps local fluctuations of solute. A preferential growth of the secondary arms occurs at the upstream side of the dendrites, whereas high solute concentration at the downstream side inhibits the formation of secondary branches.
机译:的Ga的25重量%的定向凝固在海伦 - 肖小区内的合金进行了研究通过X射线透视。调查主要集中在熔体对流对枝晶生长的影响。因为较轻的溶质结晶期间拒绝自下而上凝固过程中发生自然对流。强制对流是由一个特定的电磁泵产生。被迫熔体流动的方向是在凝固前沿几乎是水平的。熔体流动诱导由溶质的对流运输,如取决于枝晶取向,流动方向和强度主要干线或侧枝,枝晶重熔,碎裂或雀斑的形成的生长的促进引起主要晶粒形貌的各种效果。强制流消除溶质的羽毛和衰减溶质的局部波动。次级臂的优先生长发生在枝晶的上游侧,而在下游侧的高溶质浓度抑制二次枝的形成。

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