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Simulation for the Effect of Wetting Conditions of Melt Puddle on the Fe–Si–B Ribbon Alloy in the Planar-Flow Melt-Spinning Process

机译:熔体浸润条件对平面流熔纺过程中Fe-Si-B带状合金影响的模拟

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The wetting effect of melt puddle between nozzle and chilling wheel in the planar-flow melt-spinning process was simulated numerically. A two-dimensional model was developed for the puddle in which the inertial force, viscosity, surface tension, wettability, and heat transfer with phase transformation were incorporated. The wetting conditions include the static contact angle between the puddle and nozzle and the dynamic contact angle between the puddle and chill wheel, and their influence on the puddle shape, ribbon thickness and air-pocket frequency were evaluated. Results show that the puddle shape was affected significantly by the wetting condition on the nozzle surface rather than that on the wheel surface. The contact condition between the puddle and nozzle must be non-wetting in order to reach a steady puddle shape rapidly. On the other hand, a wetting contact condition is preferable between the puddle and wheel surface to reduce the amount of air entrainment and lower the air-pocket frequency on the ribbon surface.
机译:数值模拟了平面流熔纺过程中喷嘴与激冷轮之间熔体熔池的润湿效果。建立了水坑的二维模型,其中包含了惯性力,粘度,表面张力,润湿性和具有相变的热传递。润湿条件包括水坑与喷嘴之间的静态接触角和水坑与冷却轮之间的动态接触角,并评估了它们对水坑形状,色带厚度和气穴频率的影响。结果表明,水坑的形状受喷嘴表面而非车轮表面润湿条件的影响很大。水坑与喷嘴之间的接触条件必须为非润湿状态,以便快速达到稳定的水坑形状。另一方面,在水坑与轮表面之间优选为湿润接触条件,以减少夹带的空气并降低色带表面上的气穴频率。

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