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A foam engulfment model for lost foam casting of aluminum

机译:铝消失模铸造的泡沫吞噬模型

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In lost foam casting of aluminum, pressure equilibrium between the liquid metal and the decomposing foam can produce a variety of different shapes for the metal flow front, ranging from convex to concave. In extreme cases, the flow front can become so strongly concave that small pieces of the foam pattern begin to break off inside the concave hollow of the flow front and become enveloped by the advancing liquid metal. When this happens, the entire mechanism of foam decomposition changes from steady ablation to a more chaotic motion in which the metal seems to "chew" its way through the pattern, creating large bubbles of vaporizing polymer liquid in its wake. These bubbles usually lead to undesirable anomalies in the final casting. In most cases, the nonlinear equations that govern the shape of the flow front depend on a single nondimensional number, which relates the onset of the engulfing motion to specific material, geometric, and process parameters. Numerical solutions to these equations are obtained for several special cases. These solutions help to explain a number of experimental observations that until now have been poorly understood.
机译:在铝的泡沫消失模铸造中,液态金属和分解的泡沫之间的压力平衡会为金属流动前沿产生各种不同的形状,从凸形到凹形。在极端情况下,流动前沿可能会变得非常凹,以至于泡沫状图案的小块开始在流动前沿的凹腔内部破裂,并被前进的液态金属包围。当发生这种情况时,泡沫分解的整个机理从稳定的烧蚀变为更加混乱的运动,在这种运动中,金属似乎“咀嚼”了其穿过图案的方式,从而在其尾流中形成了大的汽化聚合物液体气泡。这些气泡通常会在最终的铸件中导致不良的异常。在大多数情况下,控制流动前沿形状的非线性方程取决于单个无量纲数,该数将吞噬运动的开始与特定的材料,几何形状和工艺参数相关联。在几种特殊情况下,可以得到这些方程的数值解。这些解决方案有助于解释到目前为止尚不了解的许多实验观察。

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