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Undercooling, Cooling Curves and Nodule Count for Near-eutectic Thin-walled Ductile Iron Castings

机译:近共晶薄壁球墨铸铁的过冷,冷却曲线和结节数

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A solidification model for ductile iron, including Weibull formula for nodule count, has been presented. The principal assumptions of the kinetic nature of growth, depending on undercooling in respect of the eutectic equilibrium temperature and austenite liquidus line, have been adopted, disregarding the diffusion processes, which was justified by the rapid course of the crystallization process in a thin-walled casting. From this model, the following parameters can be determined: cooling curves, kinetics of austenite and eutectic nucleation, austenite and eutectic growth velocity, and volume fraction.The correctness of the mathematical model has been experimentally verified by comparison with literature data in the range of the most significant factors, which include temperature field, the value of maximum undercooling, the value of minimum and maximum temperature on a cooling curve, maximum undercooling, the recalescence and graphite nodule count interrelated with the casting cross-section.
机译:提出了球墨铸铁的凝固模型,包括Weibull公式的结核计数。已经采用了生长动力学性质的主要假设,该假设取决于共晶平衡温度和奥氏体液相线的过冷,而忽略了扩散过程,薄壁结晶过程的快速过程证明了这一点是合理的铸件。从该模型可以确定以下参数:冷却曲线,奥氏体和共晶形核动力学,奥氏体和共晶生长速度以及体积分数。通过与文献数据进行比较,该数学模型的正确性已通过实验验证。最重要的因素包括温度场,最大过冷值,冷却曲线上的最低和最高温度值,最大过冷度,与铸件横截面相关的再结晶和石墨结节数。

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