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MEASUREMENT OF COOLING CURVES IN CENTRIFUGAL CASTING OF A FERROUS ALLOY

机译:铁合金离心铸造中冷却曲线的测量

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A sensor was developed to measure the cooling curves inside a ferrous alloy during its solidification as centrifugally cast tubes. The temperature evolution at some points within the alloy is necessary to evaluate the heat transfer through the outer surface of the tube during the centrifugal casting process. Serious difficulties exist in this type of measurement, because of the rotation of the mold and the relatively high temperature at which the ferrous alloy is poured.The sensor consists of sheathed thermocouples positioned by a convenient support internally to the rotating mold, within the metal layer. Although the sensor is subjected to thermal and mechanical stresses during the melt pouring and solidification, it must maintain its mechanical and thermal characteristics to temperatures of the order of the melting point of the ferrous alloy. Therefore, the thermocouple sheaths and support have been made of refractory metals, namely, tantalum and niobium, to resist the high temperature. Moreover, the sensor was designed to have low thermal inertia, allowing its temperature to increase above the liquidus temperature of the alloy before solidification of the surrounding liquid metal. Because the sensor is embedded in the solidified tube after solidification, a special design was necessary to allow stripping the tube out of the mold without disturbing the system.
机译:开发了一种传感器,用于测量黑色合金凝固过程中作为离心铸造管的黑色合金内部的冷却曲线。合金内某些点的温度变化对于评估离心铸造过程中通过管子外表面的热传递是必要的。由于模具的旋转和铁合金浇注的相对较高的温度,在这种类型的测量中存在严重的困难。 该传感器由铠装的热电偶组成,该热电偶由一个方便的支撑装置定位在金属层内的旋转模具内部。尽管传感器在熔体浇注和固化过程中承受热应力和机械应力,但它必须将其机械和热特性保持在铁合金熔点的温度范围内。因此,热电偶护套和支撑件由难熔金属(即钽和铌)制成,以抵抗高温。此外,该传感器设计为具有低热惯性,允许其温度在周围液态金属凝固之前升高到合金的液相线温度以上。由于传感器在固化后被嵌入固化的管中,因此需要特殊设计以允许在不影响系统的情况下将管从模具中剥离出来。

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