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HIGH TEMPERATURE INVESTIGATION OF VISCOSITY FOR FeCrMnNi AS-CAST TRIP/TWIP STEEL

机译:FeCrMnNi铸坯TRIP / TWIP钢的高温粘度研究

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The viscosity of Fe-Cr-Mn-Ni TRIP/TWIP (Transformation Induced Plasticity, Twinning Induced Plasticity) steel with varied nickel content is investigated using a vibrating finger viscometer. The viscosity of the melt is calculated from the change in power input in the field coil by an immersed finger into the liquid steel to maintain a constant peak-to-peak amplitude of the sine wave of oscillator compared to the idle state. Nickel content in steel is varied from 3wt% to 9wt%. The dynamic viscosity (η) at 1600 °C for 3 wt% Ni is 3.73±0.14 mPas, for 6 wt% Ni 3.50±0.03 mPas, and for 9 wt% Ni 3.93±0.09 mPas. There is a kink from low to high nickel content in viscosity values of Fe-Cr-Mn-Ni alloys. This phenomenon can be explained by a change in coordination number in the melt, as reported for Fe-Ni binary system in literature. The availability of viscosity data delivers relevant input to model free fall atomization processes of FeCrMnNi alloys.
机译:使用振动手指粘度计研究了具有不同镍含量的Fe-Cr-Mn-Ni TRIP / TWIP(转变诱导塑性,孪生诱导塑性)钢的粘度。熔体的粘度是通过将手指浸入液态钢中,通过输入励磁线圈的功率变化来计算的,以使振荡器的正弦波与空闲状态相比保持恒定的峰峰值幅度。钢中的镍含量从3wt%到9wt%不等。对于3wt%的Ni,在1600℃下的动态粘度(η)为3.73±0.14mPas,对于6wt%的Ni为3.50±0.03mPas,对于9wt%的Ni为3.93±0.09mPas。 Fe-Cr-Mn-Ni合金的粘度值从低到高都有一个纽结。如文献中有关Fe-Ni二元体系的报道,这种现象可以通过熔体中配位数的变化来解释。粘度数据的可用性为FeCrMnNi合金的自由落体雾化过程建模提供了相关的输入。

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