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

机译:FECRMNI铸造跳闸/ TWIP钢粘度高温调查

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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 mintain a constant peak-to-peak amplitude of the sine wave of oscillator compared to the idle state. Nickel content in steel is varied from 3 wt% to 9 wt%. The dynamic viscosity (η) at 1600 °C for 3wt%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跳闸/ Twip / Twip / Twip(转化诱导塑性,孪晶诱导的可塑性)钢的粘度。熔体的粘度是根据场圈中的电力变化通过浸入式手指进入液体钢的电力变化来计算,以Mintain与怠速状态相比振荡器的正弦波的恒定峰峰值幅度。钢中的镍含量从3wt%到9wt%变化。 1600℃的动态粘度(η)对于3wt%Ni为3.73±0.14mPas,6wt%Ni 3.5.5±0.03mPas,9wt%Ni 3.93±0.09mPas。 Fe-Cr-Mn-Ni合金粘度值低至高镍含量的扭结。如文献中的Fe-Ni二元系统所报道的,通过熔体中的协调数的变化可以解释这种现象。粘度数据的可用性为FECRMNI合金的自由秋季雾化过程提供了相关的输入。

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