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Effect of Oxide Catalyst on Heterogeneous Nucleation in Fe-10mass percent Ni Alloys

机译:氧化物催化剂对Fe-10质量百分比Ni合金非均相形核的影响

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In order to elucidate the nature of heterogeneous nucleation, a differential scanning calorimetry (DSC) thermal analysis of Fe-10mass percent Ni alloys containing oxide catalysts was conducted. For all oxide catalysts, the maximum frequency in the particle-size distributions diminishes and the modal value increases with a decrease in the amount of deoxidizers or with an increase in the elapsed time after deoxidizer addition. That is, the number of smaller particles decreases, while the number of larger particles increases In proportion to this change of the particle-size distribution, the critical undercooling (DELTA T) increases. For the same amount of deoxidizers and the same elapsed time, the value of DELTA T for the primary crystal of the y phase is smaller in the order of MgO, ZrO_2, AI_2O_3, and CaO-AI_2O_3. Oxide catalysts grow by Ostwald ripening, therefore the growth can be controlled by the diffusion of oxygen. Thus, the decrease of the soluble oxygen content by strong deoxidizers results in the inhibition of particle growth.
机译:为了阐明非均相成核的性质,对包含氧化物催化剂的Fe-10质量百分比Ni合金进行了差示扫描量热法(DSC)热分析。对于所有氧化物催化剂,随着脱氧剂数量的减少或脱氧剂添加后经过时间的增加,粒度分布中的最大频率降低,并且模态值增加。即,小颗粒的数量减少,而大颗粒的数量增加与粒度分布的这种变化成比例,临界过冷度(ΔT)增加。对于相同量的脱氧剂和相同的经过时间,y相的初生晶体的ΔT值以MgO,ZrO_2,Al_2O_3和CaO-Al_2O_3的顺序较小。氧化物催化剂通过奥斯特瓦尔德(Ostwald)成熟而生长,因此可以通过氧气的扩散来控制其生长。因此,通过强脱氧剂降低可溶性氧含量导致抑制颗粒生长。

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