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Thermodynamics of Aluminum, Nitrogen and AlN formation in Liquid Iron

机译:液态铁中铝,氮和AlN形成的热力学

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Thermodynamics of aluminum, nitrogen and AlN formation in liquid iron was investigated using the metal-nitride-gas equilibration under various nitrogen partial pressures in the temperature range of 1 873-1 973 K. The nitrogen solubility in liquid iron decreased with aluminum additions. Pure solid AlN was formed at critical contents of aluminum and nitrogen in liquid iron. The experimental results were thermody-namically analyzed using Wagner's interaction parameter formalism to determine the first-order interaction parameter of aluminum and nitrogen, the first-order self interaction parameter of aluminum, and the equilibrium constant for the formation of pure solid AlN in liquid iron as follows. e_N~(Al)=-332.2/T+0.194 e_(Al)~(Al) = 111.0/T-0.016 AlN(s)=Al + N log K_(AlN)= -16 560/T+7.4 Thermodynamics of aluminum in liquid iron could be well described by Darken's quadratic formalism, and the values of α_(Fe-Al) and γ°_(Al), were determined as follows. α_(Fe-Al) = -1112/T-0.585 γ°_(Al)= -185.0/T+0.165
机译:使用金属氮化物-气体平衡,在温度范围为1 873-1 973 K的各种氮分压下,研究了液态铁中铝,氮和AlN形成的热力学。随着铝的添加,液态铁中的氮溶解度降低。在液态铁中铝和氮的临界含量下会形成纯固态AlN。使用Wagner相互作用参数形式主义对实验结果进行了热动力学分析,以确定铝和氮的一级相互作用参数,铝的一级自相互作用参数以及液态铁中纯固态AlN形成的平衡常数。如下。 e_N〜(Al)=-332.2 / T + 0.194 e_(Al)〜(Al)= 111.0 / T-0.016 AlN(s)= Al + N log K_(AlN)= -16560 / T + 7.4铝的热力学达肯二次方程可以很好地描述铁水中的α,并且α_(Fe-Al)和γ°_(Al)的值确定如下。 α_(铁铝)= -1112 / T-0.585γ°_(铝)= -185.0 / T + 0.165

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