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Preparation of Amorphous High Nitrogen Iron Alloys with Ternary Additions by Mechanical Alloying

机译:机械合金化制备三元添加非晶态高氮铁合金

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In order to prepare amorphous high nitrogen iron alloys, mechanical alloying (MA) of elemental powder mixtures with Fe-9.85mass%N alloy powder of Fe_((100-y)-x)A_yN_x(at%) (A=Mn, Cr, Mo, W, V, Nb, Ta, Co or Ni; x=0-20; y=0-25) was performed in an argon atmosphere using a planetary ball mill. Effect of the ternary additives A on MA of the Fe-N materials was investigated in terms of the interaction parameter W_(AN) of the additives A. The interaction parameters W_(AN) represents the difference in bonding energy of A-N atomic pair (U_(AN)) and that of Fe-N pair (U_(FeN)) in the ternary Fe-A-N solution, i.e. W_(AN) = U_(AN)-U_(FeN), and the values of W_(AN) are calculated using thermodynamic data at 1 273 K on austenite. The value of W_(AN) is clearly dependent on the position of the elements A in the periodic table and a similar tendency in the dependencies exists in any liquid or solid solutions of Fe-A-N. Thus, this is also expected to hold for Fe-A-N materials processed by MA. In the MA processing, the ternary additives A with a moderately negative W_(AN) value of -330 to -980 kJ/mol, such as Cr, Nb, and Ta, markedly promote solid-state reactions, leading to formation of amorphous high nitrogen iron alloys having x=8.5-20 after 720 ks of processing by adding about 13-15 at% of these additives to Fe-N materials, in contrast to the additives Co and Ni with the positive W_(AN) value. However, for the MA sample with the additive Ti, the formation of TiN was seen during MA, before progress of the intermixing of atomic species due to its extreamly negative W_(AN) value (-4110 kJ/mol). In addition, the additive Mn with the less negative value of W_(AN) (-104 kJ/mol) did not effectively act on MA of Fe-N materials. Similar effects of such additive were also obtained in MA materials with austenitic stainless steel compositions.
机译:为了制备非晶态高氮铁合金,将元素粉末混合物与Fe _((100-y)-x)A_yN_x(at%)(A = Mn,Cr)的Fe-9.85mass%N合金粉末进行机械合金化(MA) ,Mo,W,V,Nb,Ta,Co或Ni; x = 0-20; y = 0-25)是在氩气氛中使用行星式球磨机进行的。根据添加剂A的相互作用参数W_(AN)研究了三元添加剂A对Fe-N材料MA的影响。相互作用参数W_(AN)表示AN原子对的键能差(U_ (AN))和三元Fe-AN解中的Fe-N对(U_(FeN))的值,即W_(AN)= U_(AN)-U_(FeN),并且W_(AN)的值为使用奥氏体在1 273 K时的热力学数据计算得出。 W_(AN)的值显然取决于元素周期表中元素A的位置,并且在Fe-A-N的任何液体或固体溶液中存在类似的依存关系趋势。因此,这对于MA处理的Fe-A-N材料也同样适用。在MA加工中,W_(AN)值为-330至-980 kJ / mol的中等负W_(AN)的三元添加剂A,例如Cr,Nb和Ta,显着促进了固态反应,导致形成非晶态的高与具有正W_(AN)值的添加剂Co和Ni相比,通过在Fe-N材料中添加约13-15 at%的这些添加剂,在经过720 ks的加工后,x = 8.5-20的氮铁合金。然而,对于具有添加剂Ti的MA样品,由于其极高的W_(AN)负值(-4110 kJ / mol),在原子间混合之前,在MA中观察到TiN的形成。另外,具有较小的W_(AN)负值(-104kJ / mol)的添加剂Mn不能有效地作用于Fe-N材料的MA。在具有奥氏体不锈钢成分的MA材料中也获得了这种添加剂的类似效果。

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