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Kinetics of titanium nitride coatings deposited by thermo-reactive deposition technique

机译:热反应沉积技术沉积氮化钛涂层的动力学

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摘要

In this study, the growth kinetics of titanium nitride layer deposited on pre-nitrided AISI 1020 steel samples by thermo-reactive diffusion (TRD) techniques in a solid medium was reported. Steel was at first tufftrided and then titanium nitride coating treatment was performed in a powder mixture consisting of ferro-titanium, ammonium chloride and alumina at 1173, 1223 and 1273 K for 1-4 h. Titanium nitride layer thickness on the titanium nitride coated AISI 1020 steel ranged from 5.5 to 19.2 mum depending on treatment time and temperature. Layer growth kinetics was analyzed by measuring the depth of titanium nitride layer as a function of time and temperature. The kinetics equation of the reaction has also been determined with Arhenius equation K = K(o)exp(-Q/(RT). The result showed that the diffusion coefficient (K) of the process increased with treatment temperature. Activation energy (Q) for TRD process was calculated as 187.09 kJ/mol. The diffusion coefficients (K) changed between 6.637 x 10(-11) and 2.097 x 10(-10) cm(2)/s depending on the process temperature. (C) 2004 Elsevier Ltd. All rights reserved.
机译:在这项研究中,报道了通过热反应扩散(TRD)技术在固体介质中沉积在预氮化AISI 1020钢样品上的氮化钛层的生长动力学。首先将钢磨碎,然后在由铁钛,氯化铵和氧化铝组成的粉末混合物中于1173、1223和1273 K进行氮化钛涂层处理1-4小时。取决于处理时间和温度,在涂有氮化钛的AISI 1020钢上的氮化钛层厚度范围为5.5到19.2 mm。通过测量氮化钛层的深度作为时间和温度的函数来分析层的生长动力学。还通过Arhenius方程K = K(o)exp(-Q /(RT)确定了反应的动力学方程,结果表明该过程的扩散系数(K)随处理温度的增加而增加。 )的TRD计算值为187.09 kJ / mol。扩散系数(K)在6.637 x 10(-11)和2.097 x 10(-10)cm(2)/ s之间变化,具体取决于工艺温度。 2004 Elsevier Ltd.保留所有权利。

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