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Titanium nitride coating on nickel produced by a powder immersion reaction-assisted coating method

机译:粉末浸没反应辅助镀层法在镍上镀氮化钛

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Coating of nickel substrates with a hard titanium nitride (TiN) layer was performed by employing a two-step titanization-nitriding powder immersion reaction-assisted coating (PIRAC) procedure. Titanization of nickel via annealing in Ti powder with admixed iodine at 750-900 degrees C yielded up to 20-mu m-thick reaction zones with TiN on the surface followed by layers of TiNi, Ni3Ti, and Ni(Ti) solid solution. The growth of TiNi and Ti,Ni layers, as well as of the reaction zone as a whole, obeyed the parabolic law. The measured activation energy of TiNi layer growth (149 kJ/mol) was comparable with the earlier reported activation energy of chemical diffusion in NiTi. PIRAC nitriding of the titanized Ni specimens at 850-900 degrees C resulted in the fori-nation of a thin (similar to 1 mu m) TiN surface film, whereas the underlying three-layer Ti2Ni-TiNi- Ni3Ti zone was eventually transformed into a single Ni3Ti layer. The results obtained are discussed in terms of Ni-Ti and Ni-Ti-N phase diagrams. (c) 2004 Elsevier B.V. All rights reserved.
机译:通过采用两步钛化-氮化粉末浸没反应辅助涂层(PIRAC)程序对镍基材进行硬氮化钛(TiN)层涂覆。通过在钛粉中与碘在750-900摄氏度下退火对镍进行钛化处理,可得到厚度高达20微米的反应区,表面具有TiN,随后是TiNi,Ni3Ti和Ni(Ti)固溶体层。 TiNi和Ti,Ni层以及整个反应区的生长都遵循抛物线定律。测得的TiNi层生长的活化能(149 kJ / mol)与早期报道的NiTi中化学扩散的活化能相当。在850-900摄氏度下对钛化的镍试样进行PIRAC氮化处理,形成了一层薄(类似于1微米)的TiN表面膜,而下面的三层Ti2Ni-TiNi-Ni3Ti区最终转变为一个Ni3Ti单层。根据Ni-Ti和Ni-Ti-N相图讨论了获得的结果。 (c)2004 Elsevier B.V.保留所有权利。

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