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Thermal stability and hydrogenation behavior of Zr-1Nb alloy with TiNx and Ti/TiNx coatings

机译:具有TiNx和Ti / TiNx涂层的Zr-1Nb合金的热稳定性和氢化行为

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摘要

Titanium nitride coatings were deposited by reactive dc magnetron sputtering (dcMS) to protect Zr-1Nb alloys from hydrogen embrittlement. Dense titanium (Ti) interlayer was prepared between TiNx protection film and a Zr substrate to improve thermal stability and adhesion between the TiNx and the substrate at high temperatures. Hydrogen absorption of Zr- 1Nb with TiNx and Ti/TiNx at 623 K was reduced in comparison with uncoated Zr-1Nb. No peeling or cracks of Ti/TiNx coatings is observed after thermal cycling up to 1073 K. The high temperature (1073 K) hydrogenation behaviour differs from the hydrogenation at lower temperature by increasing the amount of dissolved hydrogen in the phase of zirconium. The higher rate of hydrogen absorption by Zr-1Nb with TiNx was observed due to the coating delamination as a result of differences in thermal expansion coefficients, while Ti/TiNx demonstrates the lower hydrogen absorption at 1073 K and good adhesion strength.
机译:通过反应性直流磁控溅射(dcMS)沉积氮化钛涂层,以保护Zr-1Nb合金免受氢脆的影响。在TiNx保护膜和Zr基板之间制备了致密的钛(Ti)中间层,以提高高温下TiNx与基板之间的热稳定性和粘附性。与未涂覆的Zr-1Nb相比,TiNx和Ti / TiNx在623 K下对Zr-1Nb的氢吸收降低。在热循环至1073 K后,未观察到Ti / TiNx涂层的剥落或裂纹。高温(1073 K)的氢化行为与较低温度下的氢化不同,因为锆相中的溶解氢量增加。 Zr-1Nb与TiNx的氢吸收率较高,这是由于热膨胀系数不同导致涂层分层所致,而Ti / TiNx则在1073 K处显示出较低的氢吸收率和良好的粘合强度。

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