首页> 外文会议>International Conference on Environmental Degradation of Materials in Nuclear Power Systems - Water Reactors >EVALUATION OF THE CORROSION KINETICS OF SIC WITH AND WITHOUT MITIGATION COATINGS IN LWR CHEMISTRIES
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EVALUATION OF THE CORROSION KINETICS OF SIC WITH AND WITHOUT MITIGATION COATINGS IN LWR CHEMISTRIES

机译:LWR化学中具有缓解涂层的SIC腐蚀动力学的评价

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Since the Fukushima-Daiichi accident in 2011, accidenttolerantfuel (ATF) cladding concepts such as FeCrAlalloys and ceramic matrix composites (CMCs) of SiChave been extensively researched. SiC is desirable forexcellent radiation tolerance, mechanical properties, andresistance to oxidation under accident scenarios.However, under standard operating conditions, it maycorrode too quickly for use in LWRs. To mitigate theseissues, coatings of Cr, CrN, Cr/CrN, and TiN wereapplied via physical vapor deposition (PVD) on SiCprepared by chemical vapor deposition (CVD). Thesewere exposed, along with uncoated CVD SiC, totemperatures between 288 and 350°C, with 0.15-3 wppmdissolved H2 or 1-4 wppm O_2. TiN and CrN coatings didnot observe a permanently-protective oxide, potentiallydue to coating impurities. TiN was found to never beviable, slowly degrading in hydrogenated water, andspalling after ~0.5 μm of oxide growth. In HWC and PWRconditions, CrN did not perceptibly corrode but otherwisedegraded, while the multilayer Cr/CrN immediatelyfailed. Cr was a successful mitigation coating in theabsence of oxygen. The corrosion kinetics of the SiCsubstrate was dependent on the surface preparation, withpolished SiC leading to predictable linear kinetics, withone rate-limiting step for reactions with oxygen andwater.
机译:自2011年福岛 - 达义事故以来,偶然的燃料(atf)覆盖概念,如群体SiC的合金和陶瓷基质复合材料(CMC)已被广泛研究。 SIC是可取的优异的辐射耐受性,机械性能和事故情景下对氧化的抵抗力。但是,在标准的操作条件下,它可能腐蚀太快,以便在LWRS中使用。减轻这些问题,Cr,CrN,Cr / Crn和锡的涂层通过SIC上的物理气相沉积(PVD)施加通过化学气相沉积(CVD)制备。这些暴露,与未涂层的CVD SIC一起288至350°C之间的温度,0.15-3 WPPM溶解H2或1-4 WPPM O_2。锡和crn涂料做了不观察到永久保护的氧化物,可能是由于涂层杂质。发现锡永远不会可行,在氢化水中缓慢降解,和氧化物生长〜0.5μm后脱落。在HWC和PWR条件,CRN没有明显腐蚀,但其他劣化,而多层CR / CRN立即失败的。 CR成功的缓解涂层没有氧气。 SIC的腐蚀动力学底物依赖于表面制备,用抛光SIC导致可预测的线性动力学,与用氧气和氧气反应的一个速率限制步骤水。

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