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首页> 外文期刊>Journal of Thermal Spray Technology >Environmentally Resistant Mo-Si-B-Based Coatings
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Environmentally Resistant Mo-Si-B-Based Coatings

机译:环保耐摩尔(Si-B基涂料

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High-temperature applications have demonstrated aluminide-coated nickel-base superalloys to be remarkably effective, but are reaching their service limit. Alternate materials such as refractory (e.g., W, Mo) silicide alloys and SiC composites are being considered to extend high temperature capability, but the silica surfaces on these materials require coatings for enhanced environmental resistance. This can be accomplished with a Mo-Si-B-based coating that is deposited by a spray deposition of Mo followed by a chemical vapor deposition of Si and B by pack cementation to develop an aluminoborosilica surface. Oxidation of the as-deposited (Si + B)-pack coatings proceeds with partial consumption of the initial MoSi2 forming amorphous silica. This Si depletion leads to formation of a B-saturated Mo5Si3 (T-1) phase. Reactions between the Mo and the B rich phases develop an underlying Mo5SiB2 (T-2) layer. The T-1 phase saturated with B has robust oxidation resistance, and the Si depletion is prevented by the underlying diffusion barrier (T-2). Further, due to the natural phase transformation characteristics of the Mo-Si-B system, cracks or scratches to the outer silica and T-1 layers can be repaired from the Si and B reservoirs of T-2 + MoB layer to yield a self-healing characteristic. Mo-Si-B-based coatings demonstrate robust performance up to at least 1700 A degrees C not only to the rigors of elevated temperature oxidation, but also to CMAS attack, hot corrosion attack, water vapor and thermal cycling.
机译:高温应用表明,铝化物涂层镍基高温合金非常有效,但正在达到其使用极限。替代材料,如耐火材料(如钨、钼)硅化物合金和碳化硅复合材料,正在考虑扩展高温性能,但这些材料上的二氧化硅表面需要涂层以增强环境耐受性。这可以通过Mo-Si-B基涂层来实现,该涂层通过喷射沉积Mo,然后通过填充渗碳化学气相沉积Si和B,以形成铝硼硅表面。沉积态(Si+B)封装涂层的氧化过程中,初始MoSi2的部分消耗会形成无定形二氧化硅。这种硅耗尽导致B饱和Mo5Si3(T-1)相的形成。钼和富硼相之间的反应形成了一个潜在的Mo5SiB2(T-2)层。饱和硼的T-1相具有很强的抗氧化性,而硅的耗尽是由下面的扩散势垒(T-2)阻止的。此外,由于Mo-Si-B系统的自然相变特性,可以从T-2+MoB层的Si和B储层修复外部二氧化硅和T-1层的裂纹或划痕,以产生自愈特性。Mo-Si-B基涂层在高达1700℃的温度下表现出良好的性能,不仅适用于高温氧化的严酷环境,还适用于CMAS侵蚀、热腐蚀侵蚀、水蒸气和热循环。

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