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Atmospheric plasma sprayed thick thermal barrier coatings with high segmentation crack density

机译:常压等离子体喷涂厚热障涂层,具有高的分段裂纹密度

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Atmospheric plasma sprayed thick thermal barrier coatings (TBCs), comprising of 1.5 mm thickness yttria stabilized zirconia (YSZ) coating, have been developed for increasing thermal protection of combustor applications. Different segmentation crack densities of the YSZ coating were created by controlling the deposition conditions. It was found that the substrate temperature played a dominant role in determining the segmentation crack density. The density was found to increase with the increase of substrate temperature and liquid splat temperature. High passage thickness, if achieved by low plasma gun speed, contributed to improve the segmentation crack density. The density could not be effectively improved by increasing the powder feed rate, although a high passage thickness was obtained in this case. The pores, mainly consisting of delaminations with the radii range between 0.02 and 1 mum, prevent the segmentation cracks from propagation. The coatings sprayed at high substrate temperature show an excellent intersplat bonding and often even continuous columnar grains through several splats. Additionally, horizontally branching cracks were also formed together with the segmentation cracks when a high lamellar thickness was used during the spraying. Thermal cycling tests showed that the coating with a segmentation crack density of approximately 3.6 mm(-1) had a lifetime of more than 1700 cycles at 1238degreesC (surface)/938degreesC (bond coat), indicative of excellent thermal shock resistance. Failure of the TBCs occurred by chipping in the surface layer of YSZ coating, which is different from the traditional interface delamination failure occurred with thinner TBCs. (C) 2004 Elsevier B.V All rights reserved.
机译:大气等离子喷涂厚热障涂层(TBC)包括1.5毫米厚的氧化钇稳定氧化锆(YSZ)涂层,已被开发用于增强燃烧器应用的热保护。通过控制沉积条件,可产生YSZ涂层的不同分段裂纹密度。发现基板温度在确定分割裂纹密度中起主要作用。发现密度随着基板温度和液体飞溅温度的增加而增加。如果通过低等离子枪速度实现高通道厚度,则有助于提高分段裂纹密度。尽管在这种情况下获得了较高的通道厚度,但是不能通过提高粉末进料速率来有效地提高密度。孔隙主要由半径范围在0.02和1微米之间的分层组成,可防止分段裂纹的传播。在较高的基材温度下喷涂的涂层表现出出色的跨板结合力,甚至在几个跨板上甚至可以连续形成柱状晶粒。另外,当在喷涂过程中使用高层状厚度时,也与分段裂纹一起形成了水平分支裂纹。热循环测试表明,在1238℃(表面)/ 938℃(粘结层)下,分段裂纹密度约为3.6 mm(-1)的涂层的使用寿命超过1700个循环。 TBC的失效是由YSZ涂层的表层碎裂引起的,这与较薄的TBC发生的传统界面分层失效不同。 (C)2004 Elsevier B.V保留所有权利。

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