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首页> 外文期刊>Bulletin of materials science >Crack propagation studies and bond coat properties in thermal barrier coatings under bending
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Crack propagation studies and bond coat properties in thermal barrier coatings under bending

机译:弯曲下热障涂层的裂纹扩展研究和粘结涂层性能

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Ceramic based thermal barrier coatings (TBC) are currently considered as a candidate material for advanced stationary gas turbine components. Crack propagation studies under bending are described that were performed on plasma sprayed ZrO2, bonded by MCrAlY layer to Ni base superalloy. The crack propagation behaviour of the coatings at room temperature in as received and oxidized conditions revealed a linear growth of the cracks on the coating till the yield point of the super alloy was reached. High threshold load at the interface between the ceramic layer and the bond coat was required to propagate the crack further into the bond coat. Once the threshold load was surpassed the crack propagated into the brittle bond coat without an appreciable increase in the load. At temperatures of 800?°C the crack propagated only in the TBC (ceramic layer), as the ductile bond coat offered an attractive sink for the stress relaxation. Effects of bond coat oxidation on crack propagation in the interface region have been examined and are discussed.
机译:基于陶瓷的隔热涂层(TBC)当前被认为是先进的固定式燃气轮机组件的候选材料。描述了在弯曲下的裂纹扩展研究,该研究是通过等离子喷涂的ZrO 2 进行的,该ZrO 2 通过MCrAlY层与Ni基高温合金结合。在室温下,在接收和氧化条件下,涂层的裂纹扩展行为表明,裂纹在涂层上线性增长,直至达到超级合金的屈服点。需要在陶瓷层和粘结层之间的界面处的高阈值载荷,以将裂纹进一步传播到粘结层中。一旦超过阈值载荷,裂纹就会传播到脆性粘结层中,而载荷不会明显增加。在800°C的温度下,裂纹仅在TBC(陶瓷层)中扩展,因为可延展的粘结层为应力松弛提供了有吸引力的下陷。粘接涂层氧化对界面区域裂纹扩展的影响已得到检查和讨论。

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