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Development of New TBC Coating System by Water Plasma Spraying and HVOF *

机译:用水等离子喷涂和HVOF开发新的TBC涂层系统*

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A new Thermal Barrier Coating (TBC) system aiming superior thermal shock resistance and low cost, was developed upon combination of HVOF (JP-5000) sprayed CoNiCrAlY bond coating and Water Plasma Sprayed (WPS) yttria-stabilized zirconia top coating for application to industrial gas turbines. This TBC system was evaluated by thermal cyclic test. The new coating system of WPS/JP-5000 showed excellent thermal shock resistance compared to conventional APS (air plasma-spraying) -TBC system against thermal cyclic test condition of 1,000 deg C approx RT in air. Also the new coating method was confirmed to have good thermal shock resistance even for thick zirconia top coating layer. The superior thermal shock resistance of WPS/JP-5000 coating system was due to formation of micro-crack in the top coating layer by WPS. In addition, the CoNiCrAlY bond coating by JP-5000 had a diffusion zone in between the sprayed particles and the substrate similar to VPS coating layers. The new TBC system of WPS/JP-5000 for application to industrial gas turbines is considered promising because its good thermal shock resistance and low cost.
机译:一种新的热阻挡涂层(TBC)系统,其旨在具有卓越的热抗冲击性和低成本,由HVOF(JP-5000)喷涂的同胞粘连涂料和水等离子体喷涂(WPS)yTTRIA稳定的氧化锆顶部涂层进行适用于工业燃气轮机。该TBC系统通过热循环试验评估。与常规APS(空气等离子体喷涂)-TBC系统相比,WPS / JP-5000的新型涂布系统显示出优异的热抗冲击性,与空气中的1,000℃的热循环试验条件相比。此外,即使对于厚的氧化锆顶涂层,确认新的涂布方法也具有良好的热抗冲击性。 WPS / JP-5000涂层系统的卓越热抗震性是由于WPS通过顶部涂层中的微裂纹形成。另外,通过JP-5000的聚焦键涂层在喷射的颗粒和类似于VPS涂层之间的基板之间具有扩散区。用于工业燃气轮机的WPS / JP-5000的新TBC系统被认为是有希望的,因为其良好的耐热抗震性和低成本。

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