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首页> 外文期刊>Journal of Thermal Spray Technology >Failure of physical vapor deposition/ plasma-sprayed thermal barrier coatings during thermal cycling
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Failure of physical vapor deposition/ plasma-sprayed thermal barrier coatings during thermal cycling

机译:热循环期间物理气相沉积/等离子体喷射热阻挡涂层的失效

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摘要

ZrO{sub}2-7 wt.% Y{sub}2O{sub}3 plasma-sprayed (PS) coatings were applied on high-temperature Ni-based alloys precoated by physical vapor deposition with a thin, dense, stabilized zirconia coating (PVD bond coat). The PS coatings were applied by atmospheric plasma spraying (APS) and inert gas plasma spraying (IPS) at 2 bar for different substrate temperatures. The thermal barrier coatings (TBCs) were tested by furnace isothermal cycling and flame thermal cycling at maximum temperatures between 1000 and 1150 °C. The temperature gradients within the duplex PVD/PS thermal barrier coatings during the thermal cycling process were modeled using an unsteady heat transfer program. This modeling enables calculation of the transient thermal strains and stresses, which contributes to a better understanding of the failure mechanisms of the TBC during thermal cycling. The adherence and failure modes of these coating systems were experimentally studied during the high-temperature testing. The TBC failure mechanism during thermal cycling is discussed in light of coating transient stresses and substrate oxidation.
机译:ZrO {Sub} 2-7重量%{Sub} 2O {Sub} 3等离子体喷涂(PS)涂层涂覆在通过物理气相沉积的高温Ni基合金上用薄,致密,稳定的氧化锆涂层涂覆(PVD键涂层)。通过大气压等离子体喷涂(APS)和惰性气体等离子体喷涂(IPS)在2巴中施加PS涂层,用于不同的基板温度。通过炉等温循环和火焰热循环在1000至1150℃之间的最高温度下测试热阻挡涂层(TBC)。使用不稳定的传热程序建模在热循环过程中的双工PVD / PS热阻挡涂层中的温度梯度。该造型能够计算瞬态热菌株和应力,这有助于更好地理解热循环期间TBC的失效机制。在高温测试期间通过实验研究这些涂料系统的粘附和失效模式。在涂覆瞬态应力和基材氧化的光线中讨论了热循环期间的TBC失效机构。

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