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Residual stresses and elastic modulus of thermal barrier coatings graded in porosity

机译:孔隙率分级的热阻涂层的残余应力和弹性模量

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Zirconia (ZrO2) stabilized with 8 wt.% Y2O3 is the most common material to be applied in thermal barrier coatings (TBC) owing to its excellent properties: low thermal conductivity; high toughness and thermal expansion coefficient similar to iron. Nevertheless, in order to increase the coatings lifetime, improvements in their thermomechanical behavior are still needed. With that purpose, we propose in this paper a graded ceramic coating. These TBC have been produced by depositing a conventional NiCoCrAlY bond coat on a Inconel 738 LC substrate followed by an atmospheric plasma sprayed top coat of ZrO2–8wt.%Y2O3 with a porosity gradient along the cross section. The aim of the present contribution is to study residual stresses and elastic properties of the coating as a function of the porosity gradient. For the characterization of the TBCs residual stresses, we have used Raman and X-ray diffraction (XRD) in different thermal conditions: assprayed, after thermal shock at 1000 8C, and annealing at 1100 8C in air during 100 h. The top coatings show compressive stresses near the interface with the bond coat. A decrease of the stress level is observed along the cross section towards the surface. The residual stresses increase after annealing, however, have smaller variations after thermal shock. The elastic properties were evaluated by Brillouin scattering: the scattering of laser light by acoustic waves in the GHz frequency range. The spectra at different depths indicate that in the annealed condition the acoustic velocity increases when approaching the external surface.
机译:氧化锆(ZrO2)用8重量%稳定。%Y2O3是由于其优异的性能:低导热率,是在热阻挡涂层(TBC)中施加的最常见材料;高韧性和热膨胀系数类似于铁。然而,为了增加涂层寿命,仍然需要改善其热机械行为。为此目的,我们提出了本文型陶瓷涂层。这些TBC已经通过在Inconel 738 LC衬底上沉积常规的NicoCraly键涂层而产生,然后是ZrO2-8wt的大气等离子体喷涂的ZrO2-8wt。%Y2O3,沿横截面具有孔隙率梯度。目前贡献的目的是研究涂层的残留应力和弹性性质作为孔隙率梯度的函数。为了表征TBCS残留应力,我们在不同热条件下使用拉曼和X射线衍射(XRD):在1000 8C的热冲击后assprayed,在100小时内在1100 8℃下退火。顶部涂层显示与粘合涂层接口附近的压缩应力。沿着横截面朝向表面观察应力水平的降低。然而,退火后的残余应力增加,在热冲击后具有较小的变化。通过布里渊散射评估弹性物质:通过GHz频率范围内的声波散射激光。不同深度的光谱表明,在退火状态下,当接近外表面时,声速增加。

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