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Evaluation of Adhesive Strengths of Plasma-Sprayed CoNiCrAlY Coatings using an Indentation Method

机译:用压痕法评估等离子喷涂CoNiCrAlY涂层的粘合强度

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摘要

Thermal barrier coating (TBC) on the element for high temperature service, such as a gas turbine blade, has become an indispensable technology. In this study, adhesive strengths of plasma-sprayed CoNiCrAlY coatings were examined using an indentation method. In order to examine the effects of the spraying process on the adhesive strength of a sprayed coating, coatings were deposited by both atmospheric plasma spraying (APS) and low pressure plasma spraying (LPPS). The half number of CoNiCrAlY(LPPS) specimens were thermally aged for diffusion treatment. The load-displacement curves during the indentation were measured, and the delamination energy per unit area of delamination was estimated. The delamination load was high when the distance from an edge of a specimen was long, however the energy per unit delamination area was almost independent of the distance from the edge and was uniquely determined. The delamination energy of CoNiCrAlY(APS) and CoNiCrAlY(LPPS) coatings were found to be approximately the same. The delamination energy of CoNiCrAlY(LPPS) with diffusion thermal treatment was widely scattered as compared with foregoing two coatings, however the energy of the CoNiCrAlY(LPPS) coating with diffusion thermal treatment was found to be about three times higher than those of both CoNiCrAlY(APS) and CoNiCrAlY(LPPS) coatings. It was concluded that diffusion thermal treatment was effective in improving the delamination strength. The CoNiCrAlY(LPPS) coating with diffusion thermal treatment was also found to be effective in improving the fatigue fracture life of a thermal-barrier-coated material.
机译:高温工作元件(例如燃气轮机叶片)上的隔热涂层(TBC)已成为必不可少的技术。在这项研究中,使用压痕法检查了等离子喷涂CoNiCrAlY涂层的粘合强度。为了检查喷涂工艺对喷涂涂层粘合强度的影响,通过大气等离子体喷涂(APS)和低压等离子体喷涂(LPPS)沉积涂层。将一半的CoNiCrAlY(LPPS)标本进行热老化以进行扩散处理。测量压痕期间的载荷-位移曲线,并估计每单位分层的分层能量。当距样品边缘的距离较长时,分层载荷较高,但是,每单位分层面积的能量几乎与距边缘的距离无关,并且是唯一确定的。发现CoNiCrAlY(APS)和CoNiCrAlY(LPPS)涂层的分层能量大致相同。与上述两种涂层相比,采用扩散热处理的CoNiCrAlY(LPPS)的层离能被广泛分散,但是发现采用扩散热处理的CoNiCrAlY(LPPS)涂层的层能比这两种涂层都高约三倍。 APS)和CoNiCrAlY(LPPS)涂层。可以得出结论,扩散热处理对提高分层强度是有效的。还发现采用扩散热处理的CoNiCrAlY(LPPS)涂层可有效改善热障涂层材料的疲劳断裂寿命。

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