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Thermal diffusivity characterization of bond-coat materials used for thermal barrier coatings

机译:用于热障涂层的粘结涂层材料的热扩散特性

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Thermal barrier coatings (TBC) are the system build from ceramic insulation top-coat with internal bond-coat as an interlayer between ceramic and Ni-based superalloys substrate materials. The basic role of bond-coat is reduction of thermal strain between ceramic top-coat and metallic substrates. The second role is related to improving the oxidation resistance of metallic substrate. From thermal conductivity point of view, TBC's system is characterized by three different materials. Usually, bond-coats and Ni-based superalloys were treated as materials with similar thermal properties such as specific heat, thermal diffusivity and thermal conductivity. Actually those materials can exhibit much higher divergences than expected. The aim of this article was the characterization of thermal diffusivity of bond-coats material of NiCrAlY type in the form of powders, massive alloy (obtained during sintering in an actual pressure of 15 MPa, in vacuum of 3 x 10(-6) MPa, and at temperature 1050 A degrees C with 2 h of exposure in press), and coating after air plasma spraying. Those studies should get the answer on the question how different morphology and processes impact on thermal diffusivity level of the same material.
机译:热障涂层(TBC)是由陶瓷绝缘面漆和内部粘结层构成的系统,该涂层是陶瓷和Ni基高温合金基体材料之间的中间层。粘结涂层的基本作用是减少陶瓷面漆和金属基材之间的热应变。第二个作用与提高金属基材的抗氧化性有关。从热导率的角度来看,TBC的系统具有三种不同的材料。通常,粘结涂层和镍基高温合金被视为具有类似热性质的材料,例如比热,热扩散率和热导率。实际上,这些材料可能表现出比预期高得多的差异。本文的目的是表征粉末状块状合金(在烧结过程中在实际压力为15 MPa,真空度为3 x 10(-6)MPa的情况下获得)的NiCrAlY型粘结涂层材料的热扩散系数。 ,并在1050 A的温度下,在压力下暴露2小时),并在空气等离子喷涂后进行涂覆。这些研究应就以下问题提供答案:不同的形态和过程如何影响同一材料的热扩散率。

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