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Relationships between the microstructure and properties of thermally sprayed deposits

机译:热喷涂沉积物的微观结构与性能之间的关系

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Thermally sprayed deposits have layered structure composed of individual splats. The individual splats have quenching microstructure of quasi-stable preferred fine grains. However, this fine-grained microstructure of the deposits is usually not reflected by improved performance of the deposits because a layered structure with two-dimensional voids occurs between lamellar interfaces. The microstructure of the thermal spray deposits with the emphasis on the layer structural parameters is reviewed. Conventionally, one of the most common quantitative parameters used to characterize the microstructure of the thermally sprayed deposits is the porosity, measured by different methods. However, it is illustrated that the relationships between properties and porosity for bulk porous materials processed by conventional processes cannot be applied to thermally sprayed deposits owing to the two-dimensional characteristics of voids. The total porosity in the deposits is not meaningful from the viewpoint of prediction of the deposit properties. An idealized structural model and related parameters, instead of porosity, are proposed to characterize quantitatively the microstructure of the thermally sprayed deposit. The relationships between the properties and the structural parameters are presented for the plasma-sprayed ceramic deposits based on the proposed microstructure model. The properties include the Young's modulus, fracture toughness, erosion resistance, and thermal conductivity of the plasma sprayed ceramic deposits. The correlations of theoretical relationships with reported experimental data are discussed. An agreement of theoretical with observed values suggests that the lamellar structure of the deposit with limited interface bonding is the dominant factor controlling the performance of the deposit.
机译:热喷涂沉积物具有由单独的碎片组成的分层结构。各个小片具有准稳定的优选细晶粒的淬火微观结构。然而,沉积物的这种细粒度的微观结构通常不能通过沉积物的性能改善来反映,因为在层状界面之间会出现具有二维空隙的层状结构。综述了热喷涂沉积物的微观结构,重点是层结构参数。常规上,用于表征热喷涂沉积物的微观结构的最常见的定量参数之一是通过不同方法测量的孔隙率。然而,由于孔隙的二维特性,不能说明通过常规方法处理的块状多孔材料的性质和孔隙率之间的关系不能应用于热喷涂沉积物。从预测沉积物性质的观点来看,沉积物中的总孔隙率是没有意义的。提出了一种理想的结构模型和相关参数,而不是孔隙率,以定量表征热喷涂沉积物的微观结构。基于所提出的微观结构模型,给出了等离子喷涂陶瓷沉积物的性能与结构参数之间的关系。这些特性包括等离子喷涂陶瓷沉积物的杨氏模量,断裂韧性,耐蚀性和导热性。讨论了理论关系与报道的实验数据的相关性。理论值与观察值的一致性表明,界面结合受限的沉积物的层状结构是控制沉积物性能的主要因素。

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