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Experimental study on heat insulation performance of functionally graded metal/ceramic coatings and their fracture behavior at high surface temperatures

机译:功能梯度金属/陶瓷涂层的隔热性能及其在高表面温度下的断裂行为的实验研究

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摘要

The objective of this research was to study heat insulation performance and fracture behavior of thermal barrier-type functionally graded material (FGM) coatings under high heat flux. The FGM coatings with thicknesses varying from 0.75 to 2.1 nun were designed and deposited onto a steel substrate by plasma spraying. With the high heat flux of 0.68 MW m(-2), the thickest specimen exhibits a high surface temperature of 1690 degrees C and the corresponding temperature difference between the top surface and the bottom surface of the coating is high up to 760 degrees C. The results of thermal cycling test with a surface temperature of 1400 degrees C (during heating) showed that there existed a great difference in fracture location between different specimens. Fracture behavior of the coatings at surface temperatures of 1500, 1600 and 1700 degrees C was also investigated. The coating thickness and surface temperature were found to influence the number and the length of cracks. The specimen with the coating thickness of 1.1 mm is the most susceptible to local spallation at the top ceramic coat, while the thickest FGM coating is the most susceptible to cracking at the interface close to the bond coat. Heating time also had an effect on cracking behavior. These results provided some necessary information for appropriate design of FGM coatings to sustain higher temperatures and gradients than those in today's applications. (c) 2004 Elsevier B.V All rights reserved.
机译:这项研究的目的是研究在高热通量下热障型功能梯度材料(FGM)涂层的隔热性能和断裂行为。设计厚度从0.75到2.1微米不等的FGM涂层,并通过等离子喷涂将其沉积在钢基底上。在具有0.68 MW m(-2)的高热通量的情况下,最厚的样品呈现出1690摄氏度的高表面温度,并且涂层的顶面和底面之间的相应温差高达760摄氏度。表面温度为1400摄氏度(加热时)的热循环测试结果表明,不同试样之间的断裂位置存在很大差异。还研究了在1500、1600和1700摄氏度表面温度下涂层的断裂行为。发现涂层厚度和表面温度影响裂纹的数量和长度。涂层厚度为1.1 mm的样品最容易在顶部陶瓷涂层处发生局部剥落,而最厚的FGM涂层在靠近粘结涂层的界面处最容易破裂。加热时间也对开裂行为有影响。这些结果为FGM涂层的适当设计提供了一些必要的信息,以维持比当今应用更高的温度和梯度。 (c)2004 Elsevier B.V保留所有权利。

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