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Electromagnetic and Mechanical Properties of Silica-Aluminosilicates Plasma Sprayed Composite Coatings

机译:硅铝硅酸盐等离子喷涂复合涂层的电磁和机械性能

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摘要

The physico-chemical and thermo-mechanical properties of aluminosilicate ceramics (high-melting point, low thermal expansion coefficient, excellent thermal shock resistance, low-density and good corrosion resistance) make this class of materials a good option for high-temperature structural applications. Al{sub}2O{sub}3-SiO{sub}2 compounds show an excellent refractory behavior allowing a wide use as wear-resistant thermal barrier coatings, in metallurgical and glass plants and in high temperature heat exchangers. Moreover, the low values of thermal expansion coefficient and of complex permittivity allow to extend the use of this ceramic for microelectronic devices, radome for antennas and electromagnetic windows for microwaves and infrared. The present article presents the results of an extensive experimental activity carried out to produce thick aluminosilicate coatings by plasma-spray technique. The APS deposition parameters were optimized on the basis of a surface response approach, as specified by design of experiments (DoE) methodologies. Samples were tested for phase composition, total porosity, micro-structure, microhardness, deposition efficiency, fracture toughness, and modulus of rupture. Finally, coatings were characterized for their particularly interesting electromagnetic properties: complex permittivity was measured at microwave frequency using a network analyzer with wave guide.
机译:铝硅酸盐陶瓷的物理化学和热机械性能(高熔点,低热膨胀系数,出色的耐热冲击性,低密度和良好的耐腐蚀性)使此类材料成为高温结构应用的良好选择。 Al {sub} 2O {sub} 3-SiO {sub} 2化合物显示出优异的耐火性能,可广泛用作冶金和玻璃厂以及高温热交换器中的耐磨热障涂层。此外,低的热膨胀系数值和复介电常数值使得该陶瓷的应用扩展到微电子设备,天线罩,天线以及微波和红外线的电磁窗。本文介绍了通过等离子喷涂技术生产厚铝硅酸盐涂层的广泛实验活动的结果。如实验设计(DoE)方法所规定的那样,在表面响应方法的基础上优化了APS沉积参数。测试样品的相组成,总孔隙率,微观结构,显微硬度,沉积效率,断裂韧性和断裂模量。最后,对涂层的特殊电磁特性进行了表征:使用带波导网络分析仪在微波频率下测量复介电常数。

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