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APPLICATION METHOD OF THERMAL-PROTECTIVE NANOSTRUCTURED COATING WITH PLASMA SPUTTERING OF POWDER

机译:粉末等离子喷涂热保护性纳米涂层的应用方法

摘要

FIELD: machine building.;SUBSTANCE: maintenance of dynamic vacuum in a chamber for coating application is performed and alternating sputtering of the coating layer with porosity of 0.1-0.2% is performed; it consists of fine particles and nanoparticles of the powder using an under-expanded plasma jet at maintaining the chamber dynamic vacuum with the pressure that is lower than static pressure in the plasma jet with sputtered powder at the chamber inlet, and then, sputtering of the coating layers is performed with porosity of 3.5-5.0%; it consists of plasticised powder particles using an over-expanded plasma jet at maintaining in the chamber of dynamic vacuum with the pressure that is higher than static pressure in the plasma jet with the sputtered powder at the chamber inlet. Alternating sputtering is performed till the required coating is obtained.;EFFECT: nanostructured thermal-protective coating with decreased stresses and increased resistance to action of thermocyclic loads.;7 dwg, 2 ex
机译:领域:机器:维护:在用于涂覆的腔室中维持动态真空,并交替进行孔隙率为0.1-0.2%的涂层的溅射;它由粉末的细颗粒和纳米颗粒组成,它们使用膨胀不足的等离子流维持腔室动态真空,压力低于等离子流的静压,在腔室入口处溅射粉末后再进行溅射。涂层的孔隙率为3.5-5.0%;它由增塑的粉末颗粒组成,使用过膨胀的等离子流在腔室内保持动态真空,压力高于在腔室入口处溅射粉末的等离子流的静压。交替进行溅射直到获得所需的涂层。效果:纳米结构的热保护涂层,应力降低,并且对热循环载荷的抵抗力增强; 7 dwg,2 ex

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