Vacuum-plasma multilayer protective coatings for turbine blades

A. V. Sagalovych, V. Sagalovych, V. Popov, S. Dudnik
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引用次数: 2

Abstract

Abstract The methods of creating the advanced nanomaterials and nanotechnologies of functional multicomponent coatings Avinit (mono- and multilayer, nanostructured, gradient) to improve the performance of materials, components and parts are considered. The vacuum-plasma nanotechnologies Avinit were developed based on the use of gas-phase and plasma-chemical processes of atomic-ionic surface modification and the formation of nanolayer coatings in the environment of non-steady low-temperature plasma. Considerable attention is paid to the equipment for application of functional multilayer composite coatings: an experimental-technological vacuum-plasma automated cluster Avinit, which allows to implement complex methods of coating, combined in one technological cycle. The information about the structure and service characteristics of Avinit coatings has a large place. The results of metallographic, metallophysical, tribological investigations of properties of the created coatings and linking of their characteristics with parameters of sedimentation process are described. The possibilities of parameters processes regulation for the purpose of reception of functional materials with the set physicochemical, mechanical complex and other properties are considered. The investigation of creating of multilayer protective surface coatings Аvinit based on Ti-TiN for turbine blades by vacuum-arc method was carried out. The influence of different methods and modes of vacuum-plasma treatment of coated surface of substrates to the adhesion value of nanolayer protective TiTiN coatings is studied. On the basis of carried out investigations the technology of coating the steam turbines blades for protection against flow-accelerated corrosions is developed. The issues of development and industrial implementation of the latest technologies for applying wear-resistant antifriction coatings Avinit with the use of nanotechnology to increase the life of various critical elements of steam and nuclear turbines are covered in detail. The book is aimed at specialists working in the field of ion-plasma surface modification of materials and functional coatings application. Keywords Vacuum plasma multilayer protective coatings Avinit, titanium, titanium nitride, turbine blades, development of nanotechnologies Avinit.
涡轮叶片真空等离子体多层防护涂层
摘要:研究了先进纳米材料的制备方法和功能多组分涂层Avinit(单层和多层、纳米结构、梯度)的纳米技术,以提高材料、组件和部件的性能。真空等离子体纳米技术Avinit是在非稳态低温等离子体环境下,利用气相和等离子体化学过程对原子-离子表面进行修饰,形成纳米涂层的基础上发展起来的。功能性多层复合涂层的应用设备得到了相当大的关注:实验技术真空等离子体自动化集群Avinit,它允许在一个技术周期内实现复杂的涂层方法。关于Avinit涂料的结构和使用特性的信息占有很大的位置。介绍了所制备涂层的金相学、金相物理和摩擦学性能研究结果,以及它们的特性与沉积过程参数的联系。考虑了参数过程调节的可能性,以便接收具有设定的物理化学,机械配合物和其他性能的功能材料。研究了用真空电弧法制备涡轮叶片多层保护层Аvinit的工艺。研究了基材表面真空等离子体处理的不同方法和方式对纳米层TiTiN保护膜附着力的影响。在研究的基础上,提出了汽轮机叶片防流加速腐蚀涂层技术。Avinit使用纳米技术来增加蒸汽和核涡轮机的各种关键元件的寿命,详细介绍了应用耐磨减摩涂层的最新技术的开发和工业实施问题。这本书是针对在离子等离子体表面改性材料和功能涂层应用领域工作的专家。关键词:真空等离子体多层防护涂层Avinit;钛;氮化钛;
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