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Multilayer Nanostructured Wear-Resistant Coatings with Increased Thermal Stability, Adapted to Varying Friction Conditions

机译:具有提高的热稳定性,适应各种摩擦条件的多层纳米结构耐磨涂层

摘要

The work covers studying of influence of indexes of an ion-plasma vacuum-arc deposition method to theudstructure, composition and properties of Ti-Al-N/Zr-Nb-N/Cr-N multilayer nanostructured coatings (MNC).udThe average crystallites size within the layers is about 5-10 nm. Received coatings are featured by absence of anyudchange in the composition and properties after heating up to 1000 ºС, the coatings hardness is up toud36,6GPa, Young's modulus of elasticity is up to 580 GPa, plastic work of deformation is up to 64 %, adhesiveudstrength is about 100 N and coefficient of friction is 0,45.When you are citing the document, use the following link http://essuir.sumdu.edu.ua/handle/123456789/35318
机译:这项工作涵盖了离子等离子体真空电弧沉积方法的指标对Ti-Al-N / Zr-Nb-N / Cr-N多层纳米结构涂层(MNC)的组织,组成和性能的影响。 ud这些层中的平均微晶尺寸约为5-10 nm。接收到的涂层的特征是加热到1000ºС后,成分和性能没有任何变化,涂层的硬度高达ud36,6GPa,杨氏弹性模量高达580 GPa,塑性加工变形达到64%的粘合剂强度约为100 N,摩擦系数为0.45。当您引用该文档时,请使用以下链接http://essuir.sumdu.edu.ua/handle/123456789/35318

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