Material implantation techniques based on tungsten carbide to increase friction surface durability

Author:

Горленко Александр,Gorlenko Aleksandr,Давыдов Сергей1,Davydov Sergey2

Affiliation:

1. Брянский государственный технический университет

2. Bryanskiy gosudarstvennyy tehnicheskiy universitet

Abstract

The modification of steel friction surface at the expense of the formation on it a surface layer implanted and compound strengthened with tungsten carbides together with the formation of a sub-layer consisting of cellular super-cooled austenite stabilized by tungsten and reinforced with tungsten carbide grid consisting of packaged nano-sized particles is considered. The influence of implanted tungsten carbides upon the formation in friction surfaces of wear-resistant structures formed during the realization of combined electro-mechanical working techniques is investigated. It is shown that at a thermo-power effect in the area of deformation takes place an intensive austenitizing of steel with the dilution of a tungsten carbide powder and further formation of composite nano-structures as a result of the dissociation of super-cooled austenite oversaturated with tungsten. There are shown results of tribotechnical tests of cylindrical samples by a normalized method.

Publisher

Bryansk State Technical University BSTU

Reference6 articles.

1. Горленко, А.О., Горленко, О.А. Импульсная электромеханическая обработка // Наукоемкие технологии в машиностроении. – 2011. – № 6 (06). – С. 21 – 25., Gorlenko, А.О., Gorlenko, О.А. Pulse electro-mechanical working // Science Intensive Technologies in Mechanical Engineering. – 2011. – № 6 (06). – pp. 21 – 25.

2. Горленко, А.О. Упрочнение поверхностей трения деталей машин при электромеханической обработке // Вестник БГТУ. – 2011. – № 3. – С. 4 – 8., Gorlenko, А.О. Friction surfaces strengthening of ma-chine parts at electro-mechanical working // Bulletin of BSTU. – 2011. – № 3. – pp. 4 – 8.

3. Горленко, А.О., Матлахов, В.П. Технологическое повышение износостойкости цилиндрических поверхностей трения // Трение и смазка в машинах и механизмах. – 2010. – № 5. – С. 20 – 26., Gorlenko, А.О., Matlakhov, V.P. Wear-resistance technological increase in cylindrical friction surfaces // Friction and Lubrication in Machines and Mechanisms. – 2010. – № 5. – pp. 20 – 26.

4. Горленко, А.О., Матлахов, В.П. Обеспечение из-носостойкости поверхностей трения путем управляемого технологического воздействия // Вестник БГТУ. – 2007. – № 2. – С. 10 – 15., Gorlenko, А.О., Matlakhov, V.P. Friction surface wear-resistance assurance by supervised technological effect // Bulletin of BSTU. – 2007. – № 2. – pp. 10 – 15.

5. Горленко, А.О., Прудников, М.И. Нормализация триботехнических испытаний для создания базы данных по одноступенчатому технологическому обеспечению износостойкости // Трение и смазка в машинах и механизмах. – 2008. – №9. – С. 7 – 13., Gorlenko, А.О., Prudnikov, М.I. Tribotechnical tests normalization for data base formation on one-stage technological support of wear-resistance // Friction and Lubrication in Machines and Mechanisms. – 2008. – №9. – pp. 7 – 13.

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