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Meeting MS&T21: Materials Science & Technology
Symposium Advances in Surface Engineering
Presentation Title Methodological Principles of Engineering Surface Stainless Steel at Treatment Cutting with a Polymer
Author(s) Volodymyr Tsyganov, Sergey Sheyko
On-Site Speaker (Planned) Volodymyr Tsyganov
Abstract Scope Management possibility is considered using the features forming of the nanostructural state of superficial layer intensity wear of details. Perspective of the use of Polymethylmetacrilat is shown in the contact of tribocoupling for creation of the certain nanostructural state of superficial layer details of stainless steel. Methodology of engineering surface of enhanceable wearproofness is presented in the conditions of difficult dynamic pin loading, and also at finish treatment of details tribocouplings with the use of granular abrasive material. Keywords: wearproofness; superficial layer; nanostructural state; loading

OTHER PAPERS PLANNED FOR THIS SYMPOSIUM

Effect of Laser Shock Peening on Residual Stress Distribution of 304 Austenitic Steel
Engineering of Wearproof Surface by Management of Mechanical-Chemical Phenomena in Zone Contact
Erosion Resistant and Passively Emitting Composite Coatings for Space Charge Mitigation Applications
High Adhesive Joint Durability of Aluminum Alloys with Chemical Free Treatments
Influences of Varied Electro-discharge Machining Operations on Surface Conditions of a Nickel-Base Superalloy
Ionic Polymer-Metal Composite (IPMC) Degradation Study and Solution Considerations for Biomimetic Thin-film Actuator Applications
Mechanical Ball Milling of Gas Atomized Ti‒48Al‒2Cr‒2Nb Powder for Preventing Smoking in Electron Beam Additive Manufacturing Process
Methodological Principles of Engineering Surface Stainless Steel at Treatment Cutting with a Polymer
Non-linear Through-hole Fabrication by Electrochemical Machining
P2-27: Novel Rosette-like Formations on Ti Surfaces with Nanosize "Petal" Features
Surface Evolution and Corrosion Behavior of Cu-doped Carbide-reinforced Martensitic Steels in a Sulfuric Acid

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