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Please use this identifier to cite or link to this item: https://libeldoc.bsuir.by/handle/123456789/53665
Title: Influence of MoC Coatings on Wear of Edges of Steel Knives and Cutting Parameters for Milling
Authors: Chayeuski, V. V.
Kuleshov, A. K.
Barcík, Š.
Koleda, P.
Rudak, O. G.
Rudak, P. V.
Keywords: публикации ученых;wood milling;knife edge wear;MoC coatings;cutting power
Issue Date: 2022
Publisher: SpringerLink, Allerton Press Inc.
Citation: Influence of MoC Coatings on Wear of Edges of Steel Knives and Cutting Parameters for Milling / V. V. Chayeuski [et al.] // Journal of Friction and Wear. – 2022. – Vol. 43, No. 6 – P. 370–376.
Abstract: The article studies the characteristics of mill knives of high-speed steel HS 18-0-2-5 with as well as without МоС and Мо 2 С molybdenum carbide coating at plane milling of oak wood. The molybdenum carbide coating was deposited by arc vacuum physical vapor deposition (Arc-PVD). The knife edge wear was determined using a contour measuring system for determining the displacement of the cutting edge along the axis of the cutter wedge sharpness angle (WB W). Compared to a milling cutter with knives without coating, the molybdenum carbide coating improves the wear resistance of the knife blades and increases the cutting power by almost 40% when milling oak wood samples. The mills with the knife edges coated with the molybdenum carbides exhibited an average reduction in oak wood surface roughness R a by 1.5–3 µm as compared to the bare tool in the entire range of applied feed rates and milling length. The laboratory tests of the wood-cutting tool covered with MoC coating prove that their durability has increased by 30% against the durability of the bare tool used in milling oak wood.
URI: https://libeldoc.bsuir.by/handle/123456789/53665
Appears in Collections:Публикации в зарубежных изданиях

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