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Original Articles

Slide diamond burnishing of tool steels with adhesive coatings and diffusion layers

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Pages 269-277 | Received 05 Jun 2012, Accepted 15 Aug 2012, Published online: 12 Nov 2013

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (3)

X. Y. Ma, Q. Zhang, Z. C. Luo & G. H. Wu. (2014) Preparation and geomagnetic shielding property of Fe–Al multilayer alloy plate. Materials Research Innovations 18:sup4, pages S4-532-S4-535.
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Mehdi Ahmadi, Haifeng Zhang, Cheng Yu & Joshua Wahrmund. (2014) Determining elastic and shear moduli of cold-formed steel at elevated temperatures using a new sonic resonance method. Nondestructive Testing and Evaluation 29:1, pages 1-13.
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Articles from other publishers (15)

Jawad Zaghal, Viktor Molnár & Márton Benke. (2023) Improving surface integrity by optimizing slide diamond burnishing parameters after hard turning of 42CrMo4 steel. The International Journal of Advanced Manufacturing Technology.
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Csaba Felhő, Frezgi Tesfom & Gyula Varga. (2023) ANOVA Analysis and L9 Taguchi Design for Examination of Flat Slide Burnishing of Unalloyed Structural Carbon Steel. Journal of Manufacturing and Materials Processing 7:4, pages 136.
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W. Koszela, P. Bałon, S. E. Rejman, B. Kiełbasa, R. Smusz & M. Bembenek. (2023) The Influence of Structuring Surfaces and Slide Burnishing on Tribological Properties. METALLOFIZIKA I NOVEISHIE TEKHNOLOGII 45:3, pages 403-421.
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M. Bembenek, V. Kopei, L. Ropyak & K. Levchuk. (2023) Stressed State of Chrome Parts During Diamond Burnishing. METALLOFIZIKA I NOVEISHIE TEKHNOLOGII 45:2, pages 239-250.
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Ahmed Raza & Sudhanshu Kumar. (2022) A critical review of tool design in burnishing process. Tribology International 174, pages 107717.
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Changsheng Zhang, Xuehui Shen, Jiatian Wang, Chonghai Xu, Jianqun He & Xiaolan Bai. (2021) Improving surface properties of Fe-based laser cladding coating deposited on a carbon steel by heat assisted ultrasonic burnishing. Journal of Materials Research and Technology 12, pages 100-116.
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J. T. Maximov, G. V. Duncheva, A. P. Anchev, V. P. Dunchev & J. Capek. (2021) A cost-effective optimization approach for improving the fatigue strength of diamond-burnished steel components. Journal of the Brazilian Society of Mechanical Sciences and Engineering 43:1.
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J. T. Maximov, G. V. Duncheva, A. P. Anchev & M. D. Ichkova. (2019) Slide burnishing—review and prospects. The International Journal of Advanced Manufacturing Technology 104:1-4, pages 785-801.
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J.T. Maximov, G.V. Duncheva, A.P. Anchev, N. Ganev & V.P. Dunchev. (2019) Effect of cyclic hardening on fatigue performance of slide burnished components made of low‐alloy medium carbon steel. Fatigue & Fracture of Engineering Materials & Structures 42:6, pages 1414-1425.
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Juha Huuki, Sampsa V.A. Laakso & Rizwan Ullah. (2019) Effect of tangential misalignment in ultrasonic burnishing. Procedia Manufacturing 38, pages 1540-1546.
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Alberto Saldaña-Robles, Héctor Plascencia-Mora, Eduardo Aguilera-Gómez, Adriana Saldaña-Robles, Alfredo Marquez-Herrera & José Angel Diosdado-De la Peña. (2018) Influence of ball-burnishing on roughness, hardness and corrosion resistance of AISI 1045 steel. Surface and Coatings Technology 339, pages 191-198.
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Daniel Toboła, Witold Brostow, Kazimierz Czechowski & Piotr Rusek. (2017) Improvement of wear resistance of some cold working tool steels. Wear 382-383, pages 29-39.
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Łukasz Janczewski, Daniel Toboła, Witold Brostow, Kazimierz Czechowski, Haley E. Hagg Lobland, Marcin Kot & Krzysztof Zagórski. (2016) Effects of ball burnishing on surface properties of low density polyethylene. Tribology International 93, pages 36-42.
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Magdalena Szutkowska, Daniel Toboła & Kazimierz Czechowski. (2015) Burnishing of Aluminium Alloy Surface Using Diamond Matrix Composite Tools. Key Engineering Materials 641, pages 39-46.
Crossref
W. Brostow, K. CzechowskiM. Kot, P. RusekD. Toboła. (2015) Surface Integrity Achieved by Finishing Processes on Sverker 21 and Vanadis 6 Cold Working Tool Steels. Surface Integrity Achieved by Finishing Processes on Sverker 21 and Vanadis 6 Cold Working Tool Steels.

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