THERMAL SCIENCE
International Scientific Journal
TRIBOLOGICAL PERFORMANCE OF NI-W/PTFE COMPOSITE COATING VIA PULSE ELECTRODEPOSITION
ABSTRACT
The Ni-W/PTFE co-depositions were successfully prepared on steel via pulse electrodeposition methods. Electrodeposition was perform by dispersing 5-20 g/L PTFE particles from Ni-Watt bath. The surface morphology, phase analyses crstalytallite size, distorsion and hardness of the samples were characterized by SEM, XRD, and Vicker's microhardness tester. The friction coefficient of the coatings were carried out using CSM microtester. As increasing with the concentration of the PTFE in the solution, the wear resistance properties of theco-depositions were increased. These experimental results determined that the PTFE concentration of 15 g/L in the electrolyte was the optimum content to obtain the best micro-structure and wear performance.
KEYWORDS
PAPER SUBMITTED: 2021-05-21
PAPER REVISED: 2021-10-15
PAPER ACCEPTED: 2022-04-28
PUBLISHED ONLINE: 2022-07-23
THERMAL SCIENCE YEAR
2022, VOLUME
26, ISSUE
Issue 4, PAGES [2885 - 2893]
- Attarzadeh, N., et al., New Promising Ceramic Coatings for Corrosion and Wear Protection of Steels: A Review, Surfaces and Interfaces, 23 (2021), Jan., 100997
- Kordijazi, A., et al., A Review of Application of Machine Learning in Design, Synthesis, and Characterization of Metal Matrix Composites: Current Status and Emerging Applications, JOM, 73 (2021), 7, pp. 2060-2074
- VB, S., An Overview on the Preparation, Characterization and Properties of Electrodeposited-Metal Matrix Nanocomposites, Nanosci. Technol. Open Access, 1 (2014), 3, pp. 1-20
- Mahidashti, Z., et al., Review of Nickel-Based Electrodeposited Tribo-Coatings, Trans. Indian Inst. Met., 71 (2018), 2, pp. 257-295
- Li, H., et al., Influence of Pulse Frequency on Corrosion Resistance and Mechanical Properties of Ni-W/B4C Composite Coatings, Colloids Surfaces A Physicochem, Eng. Asp., 629 (2021), July, 127436
- Zhang, Z., et al., A Novel Synthesis Method for Functionally Graded Alloy Coatings by Induced Electrodeposition, Mater. Lett., 312 (2022), April, 131681
- Duru, E., et al., Optimization of Ni-B Coating Bath and Effect of DMAB Concentration on Hardness and Wear, Surfaces and Interfaces, 22 (2021), Feb., 100880
- Steffani, C., Meltzer, M., Electrodeposited Tungsten-Nickel-Boron: A Replacement for Hexavalent Chromium, Technical report, Lawrence Livermore Nat. Lab., Livermore, Cal., USA, 1995
- Surdem, S., et al., A Parametric Study on the Relationship between NaBH4 and Tribological Properties in the Nickel-Boron Electroless Depositions, Mater. Res. Express, 6 (2019), 12, 125085
- Makalesi, A., et al., Akımsız Ni-P-W Kompozit Kaplamalarda PTFE Konsantrasyonunun Sertlik ve Asınma Uzerinde Etkisi, Eur. J. Sci. Technol. Spec., 28 (2021), Nov., pp. 1356-1359
- Hu, J., et al., The Anticorrosive and Antifouling Properties of Ni-W-P-nSiO2 Composite Coating in A Simulated Oilfield Environment, Jom, 70 (2018), 11 pp. 2619-2625
- Huang, P. C., et al., Preparation and Tribological Research of the Electrodeposited Ni
- Haseeb, A. S. M. A., et al., Friction and Wear Characteristics of Electrodeposited Nanocrystalline Nickel-Tungsten Alloy Films, Wear, 264 (2008), 1-2, pp. 106-112
- Szczygieł, B., Kołodziej, M., Composite Ni/Al2O3 Coatings and Their Corrosion Resistance, Electrochim. Acta, 50 (2005), 20, pp. 4188-4195
- Ulu, S., et al., Characterization of TiO2 Reinforced Electroless Ni-P-B-W-TiO2 Multi Alloy Coatings: The Effect of TiO2 Concentration, Proceedings, 19th International Metallurgy & Materials Congress, Istanbul, Turkey, 2018, pp. 1036-1039
- Lajevardi, S. A., Shahrabi, T., Effects of Pulse Electrodeposition Parameters on the Properties of Ni-TiO2 Nanocomposite Coatings, Appl. Surf. Sci., 256 (2010), 22, pp. 6775-6781
- Sadreddini, S., Afshar, A., Corrosion Resistance Enhancement of Ni-P-nanoSiO2 Composite Coatings on Aluminum, Appl. Surf. Sci., 303 (2014), June, pp. 125-130
- Dogan, F., et al., Optimization of Pulsed Electro Co-Deposition for Ni-B-TiN Composites and the Variation of Tribological and Corrosion Behaviors, Surf. Coatings Technol., 400 (2020), Oct., 126209
- Chen, B., et al., Tribological Properties of Solid Lubricants (Graphite, h-BN) for Cu-Based P/M Friction Composites, Tribol. Int., 41 (2008), 12, pp. 1145-1152
- Dogan, F., et al., Tribology Study of Pulse Electrodeposited Ni-B-SWCNT Composite Coating, Jom, 74 (2022), 2, pp. 574-583
- Duru, E., et al., Fabrication and Characterization of Graphene Oxide Reinforced NiB Composite Coating by Pulsed Electrodeposition Technique, Diam. Relat. Mater., 120 (2021), Oct., 108688
- Mohammadi, M., Ghorbani, M, Wear and Corrosion Properties of Electroless Nickel Composite Coatings with PTFE and/or MoS2 Particles, Journal Coatings Technol. Res., 8 (2011), 4, pp. 527-533
- Safavi, M. S., et al., Electrodeposited Ni-Co Alloy-Particle Composite Coatings: A Comprehensive Review, Surf. Coatings Technol., 382 (2020), Jan., 125153
- Allahyarzadeh, M. H., et al., Structure and Wettability of Pulsed Electrodeposited Ni-W-Cu-(α-Alumina) Nanocomposite, Surf. Coatings Technol., 307 (2016), Dec., pp. 525-533
- Guglielmi, N., Kinetics of the Deposition of Inert Particles from Electrolytic Baths, Journal Electrochem. Soc., 119 (1972), 8, 1009
- Dogan, D., et al., Investigation of Mechanical and Tribological Caracteristics of Ni-B Coatings Deposited on Steel, Journal Boron, 6 (2020), 1, pp. 209-215
- Gultekin, D., et al., Improved Wear Behaviors of Lead-Free Electroless NiB and Ni-B/CeO2 Composite Coatings, Surf. Coatings Technol., 422 (2021), Sep., 127525
- Urdem, S., et al., Evaluation of High Temperature Tribological Behavior of Electroless Deposited NiB-Al2O3 Coating, Wear, 482-483 (2021), May, 203960
- Dogan, D., et al., Pulsed Electrodeposition of Ni-B/TiN Composites: Effect of Current Density on the Structure, Mechanical, Tribological, and Corrosion Properties, Journal Asian Ceram. Soc., 8 (2020), 4, pp. 1271-1284
- Gao, P., et al., Electrochemical Characteristics and Interfacial Contact Resistance of Ni-P/TiN/PTFE Coatings on Ti Bipolar Plates, Journal Solid State Electrochem., 22 (2018), 7, pp. 1971-1981
- Allahyarzadeh, M. H., et al., Mechanical Properties and Load Bearing Capability of Nanocrystalline Nickel-Tungsten Multilayered Coatings, Surf. Coatings Technol., 386 (2020), Mar., 125472
- Aslan, S., Duru, E., Microstructure and Wear Properties of Electrodeposited Ni-B-Al2O3 Composite Coating on Low Carbon Steel at Elevated Temperature, Journal Mater. Eng. Perform., 31 (2022), Oct., pp. 1693-1704
- Uysal, M., et al., Tribological Properties of Ni-W-TiO2-GO Composites Produced by Ultrasonically-Assisted Pulse Electro Co-Deposition, Surf. Coatings Technol., 410 (2021), Mar., 126942
- Chen, L., et al., Effect of Surfactant on the Electrodeposition and Wear Resistance of Ni-Al2O3 Composite Coatings, Mater. Sci. Eng. A, 434 (2006), 1-2, pp. 319-325