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Article

Mechanical and Tribological Properties of (AlCrNbSiTiMo)N High-Entropy Alloy Films Prepared Using Single Multiple-Element Powder Hot-Pressed Sintered Target and Their Practical Application in Nickel-Based Alloy Milling

1
Department of Power Mechanical Engineering, National Formosa University, Yunlin 632, Taiwan
2
International Master’s Program in Interdisciplinary Sustainability Studies, National Cheng Kung University, Tainan 701, Taiwan
3
Department of Mechanical Engineering, Institute of Manufacturing Technology, Chienkuo Technology University, Changhua 500, Taiwan
4
Department of Mechanical Engineering, National Cheng Kung University, Tainan 701, Taiwan
*
Author to whom correspondence should be addressed.
Lubricants 2024, 12(11), 391; https://doi.org/10.3390/lubricants12110391
Submission received: 16 October 2024 / Revised: 6 November 2024 / Accepted: 12 November 2024 / Published: 14 November 2024
(This article belongs to the Special Issue Recent Advances in Tribological Properties of Machine Tools)

Abstract

(AlCrNbSiTiMo)N high-entropy alloy films with different nitrogen contents were deposited on tungsten carbide substrates using a radio-frequency magnetron sputtering system. Two different types of targets were used in the sputtering process: a hot-pressing sintered AlCrNbSiTi target fabricated using a single powder containing multiple elements and a vacuum arc melting Mo target. The deposited films were denoted as RN0, RN33, RN43, RN50, and RN56, where RN indicates the nitrogen flow ratio relative to the total nitrogen and argon flow rate (RN = (N2/(N2 + Ar)) × 100%). The as-sputtered films were vacuum annealed, with the resulting films denoted as HRN0, HRN33, HRN43, HRN50, and HRN56, respectively. The effects of the nitrogen content on the composition, microstructure, mechanical properties, and tribological properties of the films, in both as-sputtered and annealed states, underwent thorough analysis. The RN0 and RN33 films displayed non-crystalline structures. However, with an increase in nitrogen content, the RN43, RN50, and RN56 films transitioned to FCC structures. Among the as-deposited films, the RN43 film exhibited the best mechanical and tribological properties. All of the annealed films, except for the HRN0 film, displayed an FCC structure. In addition, they all formed an MoO3 solid lubricating phase, which reduced the coefficient of friction and improved the anti-wear performance. The heat treatment HRN43 film displayed the supreme hardness, H/E ratio, and adhesion strength. It also demonstrated excellent thermal stability and the best wear resistance. As a result, in milling tests on Inconel 718, the RN43-coated tool demonstrated a significantly lower flank wear and notch wear, indicating an improved machining performance and extended tool life. Thus, the application of the RN43 film in aerospace manufacturing can effectively reduce the tool replacement cost.
Keywords: high entropy alloy; single multiple-element powder; tribological properties; thermal stability; machining performance high entropy alloy; single multiple-element powder; tribological properties; thermal stability; machining performance

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MDPI and ACS Style

Horng, J.-H.; Kao, W.-H.; Lin, W.-C.; Chang, R.-H. Mechanical and Tribological Properties of (AlCrNbSiTiMo)N High-Entropy Alloy Films Prepared Using Single Multiple-Element Powder Hot-Pressed Sintered Target and Their Practical Application in Nickel-Based Alloy Milling. Lubricants 2024, 12, 391. https://doi.org/10.3390/lubricants12110391

AMA Style

Horng J-H, Kao W-H, Lin W-C, Chang R-H. Mechanical and Tribological Properties of (AlCrNbSiTiMo)N High-Entropy Alloy Films Prepared Using Single Multiple-Element Powder Hot-Pressed Sintered Target and Their Practical Application in Nickel-Based Alloy Milling. Lubricants. 2024; 12(11):391. https://doi.org/10.3390/lubricants12110391

Chicago/Turabian Style

Horng, Jeng-Haur, Wen-Hsien Kao, Wei-Chen Lin, and Ren-Hao Chang. 2024. "Mechanical and Tribological Properties of (AlCrNbSiTiMo)N High-Entropy Alloy Films Prepared Using Single Multiple-Element Powder Hot-Pressed Sintered Target and Their Practical Application in Nickel-Based Alloy Milling" Lubricants 12, no. 11: 391. https://doi.org/10.3390/lubricants12110391

APA Style

Horng, J.-H., Kao, W.-H., Lin, W.-C., & Chang, R.-H. (2024). Mechanical and Tribological Properties of (AlCrNbSiTiMo)N High-Entropy Alloy Films Prepared Using Single Multiple-Element Powder Hot-Pressed Sintered Target and Their Practical Application in Nickel-Based Alloy Milling. Lubricants, 12(11), 391. https://doi.org/10.3390/lubricants12110391

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