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Performance evaluation of titanium-based metal nitride coatings

In this work, the titanium-based nitride coatings including TiN, TiAlN, and TiAlCrN were, respectively, deposited on the surface of high-speed steel substrate W 6 Mo 5 Cr 4 V 2 (M2) by the physical vapor deposition technology.Importantly, the layered nitride coating system shows enhanced adhesion after thermal exposure due to the interdiffusion and it can adaptively conform such that A conformable high temperature nitride coating for Ti alloys

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Tribological performance of titanium nitride coatings: A comparative

The titanium nitride that crystallizes in the B1 system [2] is a versatile material with nitrogen content varying from 37.5% to 50% [4]. Nowadays, titanium nitride The formation of hard titanium nitride coatings with a thickness of 100–200 μ m was achieved by peening at 1373 K for 10 s and subsequent heating at 1373 K for 120 Rapid formation of titanium nitride coating by

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Li Shen, Jiang Zhao, Yu Qing Zhang, and Guo Zheng

coatings. TiAlN coating can prolong the lifetime of the sub strate die up to 260%. Keywords: titanium-based nitride coating, performance, finite element method, Archard Titanium nitride coatings on industrial parts were found to be 10 times less effective than high-entropy CuZrTiNiCr coatings. This is due to the wear resistance of Comparison of titanium nitride and high-entropy coatings

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Laser-Sustained Plasma (LSP) Nitriding of

Laser nitriding is a thermochemical method of enhancing the surface hardness and wear resistance of titanium. This technique entails scanning the titanium substrate under a laser beam near its focal plane Titanium nitride coatings on industrial parts were found to be 10 times less effective than high-entropy CuZrTiNiCr coatings. This is due to the wear resistance of these coatings, Comparison of titanium nitride and high-entropy coatings

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Fatigue Behavior of Coated Titanium Alloys NASA

coating’s effects on the fatigue behavior of the titanium-based alloys were compared. Although the multicomponent coating was initially optimized to improve the Coating materials such as titanium nitride (TiN), titanium carbo-nitride (TiCN), titanium carbide (TiC), chromium nitride (CrN) and dimond-like carbon (DLC) are widely used to improve the surface quality Coatings Free Full-Text The Effect of TiN, TiAlN,

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Coatings Free Full-Text Fluorination of TiN,

As semiconductor devices become miniaturized, the importance of the molecular-level understanding of the fabrication processes is growing. Titanium nitride (TiN) is an important material utilized in Elastic modulus of the PVD coating is about 426GPa. The PIRAC coatings show adjustable elastic modulus. Elastic modulus of the PIRAC coatings prepared at 750∘C for 24h and that at 800∘C for 8hHardness and elastic modulus of titanium nitride

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TiN Coating Titanium Nitride Coating Surface Solutions

Titanium nitride (TiN) coating is wear resistant, inert and reduces friction. Use it on cutting tools, punches, dies and injection mold components to improve tool life two to ten times, or more, over uncoated tools. Medical device manufacturers use TiN coating to reduce galling between sliding components, help retain sharp edges on surgicalA titanium nitride (TiN) coating using microwaves can be accomplished in air, and satisfies the required conditions of an on-demand TiN coating process. However, the coating mechanism using microwaves is not completely clear. In this study, to understand the detailed mechanism of microwave titanium nitridation in air, the quantity of nitrogen Nitridation Reaction of Titanium Powders by 2.45 GHz

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Performance of chromium nitride and titanium nitride coatings

The nitride coatings and nitride layers were deposited using pure Cr or Ti targets in an argon and nitrogen atmosphere under a working pressure of 0.45 Pa. The multilayer coatings, with chromium nitride. Results and discussion. The composition of chromium nitride coatings or layers, obtained after RBS experiments, is CrN 1−x, where This study was performed to examine whether plating of orthodontic wire with titanium nitride (TiN), which does not impair its mechanical properties, could prevent the leaching of metal ions from the wire on immersion in acid. Steele, J.G.; McCabe, J.F.; Barnes, I.E. Properties of a titanium nitride coating for dental instruments. J. DentApplied Sciences Free Full-Text Titanium Nitride Plating

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Crystals Free Full-Text X-Ray Photoelectron Spectroscopy

Titanium nitride thin films were grown on Si(001) and fused silica substrates by radio frequency reactive magnetron sputtering. Post-growth annealing of the films was performed at different temperatures from 300 °C to 700 °C in nitrogen ambient. Films annealed at temperatures above 300 °C exhibit higher surface roughness, smaller In this research report, we used a cathodic cage plasma processing technique to deposit a titanium nitride-based coating on NiTi non-ferrous metallic material for five different time durations (1 h to 5 h). The effect of treatment time on microstructure, chemical composition, surface topography and morphology was investigated by X-rayEffect of TiN-Based Nanostructured Coatings on the

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Corrosion and Wear-Resistant Composite Zirconium Nitride

The aim of the study was to investigate the possibility of an effective improvement in performance properties, including corrosion and wear resistance of magnesium AZ91D alloy using a surface engineering solution based on zirconium nitride composite surface layers produced on AZ91D alloy in a hybrid process using Vapor deposition technology can improve the surface wear resistance of titanium alloys, and prepare lightweight and corrosion-resistant self-lubricating spherical plain bearings made of titanium alloys. Coatings Free Full-Text Wear Mechanism of TC4

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XRD and XPS study on reactive plasma sprayed titanium–titanium nitride

The study of titanium–titanium nitride reactive plasma sprayed coatings by XRD and XPS has allowed the following observations to be made: The spraying of Ti powder in a nitrogen-containing reactive plasma gas leads to the formation of titanium nitrides (TiN, Ti 2 N); the nitride content increases with increasing nitrogen in the plasma Phase characterization and identification of the HEA and HEA nitride coatings were obtained by X-ray diffraction (XRD, D8 Discover, Bruker Inc., Kanagawa, Japan) operated using a 2° grazing angle. The Coatings Free Full-Text Tribological and

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Corrosion Behavior of Nitrided Layer of Ti6Al4V Titanium

Ti6Al4V titanium alloys, with high specific strength and good biological compatibility with the human body, are ideal materials for medical surgical implants. However, Ti6Al4V titanium alloys are prone to corrosion in the human environment, which affects the service life of implants and harms human health. In this work, hollow cathode Titanium nitride and/or nitrogen ion implanted coated dental materials have been investigated since the mid-1980s and considered in various applications in dentistry such as implants, abutments, orthodontic wires, endodontic files, periodontal/oral hygiene instruments, and casting alloys for fixed restorations. Multiple methodologies have been Coatings Free Full-Text Titanium Nitride and Nitrogen Ion Implanted

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Coatings Free Full-Text Comparative Study of Tribological

The CVD titanium nitride (TiN) coating was developed soon after TiC and reached the commercial exploitation stage in the early 1970s . The high temperature (typically about 1000 °C) limited the application of such coatings mainly to cemented carbide tools, but they were not suitable for wear protection of high speed steel (HSS) tools.The microhardness of high-entropy coatings is 14.1 GPa, while for titanium nitride coatings it varies over a wide range 20.2 GPa. The friction coefficient of titanium nitride coatings changes 0.4Comparison of titanium nitride and high-entropy coatings

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Titanium Nitride (TiN) Coatings Oerlikon Balzers

TiN-based coatings. TiN (short for Titanium Nitride) coating dates back to 1977 when the first trials to coat forming tools were successful. BALINIT A, Oerlikon Balzers' first TiN-based coating, was officially released to the market only one year later. Ever since this form of PVD coating serves varied applications over multiple industries.Titanium and its alloys possess several attractive properties that include a high strength-to-weight ratio, biocompatibility, and good corrosion resistance. However, due to their poor wear resistance, titanium components need to undergo surface hardening treatments before being used in applications involving high contact stresses. Laser Laser-Sustained Plasma (LSP) Nitriding of Titanium: A Review

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Improving the Properties of Composite Titanium Nitride

Coating magnesium alloys with nitride surface layers is a prospective way of improving their intrinsically poor surface properties; in particular, their tribological and corrosion resistance. These layers are usually produced using PVD methods using magnetron sputtering or arc evaporation. Even though the thus-produced layers

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