Academic literature on the topic 'Ti-Cr-N coating'

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Journal articles on the topic "Ti-Cr-N coating"

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Kukareko, V. A., A. V. Kushnerou, F. F. Komarov, S. V. Konstantinov, and V. E. Strel’nitskij. "Mechanical properties and the structural condition of Cr–N and Ti–Cr–N coatings, formed by the vacuum-arch deposition method." Proceedings of the National Academy of Sciences of Belarus. Physics and Mathematics Series 55, no. 3 (2019): 366–74. http://dx.doi.org/10.29235/1561-2430-2019-55-3-366-374.

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With the development of nuclear industry, the requirements for materials capable of operating under the conditions of ionizing radiation have increased. Such materials are nitride coatings based on titanium and chromium. In the work, using X-ray diffraction, X-ray microanalysis, nanoindentation method of Oliver and Farr, scratch testing, the structural phase state and the mechanical properties of nanostructured Cr–N and Ti–Cr–N coatings formed by vacuum-arc deposition from filtered plasma on substrates of steel 12X18H10T and alloy Zr2.5%Nb are investigated. It is established that the coating b
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YESKERMESSOV, Didar K., Sergey V. PLOTNIKOV, and Nazgul K. YERDYBAEVA. "STRUCTURE AND PROPERTIES OF MULTI COMPONENT (Ti-Zr-Cr-Nb)N COATINGS OBTAINED BY VACUUM-ARC DEPOSITION." Tribologia 270, no. 6 (2016): 205–18. http://dx.doi.org/10.5604/01.3001.0010.6946.

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Investigated multicomponent coating nitride (Ti-Zr-Cr-Nb)N in this study were obtained using a well-developed technique of vacuum-arc deposition. Theoretical and experimental studies show that the chemical composition, microstructure, and mechanical properties of coatings are based closely on deposition parameters (the working gas pressure and bias potential on the substrate). The microstructure and mechanical properties (Ti-Zr-Cr-Nb)N coatings were investigated using a scanning electron microscope (SEM) equipped with energy dispersive microanalysis prefix and X-ray diffraction (XRD). Phase an
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Volosova, Marina, Jury Bublikov, Catherine Sotova, and Ilya Sadov. "Influence of the nanolayer structure of coatings on the cutting properties of tools." MATEC Web of Conferences 329 (2020): 02035. http://dx.doi.org/10.1051/matecconf/202032902035.

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The paper is focused on the influence of the thickness of nanolayers in the Ti-TiN-(Ti,Cr,Al)N coating on the cutting properties of the tools during the turning of 09G2S silicon-manganese steel. Coatings with the nanolayer thicknesses of 302, 70, and 16 nm were considered. The conducted studies have revealed that a tool with a coating in which the nanolayer thickness is equal to 16 nm demonstrates the longest tool life. At the same time, for such tool, the wear pattern is more balanced, and signs of brittle fracture on the coating are less pronounced. The Ti-TiN- (Ti,Cr,Al)N coating with the n
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Vereschaka, Alexey, Nikolay Sitnikov, Marina Volosova, Anton Seleznev, Catherine Sotova, and Jury Bublikov. "Investigation of Properties of the Zr,Hf-(Zr,Hf)N-(Zr,Hf,Me,Al)N Coatings, Where Me Means Cr, Ti, or Mo." Coatings 11, no. 12 (2021): 1471. http://dx.doi.org/10.3390/coatings11121471.

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The article describes the results of the investigation focused on the properties of the Zr,Hf-(Zr,Hf)N-(Zr,Hf,Me,Al)N coatings, where Me means chromium (Cr), titanium (Ti), or molybdenum (Mo). These coatings have three-layer architecture, including adhesion, transition, and wear-resistant layers, while the latter, in turn, has a nanolayer structure. Despite the fact that the coatings under study have close values of hardness and critical fracture load LC2, there are noticeable differences in wear resistance during the turning of steel. The tools with the coatings under study demonstrated bette
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Chernogor, A. V., I. V. Blinkov, D. S. Belov, V. S. Sergevnin, and A. P. Demirov. "The influence of Ni on the composition, structure and properties of Ti-Cr-N coatings." Powder Metallurgy аnd Functional Coatings, no. 1 (March 15, 2023): 63–74. http://dx.doi.org/10.17073/1997-308x-2023-1-63-74.

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The influence of nickel on the structure and properties of Ti-Cr-N ion-plasma coatings obtained by arc-PVD method has been studied. With a nickel content of up to 11.9 at. %, the coating consists of Cr2N, Ti1 – xCrxN, and metallic Ni. Upon further increase in Ni concentration in the coating, intermetallic compound Ni3Ti is formed. The structure of the coatings was studied using the transmission electron microscopy. The coatings of Ti-Cr-N system are characterized by a columnar structure, in the columns of which Ti1 - xCrxN and Ti1 - yCryN (x > y) sublayers, being several nanometers thick an
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Nawrocki, Jacek, Tomasz Szczech, Marek Poreba, Maciej Motyka, Waldemar Ziaja, and Jan Sieniawski. "Protective Coatings on Steel Dies for Wax Injection Process." Key Engineering Materials 682 (February 2016): 171–76. http://dx.doi.org/10.4028/www.scientific.net/kem.682.171.

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Protective coatings are used today in many applications for reducing friction and wear of tools in hot-working process e.g. metal die casting, hot forging, metal die plastics injection. The main goal of undertaken investigation was to evaluate usability of those coatings for improving wear resistance of metal die applied in investment casting process for wax injection. The (Ti,Al)N and (Al,Cr)N PVD coatings were deposited onto X37CrMoV5-1 hot-work tool steel and their mechanical and tribological properties are characterized in the paper. Based on the results of microscope examinations, scratch
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Wada, Tadahiro, and Hiroyuki Hanyu. "Tool Wear of Aluminum/Chromium/Tungsten-Based-Coated Cemented Carbide in Cutting Hardened Steel." Applied Mechanics and Materials 798 (October 2015): 377–83. http://dx.doi.org/10.4028/www.scientific.net/amm.798.377.

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An aluminum/chromium based coating film, called (Al,Cr)N coating film, has been developed. This coating film has a slightly more inferior critical scratch load and micro-hardness. Therefore, to improve both the scratch strength and micro-hardness of the (Al,Cr)N coating film, the cathode material of an alumi-num/chromium/tungsten target was used in adding the tungsten (W) to the cathode material of the alumi-num/chromium target. To clarify the effectiveness of the aluminum/chromium/tungsten-based coating film, we measured the thickness, micro-hardness and critical scratch strength of aluminum/
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Vereschaka, Alexey, Catherine Sotova, Filipp Milovich, et al. "Influence of the Ti-TiN-(Y,Ti,Al)N Nanolayer Coating Deposition Process Parameters on Cutting Tool Oxidative Wear during Steel Turning." Nanomaterials 13, no. 23 (2023): 3039. http://dx.doi.org/10.3390/nano13233039.

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Ti-TiN-(Y,Ti,Al)N coatings with a three-layer architecture (adhesive Ti layer, transition TiN layer, and wear-resistant (Y,Ti,Al)N layer) were studied. When depositing coatings, three arc current values of the yttrium cathode were used: 65, 85, and 105 A. The yttrium contents in the coatings were 30, 47, and 63 at. %, respectively. When turning 1045 steel, a coating with 30 at. % yttrium showed better wear resistance compared to a commercial (Ti,Cr,Al)N coating. The coating with 63 at. % yttrium did not show an increase in wear resistance compared to the uncoated sample. Nanolayers with a high
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Grigoriev, Sergey, Alexey Vereschaka, Filipp Milovich, et al. "Investigation of the Properties of Ti-TiN-(Ti,Cr,Mo,Al)N Multilayered Composite Coating with Wear-Resistant Layer of Nanolayer Structure." Coatings 10, no. 12 (2020): 1236. http://dx.doi.org/10.3390/coatings10121236.

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The article describes the results of an investigation focused on the properties of the Ti-TiN-(Ti,Cr,Mo,Al)N multilayered composite coating with a wear-resistant layer of nanolayer structure. A transmission electron microscope was used to study the coating structure. The examination of the phase composition using selected area diffraction electron pattern has detected the presence of two phases, including c-(Ti,Cr,Mo,Al)N and h-AlN. The cutting properties of the tool with the coating under consideration were studied during the turning of AISI 1045 steel at vc = 300 m/min, f = 0.25 mm/rev, and
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Vereschaka, Alexey, Filipp Milovich, Nikolay Andreev, et al. "Influence of Cutting Speed during the Turning of Inconel 718 on Oxidation Wear Pattern on the Zr-ZrN-(Zr,Mo,Al)N Composite Nanostructured Coating." Journal of Composites Science 7, no. 1 (2023): 18. http://dx.doi.org/10.3390/jcs7010018.

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The properties and oxidation wear patterns in the composite nanostructured coating of Zr-ZrN-(Zr,Mo,Al)N were studied during the turning of Inconel 718 alloy at the cutting speeds of vc = 125 and 200 m/min. The hardness of the coating, its elastic modulus, and critical fracture load during the scratch testing were determined. The study focused on the tribological properties of the Zr-ZrN-(Zr,Mo,Al)N coating at temperatures of 400–900 °C paired with an insert made of Inconel 718, which exhibited a certain advantage over the reference coatings of Zr-ZrN and Ti-TiN-(Ti,Cr,Al)N of similar thicknes
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Dissertations / Theses on the topic "Ti-Cr-N coating"

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Uglov, V. V., M. M. Barkovskaya, V. V. Khodasevich, and V. A. Ukhov. "Influence of bias voltage on composition and tribological properties Ti-Cr-N coatings formed by ion-plasma deposition." Thesis, Видавництво СумДУ, 2011. http://essuir.sumdu.edu.ua/handle/123456789/20772.

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Ti-Cr-N coatings were formed on St3 steel by cathodic arc vapor deposition while combining titanium or chromium plasma flows in a residual nitrogen atmosphere. Elemental and phase composition of the coatings were studied using Auger electron spectroscopy (AES) and X-ray diffraction (XRD). Coatings are solid solution on the basis of chromium and titanium mononitrides. It is found that an increase in bias voltage leads to relative rise of titanium concentration and to decrease of chromium concentration. With the values of bias voltage less than 120 V coatings grow with (200) preferred orientati
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Rahil, Issam. "Elaboration et caractérisation de revêtements à base de nitrure de chrome, carbonitrure et carbure de titane élaborés par pulvérisation magnétron." Phd thesis, Ecole nationale supérieure d'arts et métiers - ENSAM, 2013. http://pastel.archives-ouvertes.fr/pastel-00967251.

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Le but de ce travail est d'élaborer de nouveaux revêtements anti-usure à base de nitrure de chrome, de carbure et de carbonitrure de titane par dépôt physique en phase vapeur afin d'améliorer la résistance à l'usure à sec des outils de coupe du bois.Des revêtements binaires de CrN et de MoN, ternaires de Cr-Mo-N et de Ti-W-C et quaternaires de Ti-W-C-N ont été déposés sur des outils de coupe en carbure de tungstène et en acier et sur des substrats de silicium par pulvérisation magnétron RF en utilisant différentes cibles (Cr, Mo, Ti et WC) sous différentes atmosphères (Ar, Ar + N2, Ar + CH4 et
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Sanchette, Fredéric. "Synthèse et caractérisation de dépôts Al-Cr-(N) et Al-Ti-(N) obtenus par pulvérisation cathodique magnétron en condition réactive." Vandoeuvre-les-Nancy, INPL, 1996. http://www.theses.fr/1996INPL057N.

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Ce travail porte sur l'élaboration et la caractérisation chimique, structurale, mécanique et électrochimique de revêtements Al-Cr-(N) et Al-Ti-(N) obtenus par pulvérisation cathodique magnétron de cibles composites Al-Cr et Al-Ti dans des plasmas d'argon et d'argon/azote. Les mécanismes de transfert de matière sont d'abord étudiés avec l'aide de l'analyse métallurgique des revêtements, le diagnostic du plasma par spectrométrie d'émission optique et un modèle de pulvérisation adapté à la géométrie des cibles composites. Les revêtements bruts de pulvérisation sont composés de solutions solides m
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Forsén, Rikard. "Mechanical properties and thermal stability of reactive arc evaporated Ti-Cr-Al-N coatings." Licentiate thesis, Linköpings universitet, Nanostrukturerade material, 2012. http://urn.kb.se/resolve?urn=urn:nbn:se:liu:diva-79579.

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This licentiate thesis reports experimental and theoretical work on the high temperature mechanical properties and the thermal stability of cubic (c)-(Ti-Cr-Al)1-N1 coatings. It is demonstrated that it is possible to tailor and improve the properties of hard nitride coatings by different degrees of multicomponent alloying. When Cr is added to Ti-Al-N the coatings exhibit age hardening up to 1000 ºC which is higher compared to what is observed for Ti-Al-N. In addition, the coatings show a less pronounced hardness decrease when hexagonal (h)-Al-N is formed compared to Ti-Al-N. The improved therm
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Ostach, Daniel Michael [Verfasser], and Andreas [Akademischer Betreuer] Schreyer. "High Temperature Oxidation Behavior of (Ti,Cr,Al)N Coatings Studied by in-situ Synchrotron Radiation X-ray Powder Diffraction / Daniel Michael Ostach ; Betreuer: Andreas Schreyer." Hamburg : Staats- und Universitätsbibliothek Hamburg, 2018. http://d-nb.info/1153884445/34.

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Hsu, Li-Chi, and 徐立奇. "Influences of silicon content and bilayer period on the microstructure and mechanical property of Cr-B-Si-N/Ti-B-Si-N multilayerd coating." Thesis, 2014. http://ndltd.ncl.edu.tw/handle/00260264160269464103.

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碩士<br>明志科技大學<br>材料工程系碩士班<br>102<br>Recently, the transition metal boride thin films have been studied widely by researchers and industries owing to their high hardness and chemical inertness. In this study, effects of Si contents and bilayer period on the microstructure and related properties of Cr-B-Si-N/Ti-Bi-Si-N nanolaminated thin films were studied. The single layer Cr-B-Si-N and Ti-B-Si-N nanocomposite thin films with different silicon contents were fabricated in the first stage. Then the Cr-B-Si-N/Ti-B-Si-N multilayered thin film with different silicon contents and different bilayer per
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Lai, Chia-Han, and 賴加瀚. "Preparation and Characterization of Multi-element Al-Cr-Ta-Ti-Zr-N Coatings." Thesis, 2007. http://ndltd.ncl.edu.tw/handle/67206140817555989630.

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博士<br>國立清華大學<br>材料科學工程學系<br>95<br>The aim of this study is to prepare the Al-Cr-Ta-Ti-Zr-N multi-element coatings onto Si or WC-Co substrates in Ar+N2 mixed atmosphere by RF magnetron sputtering using a single euqimolar AlCrTaTiZr alloy target. The deposition parameters and post-deposition annealing temperatures were varied to investigate the change of structural and mechanical properties of these nitride coatings. The research is mainly divided into four sections. In the first section, Al-Cr-Ta-Ti-Zr-N films were deposited under various nitrogen flow ratios at room temperature without applyin
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Gabriel, Brian M. Wolfe Douglas E. "Synthesis-structure-property-performance relationships of tin, CrN, and nanolayer (Ti,Cr)N coatings deposited by cathodic arc evaporation for hard particle erosion resistance." 2009. http://etda.libraries.psu.edu/theses/approved/PSUonlyIndex/ETD-3477/index.html.

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Book chapters on the topic "Ti-Cr-N coating"

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Pogrebnjak, A. D., V. V. Uglov, M. V. Il'yashenko, et al. "Nano-Microcomposite and Combined Coatings on Ti-Si-N/WC-Co-Cr/Steel and Ti-Si-N/(Cr3C2)75-(NiCr)25 Base: Their Structure and Properties." In Nanostructured Materials and Nanotechnology IV. John Wiley & Sons, Inc., 2010. http://dx.doi.org/10.1002/9780470944042.ch13.

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Beresnev, V. M., I. N. Torianyk, A. D. Pogrebnjak, et al. "Structure and Physical and Mechanical Properties of Nanocomposite (Zr-Ti-Cr-Nb)N and (Ti-Zr-Al-Nb-Y)N Coatings, Obtained by Vacuum-Arc Evaporation Method." In Springer Proceedings in Physics. Springer International Publishing, 2014. http://dx.doi.org/10.1007/978-3-319-06611-0_5.

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Grigoriev, Sergey, Alexey Vereschaka, Marina Volosova, et al. "Nanostructured Multilayer Composite Coatings for Cutting Tools." In Ceramic Materials [Working Title]. IntechOpen, 2020. http://dx.doi.org/10.5772/intechopen.94363.

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The chapter deals with the specific features concerning the application of wear-resistant coatings to improve the performance properties of ceramic cutting tools. The paper discusses the theoretical background associated with the specific operation conditions and wear of ceramic cutting tools and influencing the choice of the compositions and structures of wear-resistant coatings. The studies were focused on the application of the Ti-(Ti,Al)N-(Zr,Nb,Ti,Al)N multilayer composite coating with a nanostructured wear-resistant layer, as well as the (Cr,Al,Si)N–(DLC–Si)–DLC–(DLC–Si) and (Cr,Al,Si)N–
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Vereschaka, Alexey, Sergey Grigoriev, Vladimir Tabakov, et al. "The Effect of Elemental Composition and Nanostructure of Multilayer Composite Coatings on Their Tribological Properties at Elevated Temperatures." In Tribology [Working Title]. IntechOpen, 2020. http://dx.doi.org/10.5772/intechopen.93973.

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The chapter discusses the tribological properties of samples with multilayer composite nanostructured Ti-TiN-(Ti,Cr,Al,Si)N, Zr-ZrN-(Nb,Zr,Cr,Al)N, and Zr-ZrN-(Zr,Al,Si)N coatings, as well as Ti-TiN-(Ti,Al,Cr)N, with different values of the nanolayer period λ. The relationship between tribological parameters, a temperature varying within a range of 20–1000°C, and λ was investigated. The studies have found that the adhesion component of the coefficient of friction (COF) varies nonlinearly with a pronounced extremum depending on temperature. The value of λ has a noticeable influence on the tribo
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Yeskermessov, Didar, Zhanerke Toleukhanova, Zarina Aringozhina, Yerkezhan Tabiyeva, and Waqar Ahmed. "Hard and Superhard Multicomponent Nitride Coatings Deposited Using Vacuum-Arc Evaporation." In Innovations in Materials Chemistry, Physics, and Engineering Research. IGI Global, 2023. http://dx.doi.org/10.4018/978-1-6684-6830-2.ch004.

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This chapter is devoted to experimental research on the investigated of the structural-phase, morphology, elemental composition, physical-mechanical, and tribological properties (friction, wear, and adhesion) of hard and superhard micro- and nanostructured coatings of systems based on (Zr-Ti-Nb)N, (Zr-Ti-Cr-Nb)N, and (Zr-Ti-Cr-Nb-Si)N were fabricated by vacuum-arc deposition in the nitrogen atmosphere. The authors in the work used advanced proven experimental research methods (SEM-EDX, TEM-EDS, XRD, SIMS, GDMS, PIXE, XPS, AFM, hardness measurements, and adhesion testing), as well as theoretica
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Massiani, Y., P. Gravier, L. Fedrizzf, and S. Rossi. "Electrochemical Behaviour of (Ti,Cr) N Coatings Obtained by Reactive Sputtering." In Organic and Inorganic Coatings for Corrosion Prevention – Research and Experiences. CRC Press, 2019. http://dx.doi.org/10.1201/9780367814113-23.

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Conference papers on the topic "Ti-Cr-N coating"

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Berger, L. M., R. Zieris, and S. Saaro. "Oxidation of HVOF-Sprayed Hardmetal Coatings." In ITSC2005, edited by E. Lugscheider. Verlag für Schweißen und verwandte Verfahren DVS-Verlag GmbH, 2005. http://dx.doi.org/10.31399/asm.cp.itsc2005p0969.

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Abstract In the current study, the oxidation of hardmetal coatings (WC-12%Co, WC-17%Co, WC-10%Co4%Cr, WC-20%“CrC”-7%Ni, Cr3C2-25%NiCr, (Ti,Mo)(C,N)-29%Ni and (Ti,Mo)(C,N)-29%Co) in the temperature range 350- 900°C was studied for test durations ranging from 2 h to 128 h. The formation of oxide scales was investigated by X-ray diffraction, as well as by optical microscopy and SEM (including EDX) of coating cross sections. For coatings obtained by spraying with DJH 2700 and TopGun HVOF systems, the phase composition had only a moderate influence on high-temperature oxidation behavior in atmosphe
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Grigoriev, Sergey, Alexey Vereschaka, Filipp Milovich, and Nikolay Andreev. "Influence of the properties of a multilayer nanostructured coating Ti-TiN-(Ti,Cr,Mo,Al)N on the wear resistance of a cutting tool when turning steel." In ADVANCEMENTS IN MATERIALS FOR CIVIL ENGINEERING APPLICATIONS. AIP Publishing, 2024. http://dx.doi.org/10.1063/5.0222426.

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Volosova, M., T. Ramanouskaya, J. Bublikov, C. Sotova, and V. Zelenkov. "Investigation of wear resistance of nanolayer multicomponent coatings Ti-TiN-(Ti,Cr,Al)N and ZrHf-(Zr,Hf)N-(Zr,Hf,Cr,Mo,Al)N." In ADVANCEMENTS IN MATERIALS FOR CIVIL ENGINEERING APPLICATIONS. AIP Publishing, 2024. http://dx.doi.org/10.1063/5.0222429.

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Sergeev, Oleg V., Mark P. Kalashnikov, Marina V. Fedorishcheva, Victor P. Sergeev, and Victor E. Panin. "Modification of Ti-Al-N coatings by high energy (Cr+ + B+) ion bombardment." In ADVANCED MATERIALS WITH HIERARCHICAL STRUCTURE FOR NEW TECHNOLOGIES AND RELIABLE STRUCTURES 2016: Proceedings of the International Conference on Advanced Materials with Hierarchical Structure for New Technologies and Reliable Structures 2016. Author(s), 2016. http://dx.doi.org/10.1063/1.4966497.

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Metel, A., J. Bublikov, and Y. Melnik. "Increasing the efficiency of turning nickel alloys by using multilayer-composite coatings Zr-ZrN-(Zr,Mo,Al)N, Ti-TiN-(Ti,Mo,Al)N or Cr-CrN-(Cr,Mo,Al)N." In ADVANCEMENTS IN MATERIALS FOR CIVIL ENGINEERING APPLICATIONS. AIP Publishing, 2024. http://dx.doi.org/10.1063/5.0232411.

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Sergeev, Oleg V., Mark P. Kalashnikov, Andrey V. Voronov, Victor P. Sergeev, and Victor E. Panin. "Formation of Ti-Al-Cr-B-N coatings by ion-magnetron sputtering of composite targets." In PROCEEDINGS OF THE INTERNATIONAL CONFERENCE ON ADVANCED MATERIALS WITH HIERARCHICAL STRUCTURE FOR NEW TECHNOLOGIES AND RELIABLE STRUCTURES 2017 (AMHS’17). Author(s), 2017. http://dx.doi.org/10.1063/1.5013872.

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Urbahs, Aleksandrs, and Konstantins Savkovs. "Heat resistant conglomerate Ti-Al-Si-Cr-N coatings for titan alloy-based parts of gas turbine engines." In 18th International Scientific Conference Engineering for Rural Development. Latvia University of Life Sciences and Technologies, 2019. http://dx.doi.org/10.22616/erdev2019.18.n242.

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Ovchinnikov, Stanislav, and Yurii Pinzhin. "The structure and properties of single-layer and gradient-layered coatings of the Ti–Al–Si–Cr–Mo–S–N system." In ADVANCED MATERIALS WITH HIERARCHICAL STRUCTURE FOR NEW TECHNOLOGIES AND RELIABLE STRUCTURES. AIP Publishing LLC, 2015. http://dx.doi.org/10.1063/1.4932862.

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Maksakova, O. V., V. M. Beresnev, and D. K. Eskermesov. "Effects of Cr and Si additions under the various deposition conditions on the mechanical properties of the (Zr-Ti-Nb)N coatings." In 2017 IEEE 7th International Conference "Nanomaterials: Application & Properties" (NAP). IEEE, 2017. http://dx.doi.org/10.1109/nap.2017.8190147.

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Maksakova, O. V., S. V. Plotnikov, D. K. Eskermesov, and D. Yurchenko. "The effect of Si additions and deposition conditions on the structure and properties of the (Zr-Ti-Cr-Nb-Si)N coatings fabricated by vacuum-arc deposition." In 2016 International Conference on Nanomaterials: Application & Properties (NAP). IEEE, 2016. http://dx.doi.org/10.1109/nap.2016.7757252.

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