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1

KUCHERENKO, Yuliya. "MODERN COATING TECHNOLOGIES." Herald of Khmelnytskyi National University. Technical sciences 309, no. 3 (2022): 89–91. http://dx.doi.org/10.31891/2307-5732-2022-309-3-89-91.

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The development of the country is determined by the efficiency of enterprises and organizations, which should simply survive in difficult conditions, and pursue an active strategy of transformation. Innovations in the technology of protective and decorative metal coatings create the necessary level of competition in the domestic paint and varnish coating. Innovative development of the country’s economy is one of the highest priorities of state policy. The strategy of modernization is determined by the consistent transition of the economy to an innovative model of development to solve the probl
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WANG, TAO, NING WANG, YANG LI, HAO WANG, JIE TANG, and YUNSHAN WANG. "STUDY ON PREPARATION TECHNOLOGIES OF THERMAL BARRIER COATINGS." Surface Review and Letters 24, no. 04 (2016): 1730004. http://dx.doi.org/10.1142/s0218625x17300040.

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Thermal barrier coatings (TBCs) is one of the main key technology for the high-pressure turbine blades which are the main components of the high-performance aerospace engines. It offers protection for underline metallic components from corrosion, oxidation and localized melting by insulating the metal from hot gases in the engine core. The properties and lifetime of TBCs are greatly influenced by the preparation technology, which includes plasma spraying (PS), physical vapor deposition (PVD) and laser re-melting (LM). In this paper, three technologies used to prepare the TBCs are reviewed. Res
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Ma, Lihui, Pan Zhang, Wei Li, et al. "Research progress on coating technology for oil and gas pipelines." Journal of Physics: Conference Series 2971, no. 1 (2025): 012006. https://doi.org/10.1088/1742-6596/2971/1/012006.

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Abstract With the extensive development and utilization of oil and gas resources, the construction and safe operation of oil and gas pipelines are crucial. This paper elaborates the importance of coating technology for oil and gas pipelines and systematically analyzes the characteristics, principles and applications of various coating technologies, including anticorrosion coatings, thermal insulation coatings and drag reduction coatings. By comparing the performance of different coating technologies, the factors affecting the performance of coatings were explored, and the application effects o
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Liang, Hua, Xiaolong Shi, and Yanzhou Li. "Technologies in Marine Antifouling and Anti-Corrosion Coatings: A Comprehensive Review." Coatings 14, no. 12 (2024): 1487. http://dx.doi.org/10.3390/coatings14121487.

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With the rapid development of marine engineering, effective antifouling and anti-corrosion technologies are essential for ensuring the safety and longevity of marine facilities. This review synthesizes current research on various coating technologies designed to combat marine biological fouling and corrosion. It analyzes the causes of marine biological fouling and corrosion, discusses their potential impacts on the safety of ships and marine structures, and emphasizes the need for effective protective systems. The review covers current antifouling coating technologies, including the preparatio
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Strekalina, Daria, Elena Podust, Egor Yakushko, Polina Cheka, and Ulyana Shamaeva. "Tungsten coating technologies for agricultural machinery engine parts." E3S Web of Conferences 494 (2024): 04034. http://dx.doi.org/10.1051/e3sconf/202449404034.

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The article reviews the possibilities of using tungsten for engine parts of agricultural machinery and the transition to electric motors. The use of electric motors for agricultural machinery and experience in the production of electric tractors is described. A description of the manufacturers of electric tractors and their advantages is given. The materials of motor parts are described, including the use of tungsten. CVD coatings are selected and described as a technology for electric motor applications. The technology of obtaining tungsten coatings on the electrodes of the engine of agricult
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Prof., Mahajan S.M, Mayur A. Varade, Pratiksha N. Mahajan, and Sneha V. Patil. "Review on Automotive Body Coating Process." International Journal of Engineering and Management Research 9, no. 2 (2019): 103–6. https://doi.org/10.31033/ijemr.9.2.11.

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Automotive coatings and the processes used to coaat automobile surfaces exemplify the avant-grade of technologies that are capable of producing durable surfaces, exceeding customers expections of apperance, maximizing efficiency, and meeting environmental regulations. These accomplishments are rooted in 100 years of experience, trial-and-error approaches, technique and technology advancements, and theroetical assessments. Because of advancenments directed at understanding the how, why, when, and where of automobile coatings, the progress in controlling droplets and their deposition attributes,
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Mack, Reiner, and Axel Kratzsch. "Investigation On Various Hard Coating Technologies." IOP Conference Series: Earth and Environmental Science 1411, no. 1 (2024): 012006. https://doi.org/10.1088/1755-1315/1411/1/012006.

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Abstract For high head hydropower applications, the predominant coating material is 86% tungsten carbide embedded in a cobalt chromium matrix. This material is applied using a high velocity spraying application, which can be powered by either gas or liquid fuels. This paper outlines the application and wear characteristics for three different scenarios: HVOF (high velocity oxygen fuel) with gas or liquid fuel, and HVAF (high velocity air fuel) with propane as the fuel source. After providing an overview of the distinct technologies and their corresponding application equipment, the discussion
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8

Hou, Feng Yan, Ian Mardon, Jun Zhe Dong, and Chris Goode. "Innovative Surface Technologies to Create Protective Functional Coatings on Light Metal Alloys." Key Engineering Materials 876 (February 2021): 31–38. http://dx.doi.org/10.4028/www.scientific.net/kem.876.31.

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Weight reduction in automotive and aerospace components can improve energy efficiency, reduce emissions, and increase performance. The adoption of light metals such as aluminium, magnesium and titanium alloys, is essential to these performance improvements; however, these alloys require protective surface coatings to prevent corrosion and resulting mechanical failures during service life. Traditional protective coatings for light-weight materials can be costly in terms of energy, raw materials, and environmental sustainability. New durable coating approaches are required to allow light-weight
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9

Mori, Taiji. "The recent coating technologies in coatid paperboard." JAPAN TAPPI JOURNAL 45, no. 4 (1991): 419–29. http://dx.doi.org/10.2524/jtappij.45.419.

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10

Obrezkov, O. I., V. A. Bazylev, Yu V. Martynenko, and M. Y. Nagel. "Application of plasma and ion beam technologies for the production of coatings on pacemaker electrodes." Izvestiâ Akademii nauk SSSR. Seriâ fizičeskaâ 88, no. 4 (2024): 591–98. http://dx.doi.org/10.31857/s0367676524040101.

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Electrochemical characteristics of cathodes of pacemakers with TiN, Pt and Ir coatings, as well as cathodes with TiN coating implanted with Pt and Ir ions were studied. The best results were obtained by cathodes with Pt and Ir coatings. Ion implantation improves TiN coating, and brings its characteristics closer to those of Pt and Ir coatings.
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Ramanamane, Nthabiseng, and Mothibeli Pita. "Designing a High-Performance Oil–Water Filtration System: Surface-Enhanced Quartz with Hydrophilic Nanoparticles for Sustainable Water Reuse and Global Water Scarcity Solutions." Water 17, no. 4 (2025): 501. https://doi.org/10.3390/w17040501.

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The increasing demand for freshwater resources, coupled with industrial pollution, necessitates improved water treatment technologies. This study investigates the potential of quartz-based filtration systems enhanced with hydrophilic nanoparticles for efficient oil-water separation. The quartz material, abundant and cost-effective, was processed and modified through sequential coatings to enhance its hydrophilicity and separation efficiency. Comprehensive characterization techniques, including SEM, XRD, and Raman spectroscopy, were employed to evaluate surface morphology, chemical composition,
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12

Bharadishettar, Naveen, Udaya Bhat K, and Devadas Bhat Panemangalore. "Coating Technologies for Copper Based Antimicrobial Active Surfaces: A Perspective Review." Metals 11, no. 5 (2021): 711. http://dx.doi.org/10.3390/met11050711.

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Microbial contamination of medical devices and treatment rooms leads to several detrimental hospital and device-associated infections. Antimicrobial copper coatings are a new approach to control healthcare-associated infections (HAI’s). This review paper focuses on the efficient methods for depositing highly adherent copper-based antimicrobial coatings onto a variety of metal surfaces. Antimicrobial properties of the copper coatings produced by various deposition methods including thermal spray technique, electrodeposition, electroless plating, chemical vapor deposition (CVD), physical vapor d
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Cheng, Hu, Zhi Gang Fang, Xian Rui Zhao, Sheng Dai, and Jian Yi. "Effect of Laser Cladding Technologies on Microstructure and Properties of Ni-Based WC Alloy Coatings." Advanced Materials Research 314-316 (August 2011): 245–48. http://dx.doi.org/10.4028/www.scientific.net/amr.314-316.245.

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The Ni-based WC alloy coatings were successfully fabricated on NAK80 mold steel by Nd:YAG and CO2 lasers. The microstructure and properties of the laser cladded coatings were analyzed by SEM, EDS, XRD and microhardness tester. The results show that phase constituents of both coatings are mainly composed of tungsten carbide (WC+W2C), Cr23C6, NiCr, CrB2 and γ-Ni. The excellent metallurgical bondings have formed at the interface between the substrate and the laser cladded coatings. Dendrite and white and block WC phase were observed in two kinds of laser cladded coatings, but the dendrite in Nd:Y
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14

Krioni, N. K., A. D. Mingazhev, and I. R. Kuzeev. "Application of Ion-Plasma Coatings with Low Droplet Phase Content." Materials Science Forum 870 (September 2016): 334–38. http://dx.doi.org/10.4028/www.scientific.net/msf.870.334.

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Ion-plasma coating application technologies are the most advanced ones providing high performance characteristics for the parts of modern machinery and equipment. Further development of these technologies is connected with the improvement of efficiency, production processes, and quality of protective and strengthening coatings. The methods and installations for applying protective coatings by deposition of coating materials from vacuum arc plasma with the use of electric arc evaporators of metals are widely known. However, one of the main shortcomings of the existing technologies based on the
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15

Neluyb, Vladimir A., Galina V. Malysheva, and Ivan A. Komarov. "New Technologies for Producing Multifunctional Reinforced Carbon Plastics." Materials Science Forum 1037 (July 6, 2021): 196–202. http://dx.doi.org/10.4028/www.scientific.net/msf.1037.196.

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In this article we investigated properties of elementary carbon fibers after their activation and subsequent deposition of thin layers of metal coatings on their surface. For deposition we used copper, titanium and stainless steel. We investigated influence of various technologies of preliminary processing of the fiber surface on the value of the adhesion strength of the metal coating to the carbon tape and on the mechanical properties of elementary fibers. We established that the strength of carbon plastics at interlayer shear increases by 10-30% when using carbon tapes and fabrics with a met
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16

Ishizuka, Katsumi. "Coating technologies in board." JAPAN TAPPI JOURNAL 41, no. 10 (1987): 934–38. http://dx.doi.org/10.2524/jtappij.41.934.

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17

Devoino, O. G., G. A. Turichin, M. A. Kardapolava, Y. I. Kаsach, E. V. Pogudo, and I. M. Kasyakova. "Tribotechnical Characteristics of Nickel-Based Composite Coatings Obtained by Hybrid Technologies." Science & Technique 22, no. 6 (2023): 450–59. http://dx.doi.org/10.21122/2227-1031-2023-22-6-450-459.

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As an object of this study, the coatings were used, which are composed of self-fluxing nickel-based alloys or compositions containing them, formed in a hybrid technological process with two main stages: spraying by the plasma method and subsequent remelting – by the gas-flame method or laser heating. An experimental measurement of their resistance to abrasive wear under conditions of boundary friction with the introduction of lubricants has been carried out for the coatings obtained in this process. At the same time, the influence of the coating composition and the remelting method on the wear
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18

Pawar, Sarika P. "Micro and Nano Fiber Composite Coatings." International Journal for Research in Applied Science and Engineering Technology 10, no. 6 (2022): 5160–74. http://dx.doi.org/10.22214/ijraset.2022.44634.

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Abstract: Environmental friendly products are becoming popular and acceptable in industries due to the global limitation to the amount of volatile organic compounds (VOCs) released into the atmosphere. Low VOC compounds and technologies are also becoming a choice in the coatings and paint industry. Coatings can be made from water or solvent. In coatings from water, we use water as the solvent, therefore coating called water based coating and in the case of solvent-borne coatings, we used organic or inorganic compounds as solvents, therefore this coating called as solvent borne coating. Among a
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Pawar, Sarika P., and Prof Dr P. A. Mahanwar. "Polymeric Fiber based Composite Coatings." International Journal for Research in Applied Science and Engineering Technology 11, no. 9 (2023): 957–67. http://dx.doi.org/10.22214/ijraset.2023.55772.

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Abstract: Environmental friendly products are becoming popular and acceptable in industries due to the global limitation to the amount of volatile organic compounds (VOCs) released into the atmosphere. Low VOC compounds and technologies are also becoming a choice in the coatings and paint industry. Coatings can be made from water or solvent. In coatings from water, we use water as the solvent, therefore coating called waterbased coating and in the case of solvent-borne coatings, we used organic or inorganic compounds as solvents, therefore this coating called as solvent borne coating. Among al
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20

Doerre, Mark, Larry Hibbitts, Gabriela Patrick, and Nelson Akafuah. "Advances in Automotive Conversion Coatings during Pretreatment of the Body Structure: A Review." Coatings 8, no. 11 (2018): 405. http://dx.doi.org/10.3390/coatings8110405.

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Automotive conversion coatings consist of layers of materials that are chemically applied to the body structures of vehicles before painting to improve corrosion protection and paint adhesion. These coatings are a consequence of surface-based chemical reactions and are sandwiched between paint layers and the base metal; the chemical reactions involved distinctly classify conversion coatings from other coating technologies. Although the tri-cationic conversion coating bath chemistry that was developed around the end of the 20th century remains persistent, environmental, health, and cost issues
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21

Titu, Aurel Mihail, Sandor Ravai-Nagy, and Alina Bianca Pop. "Research on the Influence of Coating Technologies on Adhesion Anti-Corrosion Layers in the Case of Al7175 Aluminum Alloy." Coatings 13, no. 6 (2023): 1054. http://dx.doi.org/10.3390/coatings13061054.

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A key element in ensuring the service life and strength of aluminum alloys in many industrial applications is the adhesion of anti-corrosion coatings. The aim of this study is to analyze how coating processes affect the adhesion of anti-corrosion coatings on aluminum alloy 7175. In other words, the influence of the nature of the elementary layers that form the anti-corrosion coating was studied for the following: the anodic layer, the primer, and the topcoat. To learn more about the different coating technologies and how they affect adhesion, a thorough literature review was carried out. In ad
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Guney, D. "Residual Stress Analysis of Insulation Coatings for Magnet Technologies." Archives of Metallurgy and Materials 58, no. 3 (2013): 673–76. http://dx.doi.org/10.2478/amm-2013-0053.

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Abstract High temperature MgO-ZrO2 insulation coatings were grown on long-length Stainless-Steel (SS) tapes by reel-to-reel sol-gel method for applications of High Temperature Superconductor/Low Temperature Superconductor (HTS/LTS) coils and magnets. The residual stresses were investigated analytically at various temperature ranges, 580°C to 25°C (room temperature) and -196°C (liquid helium temperature), and 630°C to 25°C and -196°C for different thicknesses to be 13, 12, and 7 μm. The maximum stress values were obtained to be 1.92 GPa in tension for SS substrate with the 13 μm coating and -2.
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23

Sarwar, Mohammed, and Julfikar Haider. "Development of Advanced Surface Engineering Technologies for the Benefit of Multipoint Cutting Tools." Advanced Materials Research 83-86 (December 2009): 1043–50. http://dx.doi.org/10.4028/www.scientific.net/amr.83-86.1043.

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The benefits of applying advanced coatings on both single point and multipoint cutting tools such as improvement of productivity, tool life, machined surface quality etc. have been realised by the surface engineering researchers [1], commercial coaters [2-4] and end users [5]. The demand for advanced coatings in cutting tool industries is continually growing to meet the challenges of high speed machining, dry machining, near net-shape machining, machining of hard-to-cut materials etc.. Advanced coatings with excellent properties on flat coupon in a laboratory deposited by modern deposition tec
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Yan, Xiaoxing, Wenting Zhao, and Xingyu Qian. "Effect of Water-Based Emulsion Core Microcapsules on Aging Resistance and Self-Repairing Properties of Water-Based Coatings on Linden." Applied Sciences 11, no. 10 (2021): 4662. http://dx.doi.org/10.3390/app11104662.

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The purpose of this paper was to discuss the best coating technology of water-based coatings containing microcapsules, and the anti-aging and self-repairing properties of water-based coatings containing microcapsules. Urea-formaldehyde encapsulated Nippon water-based emulsion microcapsules were prepared, and water-based coatings containing microcapsules were prepared. The optical and mechanical properties of the coatings under different coating technologies were investigated. Under the best coating technology, the aging resistance and self-repairing performance of the coating film were investi
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Nigmetzyanov, R. I., S. K. Sundukov, A. V. Sukhov, D. S. Fatyukhin, and N. V. Lyovushkina. "Technological recommendations for improvement of functional coatings by ultrasound." REPAIR RECONDITIONING MODERNIZATION, no. 8 (2023): 8–12. http://dx.doi.org/10.31044/1684-2561-2023-0-8-8-12.

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The possibilities of using the ultrasonic technologies to improve the operational properties of functional coatings are considered. Technological recommendations for the use of ultrasonic technologies at various stages of coating deposition are proposed.
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Cyphert, Erika L., and Horst A. von Recum. "Emerging technologies for long-term antimicrobial device coatings: advantages and limitations." Experimental Biology and Medicine 242, no. 8 (2017): 788–98. http://dx.doi.org/10.1177/1535370216688572.

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Over the past 20 years, the field of antimicrobial medical device coatings has expanded nearly 30-fold with technologies shifting their focus from diffusion-only based (short-term antimicrobial eluting) coatings to long-term antimicrobial eluting and intrinsically antimicrobial functioning materials. A variety of emergent coatings have been developed with the goal of achieving long-term antimicrobial activity in order to mitigate the risk of implanted device failure. Specifically, the coatings can be grouped into two categories: those that use antibiotics in conjunction with a polymer coating
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Laptev, A. B., L. I. Zakirova, and M. L. Degovets. "PROPERTIES OF PROTECTIVE GALVANIC COATINGS FOR REPLACEMENT OF CADMIUM ON STEEL FIXING PARTS (review) Part 2. Hydrogen embrittlement and frictional characteristics." «Aviation Materials and Technologies», no. 4 (2020): 35–40. http://dx.doi.org/10.18577/2071-9140-2020-0-4-35-40.

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The paper considers the options for replacing the electroplated single-layer toxic cadmium coatings with zinc-based compositions, as well as multi-layer coatings. Their tribological characteristics and tendency to hydrogenation of the protected metal during coating and operation are considered. Conclusions are drawn about the shortcomings of existing technologies and promising directions of research in this area. Thus, the most preferred composition for replacing a cadmium coating is a nickel-zinc coating with nickel content of 12% (by weight), but a tin-zinc coating has the lowest value of th
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KUCHERENKO, Juliya, and Viktoriya MATVIYCHUK. "BASIC TECHNOLOGIES AND METHODS OF APPLYING COATING IN GAS-THERMAL FILES." Herald of Khmelnytskyi National University 303, no. 6 (2021): 240–42. http://dx.doi.org/10.31891/2307-5732-2021-303-6-240-242.

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The statistic shows the methods of applying coatings to gas-thermal files. The designation of the spheres is based on these methods for the renewal of the surface of the worn parts and the mechanisms of the applied special coatings. One of the widely used methods in industrial production is the method of filing for additional plasmas. The essence of the processes of gas-thermal coating is considered, which consists in the formation of a directed flow of dispersed particles of sprayed material, which ensures their transfer to the surface of the workpiece and the formation of the coating layer.
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Pélissier, Krystel, and Dominique Thierry. "Powder and High-Solid Coatings as Anticorrosive Solutions for Marine and Offshore Applications? A Review." Coatings 10, no. 10 (2020): 916. http://dx.doi.org/10.3390/coatings10100916.

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The constant change in coating technology and environmental regulations has led to the development of low-solvent to solvent-free organic coatings, such as powder and high-solid coatings. These two technologies are well developed, but are still not the preferred choice when considering anticorrosive coating for marine and offshore applications. This mostly arise from a lack of perspective in their long-term behavior and from the difficulty in their applications. This review’s principal aim is to describe powder and high-solid technologies from their formulation and application to their use in
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Yatsenko, Svetlana N., Nikita Penkov, and Andrey A. Krasnov. "About Using Composite Materials when Restoring High-Resource Details with Application of Additive Technologies are Given." Solid State Phenomena 316 (April 2021): 862–67. http://dx.doi.org/10.4028/www.scientific.net/ssp.316.862.

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The process of restoration of high-resource parts of equipment for various purposes using AM technologies is considered. This method can save significantly the material of the formed coating, while providing the necessary efficiency in increasing the wear resistance of the restored parts. The causes of the leakage from the resulting coatings are residual stresses. Using a regression analysis apparatus, recommendations for the selection of technological modes from coatings are determined. The kinematic features of the recovery process are taken into account, dynamic relationships for determinin
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Huang, Yueyu, Haifeng Li, Jianwu Liu, Zizhao Wu, Qun Wang, and Chidambaram Seshadri Ramachandran. "Research Progress on Post-Treatment Technologies of Cold Spray Coatings." Coatings 15, no. 3 (2025): 265. https://doi.org/10.3390/coatings15030265.

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Cold spraying (CS), also known as cold gas dynamic spraying or supersonic cold spraying, is a process in which particles collide with the substrate at a speed greater than the critical value and deposit layer by layer to form a coating. As an emerging coating preparation technology that has been developed rapidly in recent years, CS is characterized by a low deposition temperature, a minimal thermal effect on substrate, and a high deposition efficiency. It has received extensive attention from industry. However, the inherent high strength and low plasticity of CS coatings and the numerous defe
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Hannula, Simo Pekka, Erja Turunen, Jari Keskinen, et al. "Development of Nanostructured Al2O3-Ni HVOF Coatings." Key Engineering Materials 317-318 (August 2006): 539–44. http://dx.doi.org/10.4028/www.scientific.net/kem.317-318.539.

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HVOF thermal spraying has been developed to deposit dense Al2O3-coatings for improved protective properties. As compared to generally used plasma sprayed coatings HVOF coatings can be prepared much denser and thus are better suited for applications where protective properties of the coating are needed. In this paper we describe the development of HVOF spraying technologies for nanocrystalline Al2O3- and Al2O3-Ni-coatings. The microstructure and the mechanical properties of these novel coatings are reported and compared to a conventionally processed Al2O3-coating.
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Castro, Maria Fernanda Pontes Penteado Moretzsohn de, Valéria Delgado de Almeida Anjos, Ana Carolina Bortolossi Rezende, Eliane Aparecida Benato, and Silvia Regina de Toledo Valentini. "Postharvest technologies for mangosteen (Garcinia mangostana L.) conservation." Food Science and Technology 32, no. 4 (2012): 668–72. http://dx.doi.org/10.1590/s0101-20612012005000103.

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The application of technologies to extend the postharvest life of mangosteen fruit was studied and compared to storage at 25 °C/70-75%R.H (25 °C control treatment). The fruits were packed in expanded polystyrene (EPS) trays (5 fruits/tray). Five treatments were carried out at 13 °C/ 90-95% RH: application of carnauba wax coating, lecithin + CMC (carboxymethyl cellulose) coating, 50 µm LDPE (low density polyethylene) film coating, 13 µm PVC (Polyvinyl chloride), and non-coated sample (13 °C control treatment). Physicochemical analyses were performed twice a week. A statistical design was comple
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Niu, Ya Ran, Xuan Yong Liu, and Chuan Xian Ding. "Comparison of Silicon Coatings Deposited by Vacuum Plasma Spraying (VPS) & Atmospheric Plasma Spraying (APS)." Materials Science Forum 510-511 (March 2006): 802–5. http://dx.doi.org/10.4028/www.scientific.net/msf.510-511.802.

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In this work, silicon coatings were deposited using VPS and APS technologies. Their structure and composition were characterized using XPS, SEM, and XRD. The porosity and surface-roughness of coatings were evaluated. The results showed that the VPS silicon coating possessed lower porosity compared with the APS silicon coating. The APS silicon coating surface was almost all covered by many small particles whose size is about 100 nm. The Si 2p XPS spectra indicated that silicon oxide existed in both coatings. The oxidation may have occurred during the plasma spray process. However, the VPS proce
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Sugihara, Masahiro, and Hiroshi Miura. "Technologies for High-Speed Coating." JAPAN TAPPI JOURNAL 55, no. 12 (2001): 1687–95. http://dx.doi.org/10.2524/jtappij.55.1687.

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36

Bierwagen, Gordon P. "Film coating technologies and adhesion." Electrochimica Acta 37, no. 9 (1992): 1471–78. http://dx.doi.org/10.1016/0013-4686(92)80092-z.

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37

Okomori, Koji. "Review of Paper Coating Technologies." JAPAN TAPPI JOURNAL 60, no. 12 (2006): 1776–85. http://dx.doi.org/10.2524/jtappij.60.1776.

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Hatano, Yasuhiro. "Recent Tendency of Coating Technologies." JAPAN TAPPI JOURNAL 61, no. 2 (2007): 137–45. http://dx.doi.org/10.2524/jtappij.61.137.

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Jaimini, Manish, Arpit Jain, Sanjay K. Sharma, and Shailender Mohan. "Solventless coating for Tablets: An alternative to conventional coating technique." Indian Journal of Pharmaceutical and Biological Research 2, no. 02 (2014): 108–14. http://dx.doi.org/10.30750/ijpbr.2.2.18.

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There are many ways to coat tablets. Coatings are a very important part in the formulation of pharmaceutical dosage form to achieve excellent formulation quality (e.g., color, texture, mouth feel, and taste masking), physical and chemical protection for the drugs in the dosage forms, and modification of drug release characteristics. Most film coatings are applied as aqueous or organic-based polymer solutions. Such film coating brings their own disadvantages. Solventless coatings are alternative technique of coating. Solventless coating technologies can overcome many of the disadvantages associ
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Samodurova, Marina, Nataliya Shaburova, Olga Samoilova, et al. "A Study of Characteristics of Aluminum Bronze Coatings Applied to Steel Using Additive Technologies." Materials 13, no. 2 (2020): 461. http://dx.doi.org/10.3390/ma13020461.

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The influence of laser power on the microstructural, strength, and tribological characteristics of aluminum bronze coatings applied to steel by laser cladding was studied. It was found that with an increase in laser power, the morphology of the coating surface becomes more uniform without extreme height differences. This study revealed that the coating microstructure corresponds to that of a composite material and consists of a bronze matrix and iron dendrites of different sizes (depending on the laser power). Such a microstructure affects the microhardness indices, which have a scatter of val
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Niu, Ya Ran, Xuan Yong Liu, Yi Zeng, Xue Bin Zheng, Heng Ji, and Chuan Xian Ding. "Electrical Property Characterization of Plasma Sprayed Polycrystalline Silicon." Materials Science Forum 620-622 (April 2009): 303–6. http://dx.doi.org/10.4028/www.scientific.net/msf.620-622.303.

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Silicon-based materials have been widely applied in industrial fields, such as microelectronic and solar power, for the specific electronic properties. In the present work, free-standing thick silicon coatings were fabricated by air plasma spraying (APS) and vacuum plasma spraying (VPS) technologies. The microstructure and electrical property of the coatings were characterized. It was found that the electrical resistance of APS-Si coating was higher than that of VPS-Si coating. The impedance spectroscopy results showed there was significant difference in impedance curves of APS-Si and VPS-Si c
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Li, Tai Jiang, Wei Li, Yong Li, Fu Guang Liu, Li Ying Liu, and Bo Wang. "Development and Application of Repairing and Protection Technologies for Desulfurization Pump." Advanced Materials Research 538-541 (June 2012): 290–97. http://dx.doi.org/10.4028/www.scientific.net/amr.538-541.290.

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Gypsum and slurry with high content of Cl- lead to the damage of desulfurization pump caused by erosion and corrosion. Gas tungsten arc welding (GTAW) and shield metal arc welding (SMAW) were employed to develop weld repairing technology. High-velocity oxygen fuel (HVOF) spraying was employed to prepare NiCr cermet coating and WC cermet coating against erosion and corrosion. Microstructures and mechanical properties of the weld and the protective coatings were tested. The mechanical properties of the weld joints with duplex microstructure were in accordance with related standards. The technolo
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Čekon, Miroslav. "Thermodynamic Properties of Reflective Coatings." Advanced Materials Research 649 (January 2013): 179–82. http://dx.doi.org/10.4028/www.scientific.net/amr.649.179.

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As a part of introducing new technologies and materials, reflective coatings are among many other materials ones, which have to be taken into account. This article presents the results of a comparative nature aiming to investigate the thermodynamic properties of selected reflective coatings on energy balance for periods of heating. In order to investigate their thermal performance at the external building surfaces dynamic outdoor testing was used. Two comparative coatings and reference standard facing coating were used for various samples. The measured data demonstrates that the representative
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Mandal, Raj Kumar, Paarth Saini, Rahul Pal, Prachi Pandey, and Anshita Dubey. "Coating Tablets, Compositions, Recent Advancement and Current Status: A Comprehensive Review." Journal of Drug Delivery and Therapeutics 14, no. 10 (2024): 182–95. http://dx.doi.org/10.22270/jddt.v14i10.6809.

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Conventional Tablets are solid oral dosage forms that contain an active pharmaceutical ingredient (API) along with excipients. These tablets are typically prepared through direct compression, wet granulation, or dry granulation. They are designed to disintegrate and release the API in a controlled or immediate manner, depending on the formulation. Tablet coating is a vital process in pharmaceutical technology, designed to improve the therapeutic efficacy, patient compliance, and stability of oral dosage forms. This comprehensive review explores the key aspects of tablet coating, including the
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Emmanuella Onyinye Nwulu, Tari Yvonne Elete, Friday Emmanuel Adikwu, and Fidelis Othuke Onyeke. "Advancing inspection techniques for coating durability: A framework for integrating non-destructive testing technologies." International Journal of Scientific Research Updates 8, no. 2 (2024): 164–74. https://doi.org/10.53430/ijsru.2024.8.2.0069.

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The durability of coatings plays a pivotal role in safeguarding infrastructure from environmental degradation, mechanical stress, and chemical exposure. This study proposes a comprehensive framework for integrating advanced non-destructive testing (NDT) technologies to enhance the inspection and monitoring of coating durability. By leveraging cutting-edge methods such as ultrasonic testing, infrared thermography, eddy current testing, and digital imaging, the framework aims to identify defects, assess coating integrity, and predict lifespan with higher precision and reliability. The integratio
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Caprì, Angela, Andrea Frazzica, and Luigi Calabrese. "Recent Developments in Coating Technologies for Adsorption Heat Pumps: A Review." Coatings 10, no. 9 (2020): 855. http://dx.doi.org/10.3390/coatings10090855.

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The use of adsorbent heat pumps as heating and cooling systems is particularly relevant thanks to their ability to exploit low-grade heat (e.g., below 90 °C) from renewable energy sources and waste energy streams with prospective applications in several fields, e.g., industrial and residential. Their development began in the 20th century and is still in full evolution. The great interest in their improvement and optimization was determined by some key factors inherent to their sustainability compared to traditional refrigeration systems (e.g., low electricity consumption and the low environmen
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Ma, Chi. "Coating Technology Makes Comprehensive Surface Protection Possible." Coatings 13, no. 3 (2023): 658. http://dx.doi.org/10.3390/coatings13030658.

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The tribology and wear protection of coatings has been an active and rapidly developing area for research and industries in recent years, with innovative coating materials, structures, and fabrication technologies [...]
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Pavlova, Svetlana S., Margarita K. Kotvanova, Irina A. Sologubova, and Nadezhda N. Blinova. "Technologies for obtaining chemically resistant coatings of titanium oxide nanoparti-cles." Yugra State University Bulletin 11, no. 3 (2015): 7–9. http://dx.doi.org/10.17816/byusu20151137-9.

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The work is dedicated to methods for producing nano-materials of complex oxides of titanium and creation on their basis of protective coatings. The chemical and physico-mechanical properties of the coating, such as chemical resistance, adhesion, friction force, continuity.
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Shirobokova, Ol'ga, Yuriy Kisel', and Dmitriy Bezik. "APPLICATION OF ELECTRICAL TECHNOLOGIES FOR THE RESTORATION OF AGRICULTURAL MACHINERY PARTS." Bulletin of Bryansk state technical university 2021, no. 10 (2021): 22–26. http://dx.doi.org/10.30987/1999-8775-2021-10-22-26.

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The technology of non-galvanized ironing of parts in the electrolyte flow with simultaneous hydromechanical activation of the plated surface is proposed, its advantages over the traditional type of coating are shown. The technological process of coating hydraulic control valve spools has been developed. The technological process of restoring spools consists of the following operations: preliminary surface preparation (mechanical treatment), degreasing, washing, anodic treatment, electrodeposition and final mechanical treatment. The designs of the installation and the electrochemical cell for i
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50

Shirobokova, Ol'ga, Yuriy Kisel', and Dmitriy Bezik. "APPLICATION OF ELECTRICAL TECHNOLOGIES FOR THE RESTORATION OF AGRICULTURAL MACHINERY PARTS." Bulletin of Bryansk state technical university 2021, no. 10 (2021): 22–26. http://dx.doi.org/10.30987/1999-8775-2021-10-22-26.

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Abstract:
The technology of non-galvanized ironing of parts in the electrolyte flow with simultaneous hydromechanical activation of the plated surface is proposed, its advantages over the traditional type of coating are shown. The technological process of coating hydraulic control valve spools has been developed. The technological process of restoring spools consists of the following operations: preliminary surface preparation (mechanical treatment), degreasing, washing, anodic treatment, electrodeposition and final mechanical treatment. The designs of the installation and the electrochemical cell for i
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