Academic literature on the topic 'Anticorrosion Ability'

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Journal articles on the topic "Anticorrosion Ability"

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Wang, Xingjun, Weipeng Sun, Wenge Li, Chenglin Zuo, Yong Jiang, and Shuangxi Wang. "Development of Waterborne Heavy-Duty Anticorrosive Coatings with Modified Nanoscale Titania." Coatings 12, no. 11 (2022): 1651. http://dx.doi.org/10.3390/coatings12111651.

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The steel structures of coastal engineering in the moist tropics and subtropics are always under a C5/CX level corrosion environment with high temperature, high humidity, and high salt fog. Anticorrosive waterborne coatings with high weatherability and reliability are urgently to be developed. In this work, one kind of waterborne heavy-duty anticorrosive coatings, with the advantages of excellent corrosion resistance, self-repairing ability, self-cleaning ability, and high film compactness, was successfully achieved through modifying the side chains on the surface morphologies of the spherical
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Long, Wenge. "Application of Nanometer Heavy-duty Coating in the Optimization of Process Parameters for Power Generation Machinery." International Journal of Analytical Chemistry 2022 (August 17, 2022): 1–7. http://dx.doi.org/10.1155/2022/5600230.

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In order to solve the optimization problem of process parameters for power generation machinery, an anticorrosive method based on the nanometer heavy-duty coating is proposed. In this method, the system and preparation process of new heavy-duty coating are used. The final formula and preparation process are preliminarily determined by the orthogonal experiment with the help of the existing technical means. The composition preparation of the heavy-duty coating for the special environment requirements of offshore wind power is investigated and verified by the experiments. The experimental result
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GAIDAR, S. M. "Study of the properties of ethanolamine and boric acid interaction products as volatile corrosion inhibitors used to protect ferrous and non-ferrous metals." Agricultural Engineering, no. 2 (2025): 63–69. https://doi.org/10.26897/2687-1149-2025-2-63-69.

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Ethanolamine with boric acid can form various products, but there have not been any comprehensive studies on their properties as volatile corrosion inhibitors. The aim of thisstudy wasto synthesize products of interaction between ethanolamine and boric acid and to analyze anticorrosion properties of the obtained substances on ferrous and non-ferrous metals. To determine the composition and conditionsfor obtaining an inhibitor with high anticorrosion properties, the authors conducted experiments with a variable ratio of reagents and reaction temperature. As a result, they developed methodsfor o
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SUCHKOV, V. S., S. N. STEPIN, O. P. KUZNETSOVA, M. A. MININ, and CH V. GATAULLINA. "PHOSPHATE PIGMENTS: ADVANCES IN THE USE IN ANTICORROSION COATINGS." Herald of Technological University 28, no. 1 (2025): 55–65. https://doi.org/10.55421/1998-7072_2025_28_1_55.

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Economic losses caused by corrosion of metals (3-4% of the world gross domestic product annually) make it urgent to search for means of their anticorrosion protection, which includes the application of paint and varnish coatings. An important component of the latter are anticorrosive pigments of inhibiting type, the most effective of which (containing lead, chromium) are characterized by high toxicity. Studies have shown that a promising non-toxic alternative to these pigments are salts of phosphoric acid. Zinc phosphate, the level of toxicity of which is 50 times lower than that of chromates,
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Tatsuma, Tetsu, Shuichi Saitoh, Yoshihisa Ohko, and Akira Fujishima. "TiO2−WO3Photoelectrochemical Anticorrosion System with an Energy Storage Ability." Chemistry of Materials 13, no. 9 (2001): 2838–42. http://dx.doi.org/10.1021/cm010024k.

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Zhang, Yafeng, Juncheng Die, Fei Li, et al. "Polypyrrole-Modified Molybdenum Disulfide Nanocomposite Epoxy Coating Inhibits Corrosion of Mild Steel." Coatings 13, no. 6 (2023): 1046. http://dx.doi.org/10.3390/coatings13061046.

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The search for lightweight and low-cost anticorrosion coatings is particularly important in coastal environments with high salt and humidity. Graphene-based anticorrosion coatings are currently unable to provide long-lasting corrosion protection for metals because of their “corrosion-promoting activity”, and graphene-like materials, such as molybdenum disulfide (MoS2), are beginning to be anticipated its ability to protect against metals. This paper reported a simple method for preparing polypyrrole (PPy)-modified MoS2 nanomaterials from natural bulk MoS2. Their corrosion resistance behavior a
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Zheng, Xiaohang, Yaqian Yang, Yi Xian, Heng Chen, and Wei Cai. "In Situ Grown Vertically Oriented Graphene Coating on Copper by Plasma-Enhanced CVD to Form Superhydrophobic Surface and Effectively Protect Corrosion." Nanomaterials 12, no. 18 (2022): 3202. http://dx.doi.org/10.3390/nano12183202.

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Graphene exhibits great potential for the corrosion protection of metals, because of its low permeability and high chemical stability. To enhance the anticorrosion ability of Cu, we use plasma-enhanced chemical vapor deposition (PECVD) to prepare a vertically oriented few-layer graphene (VFG) coating on the surface of Cu. The Cu coated with VFG shows superhydrophobic surface with a contact angle of ~150°. The VFG coating is used to significantly increase the anticorrosion ability, enhanced by the chemical stability and the unique geometric structure of vertically oriented graphene. The corrosi
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Zhao, Xia, Shuai Yuan, Zuquan Jin, et al. "Perfect Combination of LBL with Sol–Gel Film to Enhance the Anticorrosion Performance on Al Alloy under Simulated and Accelerated Corrosive Environment." Materials 13, no. 1 (2019): 111. http://dx.doi.org/10.3390/ma13010111.

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Given their outstanding versatile properties, multilayered anticorrosion coatings have drawn great interest from researchers in the academic and engineering fields. However, the application of multilayered coatings is restricted by some limitations such as low interlayer compatibilities, the harsh preparation process, etc. This work introduced a composite film fabricated on a 2A12 aluminum alloy surface, including an anodic oxide film, a sol–gel film, and a layer-by-layer (LBL) self-assembling film from bottom to top. The microstructure and elemental characterization indicated that the finish
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Liu, Meng, Xiaochen Zhang, Dong Wang, et al. "Facile Fabrication of Superhydrophobic Surface from Fluorinated POSS Acrylate Copolymer via One-Step Breath Figure Method and Its Anti-Corrosion Property." Polymers 11, no. 12 (2019): 1953. http://dx.doi.org/10.3390/polym11121953.

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Novel fluorinated polyhedral oligomeric silsesquioxane (POSS) acrylic copolymers were synthesized by the radical solution polymerization. The superhydrophobic coating was prepared using a one-step breath figure method. Chemical constitution, morphology, hydrophobicity, and anticorrosion ability of as-prepared coatings were investigated by the corresponding equipment. The addition of proper fluorinated POSS can synchronously promote the formation of the micro-nano convex structure and the enrichment of fluorinated groups on the surface. Compared to commercial acrylic coating, the fluorinated PO
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Wang, Wei, Li Kun Xu, and Li Li. "Self-Healing Ability of Smart Coating for Anticorrosion of Reinforcing Steel." Applied Mechanics and Materials 357-360 (August 2013): 680–83. http://dx.doi.org/10.4028/www.scientific.net/amm.357-360.680.

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Self-healing materials offer tremendous potential for providing long-lived structural materials. In this study, isophorone diisocyanate (IPDI) microcapsules as self-healing materials were synthesized via in situ polymerization. Thermogravimetric analysis characterized the thermal ability of IPDI, microcapsules and microcapsule shells. The morphology of microcapsules and microcapsule shells were characterized by FE-SEM. Scanning micro-reference electrode technique demonstrated that epoxy resin coatings with IPDI microcapsules on the surface of reinforcing steel Q235 could cure the scratched cre
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Dissertations / Theses on the topic "Anticorrosion Ability"

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Dolgikh, O. V., N. V. Sotskaya, and L. V. Sapronova. "Electrochemical Behavior of Electrodeposited Ni-P Coatings in Acidic Solutions." Thesis, Sumy State University, 2012. http://essuir.sumdu.edu.ua/handle/123456789/35466.

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The paper is devoted to the investigation of cathodic and anodic behavior of electrodeposited Ni-P alloys of different composition in H2SO4 solutions. It was established that increase of phosphorous content enhances anticorrosion ability of Ni-P coatings and decreases their catalytic activity toward to hydrogen evolution reaction. The most probable mechanism of this reaction was suggested on the basis of analysis of experimental data. It assumes that at low overpotentials hydrogen evolution proceeds by Volmer- Heyrovsky route with limiting step of charge transfer. At higher potentials Vol
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Book chapters on the topic "Anticorrosion Ability"

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Grigoriev, D. "Anticorrosion Coatings with Self-Recovering Ability Based on Damage-Triggered Micro- and Nanocontainers." In Intelligent Coatings for Corrosion Control. Elsevier, 2015. http://dx.doi.org/10.1016/b978-0-12-411467-8.00008-8.

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Higazy, Shimaa A., Olfat E. El-Azabawy, and Mohamed S. Selim. "Superhydrophobic Polymeric Nanocomposites Coatings for Effective Corrosion Protection." In Advances in Organic Synthesis. BENTHAM SCIENCE PUBLISHERS, 2023. http://dx.doi.org/10.2174/9789815040791123180008.

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The contemporary era of studying superhydrophobic surfaces began in 1997, when Neinhuis and Barthlott discovered the self-cleaning qualities of the lotus effect. Corrosion of steel represents an important industrial issue with well-known negative economic and environmental consequences. The protection of steel objects during service operations is an inexhaustible research subject because of the steel's high demand in the industry. Anticorrosive coatings have aided in extending the life of the material without impairing its bulk qualities. The microporous structure of polymers allows corrosive
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Conference papers on the topic "Anticorrosion Ability"

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Papavinasam, Sankara, Jennifer Krausher, Pouria Ghods, and O. Burkan Isgor. "Evaluation of Compatibility between Thermal Insulator, External Coating, and Cathodic Protection at 150°C." In CORROSION 2011. NACE International, 2011. https://doi.org/10.5006/c2011-11024.

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Abstract Due to operational requirements including the production of heavy oil from oil-sands by the Steam-Assisted Gravitational Drainage (SAGD) process, the operating temperature of pipelines is increasing. Pipelines are being operated at temperatures as high as 150°C. To maintain such temperatures, the external surface of the pipeline is protected by an insulator in addition to an anticorrosion coating. All underground pipelines are further protected by cathodic protection (CP). The cathodic disbondment (CD) test is commonly used for determining compatibility between external polymeric pipe
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Gaillard, Gérard, Jean-Luc Bouliez, and Pascal Collet. "A New Application Process That Assures Good Adhesion of Fusion Bonded Epoxy Coatings Exposed to Very Severe Conditions." In CORROSION 2011. NACE International, 2011. https://doi.org/10.5006/c2011-11029.

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Abstract The long-term anticorrosion protection of buried pipelines is linked to the ability of coating materials to ensure a barrier effect against corrosive components such as water and salts. On the other hand, in order to withstand in-service stresses, the coating also needs to have good adhesion on the steel substrate, even under drastic conditions that combine high temperature and humidity. As regards FBE (fusion bonded epoxy) coatings, it has already been demonstrated that barrier performance is due to the hydrophobic nature of the coating and consequently its ability to maintain a high
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Latipov, Rifnur, and David Morton. "Isocyanate Free Water Repellent Top Coat for Offshore Corrosion Protection." In CORROSION 2021. AMPP, 2021. https://doi.org/10.5006/c2021-16640.

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Abstract To obtain long term corrosion protection in demanding offshore environments the coating system needs to protect the structure from water to prevent corrosion. We have developed a durable isocyanate free top coat that can actively repel water to provide outstanding protection for offshore steel structures from corrosion. In this paper, the development of a water repellent, isocyanate free top coat is described and the effect of this top coat is compared to conventional coatings. The top coat is tested in a single coating system, applied directly to metal (DTM) and in a two coat system
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Thorn, Andy, and Dave Thompson. "Optimization of Non-Toxic Anticorrosives in Water Borne Coatings." In SSPC 2017 Greencoat. SSPC, 2017. https://doi.org/10.5006/s2017-00055.

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Abstract There are many factors to consider when optimizing your coating system for corrosion resistance. Waterborne coatings present a unique challenge due to their inherent hydrophilic nature and ability to readily conduct electrons. Waterborne resin technology has evolved greatly since its inception. If formulated properly one is able to meet and or exceed the performance of their solvent borne counterparts. Prior to choosing a suitable anti-corrosive, the formulator must be aware of the many factors that can influence the end performance of their system. These factors include resin type, s
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Luan, Zhenhui, Chao Liu, Shan Wang, and Yihua Li. "Study on Improving the Anticorrosion Ability of Chemical Machinery." In 2015 International Conference on Materials, Environmental and Biological Engineering. Atlantis Press, 2015. http://dx.doi.org/10.2991/mebe-15.2015.71.

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Fantini, V. "Laser Cladding: A New Technology for Corrosion and Erosion Protection of Boiler Tubes." In ITSC2007, edited by B. R. Marple, M. M. Hyland, Y. C. Lau, C. J. Li, R. S. Lima, and G. Montavon. ASM International, 2007. http://dx.doi.org/10.31399/asm.cp.itsc2007p1120.

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Abstract In Municipal Waste Incinerators (MWI) considerable corrosion problems of critical components, such as superheater or boiler tubes, are always reported. Especially in modern WTE plants the need of efficiency increase requires operation at higher temperatures, which in turn enhances the corrosion rates. Laser cladding technology was successfully used for the production of anticorrosion and resistant-to-erosion coatings on tubes of superheaters and boilers. Compared to protective coatings produced by flame spraying devices, laser cladding is virtually porosity free and metallurgically bo
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Springer, Alexandria, and Edward Rolinski. "Plasma Nitriding Process and Best Applications." In HT 2023. ASM International, 2023. http://dx.doi.org/10.31399/asm.cp.ht2023p0077.

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Abstract Plasma nitriding is the low-nitriding potential process characteristic of its ability to nitride stainless steels and powder metal components without special preparations or unusual controls. This is possible thanks to its specific mechanism and presence of sputtering, the phenomenon which occurs throughout the entirety of the process. Typically, the plasma process produces a nitrided layer with the gamma prime-Fe4N compound zone on top of it. This is very important whenever a good bending fatigue property of the part is needed. The abovementioned materials can also be treated with co
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Blazquez, C., M. H. Klopffer, and E. Kohler. "Impact of Solids on Topside Operations in EOR Context." In ADIPEC. SPE, 2023. http://dx.doi.org/10.2118/216848-ms.

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Abstract The presence of solids in the hydrocarbon treatment and separation equipment downstream the choke can have a great impact on the process operability, assets risks, flow assurance, thus on the economics of the operation. It has been well documented that solids can highly stabilize emulsions, sometimes even better than surfactants. In fact, solids can be attached to the oil/water interface in an almost irreversible way that impedes droplets coalescence mainly by steric repulsion. Moreover, naturally surfactant molecules present in the crude oil (e.g., asphaltenes, naphthenic acids, resi
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Galvis, E., P. Lasso, A. Machado, and J. J. Garcia. "Computational Determination of the 3-D Stiffness Matrix of an Ilizarov Fixator." In ASME 2001 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 2001. http://dx.doi.org/10.1115/imece2001/bed-23077.

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Abstract Use of external fixators in undeveloped countries has been limited due to their high cost. Consequently, one of the aims of our group is the design, construction, and evaluation of low cost external fixators. In this paper we present the mechanical characterization of an Ilizarov fixator composed of rings made of aluminum, which is light, cheap, easy to form, radiolucid and anticorrosive. The main purpose was to determine the 3-D stiffness of the fixator (Duda et al., 1998) in order to be able to evaluate interfragmentary movement. We hypothesize that this fixator has the ability to l
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Reports on the topic "Anticorrosion Ability"

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Barlo, Thomas, and Alan Zdnek. PR-208-004-R01 Cathodic Protection Under Disbonded Coatings. Pipeline Research Council International, Inc. (PRCI), 1994. http://dx.doi.org/10.55274/r0011415.

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The objective of this research was to: - To quantify the relative ability of disbonded pipeline coatings to transmit cathodic-protection current and provide corrosion control to the steel beneath, - To provide a clearer understanding of the current paths that control cathodic protection to the steel under disbonded coatings, - To identify coatings that may be less restrictive to cathodic protection current, - To determine cathodic protection system designs and procedures to maximize the effectiveness of cathodic protection to the steel surface under disbonded coatings. Laboratory experiments w
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