Academic literature on the topic 'Inconel625 - Al2O3'

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Journal articles on the topic "Inconel625 - Al2O3"

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Ma, Hong Fang, Ming Zhu, Qing Zhu, and Yan Li. "Corrosion Behaviors of Thermal Diffusion Coating on the Surface of Inconel625 Alloy in Chloride Molten Salts." Materials Science Forum 809-810 (December 2014): 589–95. http://dx.doi.org/10.4028/www.scientific.net/msf.809-810.589.

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In solar thermal storage system, the mixed chloride molten salt with the higher conversion efficiency than a single molten salt, but they are more corrosive than the often used nitride molten salts. In the presents work, aluminide and chromate coating were prepared on the surface of Inconel625 alloy by thermal packing method. The corrosion behaviors of thermal diffusion coating on the surface of Inconel625 alloy in mixed molten salts at 900°C were studied by using XRD and SEM equipped with EDS in the present work. The results showed that both of the two thermal diffusion coatings have sever co
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Prashar, Gaurav, and Hitesh Vasudev. "High-temperature erosion behavior of direct-aged bimodal Al2O3-reinforced Inconel625 plasma sprayed composite coatings." Surface and Coatings Technology 475 (December 2023): 130156. http://dx.doi.org/10.1016/j.surfcoat.2023.130156.

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Prashar, Gaurav, and Hitesh Vasudev. "Structure-property correlation and high-temperature erosion performance of Inconel625-Al2O3 plasma-sprayed bimodal composite coatings." Surface and Coatings Technology 439 (June 2022): 128450. http://dx.doi.org/10.1016/j.surfcoat.2022.128450.

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Bai, Lingyun, Dandan Men, Wenyi Peng, and Tuchun Chen. "Preparation and high temperature oxidation behaviors of TiO2/Al2O3/Inconel625 composite coatings on the surface of Q235 alloy at 900 °C." IOP Conference Series: Materials Science and Engineering 631 (November 7, 2019): 022054. http://dx.doi.org/10.1088/1757-899x/631/2/022054.

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Li, Fengbo, Conghui Zhang, Qingtao Pang, Gang Fang, and Guoqiang Xu. "Effect of High-Energy Shot Peening on Properties of High-Velocity Oxygen-Fuel Spraying." Coatings 13, no. 5 (2023): 872. http://dx.doi.org/10.3390/coatings13050872.

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A Cr3C2-Al2O3-NiCr composite coating was prepared on an INCONEL600 alloy surface through high-velocity oxygen-fuel spraying followed by further processing through high-energy shot peening to create the composite coating. The microhardness and friction properties of the composite coating are analyzed by a microhardness tester and reciprocating friction tester. The microscopic structure and wear trace of the composite coating were analyzed by scanning electron microscope (SEM). The element distribution of the coating was analyzed by energy-dispersive spectroscopy (EDS). The porosity of the coati
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Sivaramakrishnaiah, M., P. Nanda Kumar, and G. Ranga Janardana. "Online Monitoring of Metal cutting of Inconel600 with Al2O3 coated carbide tools." Materials Today: Proceedings 4, no. 2 (2017): 1550–60. http://dx.doi.org/10.1016/j.matpr.2017.01.178.

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Ye, Shiqing, Rongxu Cui, Dongjing Liu, Yangyang Zhang, Jiahua Li, and Hui Huang. "Design and analysis of sensor structure based on ultrasonic temperature measurement." Journal of Physics: Conference Series 2791, no. 1 (2024): 012052. http://dx.doi.org/10.1088/1742-6596/2791/1/012052.

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Abstract Based on the principle of ultrasonic temperature measurement, this paper designs the structure of a waveguide rod sensor with a reflective groove. Using multi-physics field simulation software to conduct acoustic thermal coupling parametric simulation analysis on six different high melting point materials, we obtain the curve functions of the relationship between sound velocity and temperature for the six materials and verify the feasibility of ultrasonic temperature measurement using waveguide rods. Analysis shows that the sensitivity of six alloys to temperature changes is as follow
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Prashar, Gaurav, and Hitesh Vasudev. "Erosion performance of direct-aged Al2O3-reinforced plasma-sprayed composite coatings at high-temperature conditions." Surface Topography: Metrology and Properties, July 10, 2024. http://dx.doi.org/10.1088/2051-672x/ad616d.

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Abstract • The present investigation evaluates the influence of furnace heat-treatment (HT) on the microstructure, microhardness, fracture toughness and erosion resistance of three plasma sprayed composite coatings: a Inconel625-30wt% micron-sized Al2O3 (In625-MHT) coating, a Inconel625-30wt% nano-sized Al2O3 (In625-NHT) coating and a Inconel625-15wt% micron-sized Al2O3 + 15wt% nano-sized Al2O3 (In625-BHT/bimodal) coating. High temperature solid particle erosion tests were conducted at 900ºC temperature and with at two different impingement angles (90 and 30) in simulated environment using sta
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Prashar, Gaurav, and Hitesh Vasudev. "Surface topology analysis of plasma sprayed Inconel625-Al2O3 composite coating." Materials Today: Proceedings, March 2021. http://dx.doi.org/10.1016/j.matpr.2021.03.090.

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Prashar, Gaurav, and Hitesh Vasudev. "High-temperature Erosion behavior of Al2O3 reinforced Inconel625 High Velocity Oxy-fuel sprayed and direct-aged composite coatings." Physica Scripta, July 2, 2024. http://dx.doi.org/10.1088/1402-4896/ad5e48.

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Abstract In this study, Inconel625+30%Al2O3 (IN30AL) blended powders were sprayed on a commercially used boiler steel ASTM SA210 GrA1 using high-velocity oxy-fuel approach (HVOF). The microstructure, mechanical properties and elevated temperature erosion behavior of post-processed coatings and as-sprayed IN30AL coatings were investigated. The elevated temperature erosion studies on IN30AL coatings both as-sprayed and post-processed were investigated at 900ºC temperature at two impact angles 30º and 90º using standard high temperature erosion test rig. Phase composition, interface of substrate/
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Dissertations / Theses on the topic "Inconel625 - Al2O3"

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Contri, Boris. "Procédés d’assemblages céramique – métal : étude des couples Inconel®625 – Alumine et Titane Zirconium Molybdène (TZM) – Carbure de silicium." Electronic Thesis or Diss., Limoges, 2023. http://www.theses.fr/2023LIMO0093.

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Ces travaux de thèses ont pour objectif de présenter les résultats obtenus sur l'assemblage de deux couples de matériaux métal - céramiques par thermocompression : Inconel®625 / Alumine et TZM / Carbure de silicium. Elle se place dans la continuité des résultats obtenus sur des assemblages similaires, au sein du laboratoire IRCER, en étudiant la faisabilité de liaisons direct et de liaison après préoxydation de la partie métallique. Une partie est dédiée à la compréhension du mécanisme d’oxydation de l’inconel®625 en utilisant une thermobalance à insertion à chaud. A l’aide des cinétiques obte
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