Academic literature on the topic 'CrSi2 based alloys'

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Journal articles on the topic "CrSi2 based alloys"

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Khalil, Mahmoud, Mickael Beaudhuin, Benjamin Villeroy, Didier Ravot, and Romain Viennois. "A modeling approach for new CrSi2 based alloys: Application to metastable Cr1-xZrxSi2 as a potential thermoelectric material." Journal of Alloys and Compounds 662 (March 2016): 150–56. http://dx.doi.org/10.1016/j.jallcom.2015.12.048.

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Kurokawa, Kazuya, Toto Sudiro, Tomonori Sano, Shoji Kyo, Osamu Ishibashi, and Masaharu Nakamori. "High-temperature corrosion resistance of SiO2-forming materials." Corrosion Reviews 36, no. 1 (2018): 65–74. http://dx.doi.org/10.1515/corrrev-2017-0069.

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AbstractAn increasing demand for electricity and preserving the environment has become a great driving force for the development of advanced boilers for coal-fired plants to improve their plant efficiency by raising the operating temperature. To achieve this purpose, the development of materials that possess a high mechanical strength and excellent resistance against corrosion at high temperatures is required. Considering such situation, the high-temperature corrosion behavior of SiO2-forming materials such as CrSi2-Ni and CoNiCrAlY-Si alloys in atmospheres containing NaCl and Na2SO4 is introd
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Yin, Y. X., and H. M. Wang. "Microstructure and wear resistance of Cuss-toughened Cr5Si3/CrSi metal silicide alloys." Journal of Materials Research 20, no. 5 (2005): 1122–30. http://dx.doi.org/10.1557/jmr.2005.0174.

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Wear-resistant Cu-based solid-solution-toughened Cr5Si3/CrSi metal silicide alloy with a microstructure consisting of predominantly the dual-phase primary dendrites with a Cr5Si3 core encapsulated by CrSi phase and a small amount of interdendritic Cu-based solid solution (Cuss) was designed and fabricated by the laser melting process using Cr–Si–Cu elemental powder blends as the precursor materials. The microstructure of the Cuss-toughened Cr5Si3/CrSi metal silicide alloy was characterized by optical microscopy, powder x-ray diffraction, and energy dispersive spectroscopy. The Cuss-toughened s
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BAHLOULI, S., Z. AARIZOU, and M. ELCHIKH. "STRUCTURE AND MAGNETIC PROPERTIES IN RUTHENIUM-BASED FULL-HEUSLER ALLOYS: AB INITIO CALCULATIONS." Modern Physics Letters B 27, no. 30 (2013): 1350219. http://dx.doi.org/10.1142/s0217984913502199.

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In this paper, we present ab initio calculations within density functional theory (DFT) to investigate structure, electronic and magnetic properties of Ru 2 CrZ ( Z = Si , Ge and Sn ) full-Heusler alloys. We have used the developed full-potential linearized muffin tin orbitals (FP-LMTO) based on the local spin density approximation (LSDA) with the PLane Wave expansion (PLW). In particular, we found that these Ruthenium-based Heusler alloys have the antiferromagnetic (AFM) type II as ground state. Then, we studied and discussed the magnetic properties belonging to our different magnetic structu
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Ilinykh, Nina, Anastasia Krivorigova, Boris Gelchinski, Sergey Ilinykh, and Leonid Kovalev. "Thermodynamic modeling of composition and propereties of self-fluxing materials based on the nickel." MATEC Web of Conferences 329 (2020): 02026. http://dx.doi.org/10.1051/matecconf/202032902026.

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Self-fluxing nickel or cobalt-based alloys that use boron, phosphorus or silicon, as melting point depressants and fluxing agents are thermodynamic simulation of self-fluxing materials Ni-0.5C-15Cr-3.2Si-2B (PGSR-2) and Ni-1C-17Cr-4.1Si-3.6B (PGSR-4) was performed. As the software for simulation of phase and chemical equilibrium the TERRA software package was used. The simulation was carried out in the temperature range 300–3000 K at a total pressure P = 105 Pa in an argon atmosphere. The temperature dependences of the equilibrium composition and thermodynamic characteristics (enthalpy, entrop
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Zhang, Xiao Bin, Xia Chang, Tao Wei, and Chang Sheng Liu. "Microstructure and Cavitation-Erosion Mechanism of Laser Cladding NiCrSiB Coating on CrNiMo Stainless Steel." Advanced Materials Research 154-155 (October 2010): 1788–91. http://dx.doi.org/10.4028/www.scientific.net/amr.154-155.1788.

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A Ni-based alloy NiCrSiB laser cladding layer was made on the surface of CrNiMo stainless steel specimens using NiCrSiB powder. Cavitation erosion behavior of the laser cladding layer and the CrNiMo stainless steel was investigated by ultrasonic vibration cavitation erosion equipment The results shown that laser cladding layer has dense microstructure and has metallurgical combination with CrNiMo stainless steel substrate. Because of impact effect of cavities collapse, micro-cracks caused material broke off from samples. NiCrSiB laser cladding layer have better micro-crack propagate resistance
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Kang, Xu-Hui, and Jian-Min Zhang. "A comparison study of the structural, electronic, magnetic and optical properties of yttrium-based Heusler alloys Y 3 Si, Y 2 CrSi and ScYCrSi." Materials Chemistry and Physics 211 (June 2018): 283–94. http://dx.doi.org/10.1016/j.matchemphys.2018.02.020.

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Dissertations / Theses on the topic "CrSi2 based alloys"

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Khalil, Mahmoud. "Investigation and optimization of semiconducting chromium disilicide based materials for thermoelectric applications." Thesis, Montpellier, 2015. http://www.theses.fr/2015MONTS165.

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Depuis les années 90, dans le contexte de la pénurie annoncée d'énergies fossiles et de modifications climatiques, un regain d'intérêt s'est fait sentir pour les énergies renouvelables et, parmi elles, pour la thermoélectricité. Cette dernière permettant la conversion directe entre énergies thermique et électrique devrait permettre la récupération de l'énergie perdue sous forme de chaleur, durant les processus industriels. Cependant, à l'heure actuelle, l'efficacité de la conversion thermoélectrique, évaluée à partir du facteur de mérite, ZT, n'est pas suffisante pour des applications à grande
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