Journal of Minerals and Materials Characterization and Engineering

Journal of Minerals and Materials Characterization and Engineering

ISSN Print: 2327-4077
ISSN Online: 2327-4085
www.scirp.org/Journal/jmmce
E-mail: jmmce@scirp.org
"High Temperature Cyclic Oxidation Behavior of Ni and Co Based Superalloys"
written by Deepa Mudgal, Surendra Singh, Satya Prakash,
published by Journal of Minerals and Materials Characterization and Engineering, Vol.11 No.3, 2012
has been cited by the following article(s):
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[2] In situ high temperature oxidation behavior of novel Co/Cr/W/Ni (KCN20WN) alloy at high temperature environment
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[3] The dependence of oxidation resistance on gamma prime intermetallic size for superalloy IN738LC
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[4] Erosion behavior of Ni-based coating under high-speed hot airflow
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[5] Study Of Cyclic High Temperature Hot-Corrosion Behaviour of Bare And Ni-Cr Coating Over Mild Steel
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[6] Experimental Evaluation of High Temperature Corrosion Performance of 75Ni25Cr Coated and Bare 347H SS in Air and Simulated Husk Fired Boiler Environment
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[7] Математическое моделирование высокотемпературной коррозии жаропрочных никелевых сплавов
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[8] Математичне моделювання високотемпературної коррозии жароміцних нікелевих сплавів
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[9] РАЗРАБОТКА ЭЛЕКТРОХИМИЧЕСКОГО МЕТОДА СИНТЕЗА ТОНКОДИСПЕРСНОГО ПОРОШКА КОБАЛЬТА, ПРЕДНАЗНАЧЕННОГО ДЛЯ …
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[10] A study of the effect of tungstate ions on the electrochromic properties of Ni (OH) 2 films
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[11] 铬含量对 Ni-10Al-xCr-0.6 Y 2 O 3 合金高温抗氧化性能及室温力学性能的影响
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[12] A study of multilayered electrochromic platings based on nickel and cobalt hydroxides
Восточно-Европейский журнал …, 2018
[13] Development of the electrochemical synthesis method of ultrafine cobalt powder for a superalloy production
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[14] 铬含量对 Ni-10Al-xCr-0.6 Y2O3 合金高温抗氧化性能及室温力学性能的影响
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[15] 铬含量对Ni-10Al-xCr-0.6Y2O3合金高温抗氧化性能及室温力学性能的影响
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[16] A comparative study to evaluate the corrosion performance of Zr incorporated Cr3C2-(NiCr) coating at 900° C
Ceramics International, 2018
[17] V. Kovalenko
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[18] Effects of Thermal Gradient and Cyclic Oxidation on the Delamination and Lifetime of High Temperature Protective Coatings
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[19] OXIDATION BEHAVIOR OF CNT REINFORCED AL2O3 COATED GRADE A-1 BOILER STEEL IN AIR AT 900 C
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[20] Corrosion characteristics of a nickel-base alloy C-276 in harsh environments
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[21] Investigation the effects of germaniumaddition on the oxidation behavior of NiTi shape memory alloy in air
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[22] Yüksek sıcaklık uygulamalarına yönelik HfB2-SiC kompozitlerinin geliştirilmesi
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[23] To Study the Corrosion Behavior of D-Gun Sprayed NiCr Coated 347H Stainless Steel under Simulated and Actual Biofuel Fired Boiler Environment
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[24] Suppression of oxidation of high chromium steels at elevated temperatures in steam atmosphere by alumina-based coating film grown by chemical solution deposition process
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[25] Suppression of oxidation of high chromium steels at elevated temperatures in steam atmosphere by alumina-based coating film grown by chemical solution deposition …
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[26] Synthesis & Characterization of Ni-Cr Binary Alloys Produced by Powder Metallurgy Technique
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[27] Cyclic Hot Corrosion Behavior of Superni 718, Superni 600, and Superco 605 in Sulfate and Chloride Containing Environment at 900 C
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[28] Effects of Aluminum Addition on the High Temperature Oxidation Behavior of CM-247LC Ni-based Superalloy
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[29] The formation of Cr (VI) compound at the interface between metal and heat-insulating material and the approach to prevent the formation by sol–gel process
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[30] Hot Corrosion Behavior of Some Superalloys in a Simulated Incinerator Environment at 900° C
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[31] Hot corrosion behavior of some superalloys in a simulated incinerator environment at 900 C
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[32] High Temperature Oxidation Behavior of CM-247LC Nickel Base Superalloy
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[33] Effects of Al Addition on the High Temperature Oxidation Behavior of CM‐247 LC Ni‐Based Superalloy
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[34] Cyclic oxidation behavior of bare and Cr3C2-25 (NiCr) coated super alloy at elevated temperature
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[35] Cyclic oxidation behavior of bare and Cr3C2-25 (NiCr) coated superalloy at elevated temperature
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[36] Modification of Oxidation Behavior of Ni Ti Shape-Memory Alloy by Yttrium Addition
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