Effect of Microwave Hybrid Heating on High-Temperature Adhesive Wear Behavior of High-Velocity Oxygen Fuel-Sprayed WC-CrC-Ni and WC-Co/NiCrFeSiB Coatings
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[1] R. Kadoli,et al. High-Temperature Solid Particle Erosion Behavior of Partially Oxidized NiCrBSiFe/NiCr Plasma Spray Coatings , 2021, Journal of Thermal Spray Technology.
[2] R. Kadoli,et al. Developing partially oxidized NiCr coatings using the combined flame spray and plasma spray process for improved wear behaviour at high temperature , 2021 .
[3] M. Ramesh,et al. Solid Particle Erosion Behavior of Partially Oxidized Al with NiCr Composite Coating at Elevated Temperature , 2021, Journal of Materials Engineering and Performance.
[4] D. Bhosale,et al. Sliding and erosion wear behaviour of thermal sprayed WC-Cr3C2-Ni coatings , 2020 .
[5] M. Ramesh,et al. Microstructural and Tribological Resistance of Flame-Sprayed CoMoCrSi/WC-CrC-Ni and CoMoCrSi/WC-12Co Composite Coatings Remelted by Microwave Energy , 2020, Journal of Bio- and Tribo-Corrosion.
[6] H. Van Swygenhoven,et al. Cracks, Porosity and Microstructure of Ti Modified Polymer-Derived Sioc Revealed by Absorption-, XRD- and XRF-Contrast 2D and 3D Imaging , 2020, Acta Materialia.
[7] D. Bhosale,et al. Tribological behaviour of atmospheric plasma and high velocity oxy-fuel sprayed WC-Cr3C2-Ni coatings at elevated temperatures , 2020, Ceramics International.
[8] Q. Fu,et al. Effect of mullite on the microstructure and oxidation behavior of thermal-sprayed MoSi2 coating at 1500 °C , 2020, Ceramics International.
[9] M. Ramesh,et al. Comparison of Microstructural and Sliding Wear Resistance of HVOF Coated and Microwave Treated CoMoCrSi-WC + CrC + Ni and CoMoCrSi-WC + 12Co Composite Coatings Deposited on Titanium Substrate , 2020, Silicon.
[10] M. Kaur,et al. High-temperature wear behaviour of HVOF sprayed 65% (NiCrSiFeBC)−35% (WC–Co) coating , 2019, Surface Engineering.
[11] Sharnappa Joladarashi,et al. Development and Sliding Wear Behavior of Co-Mo-Cr-Si Cladding through Microwave Heating , 2019, Silicon.
[12] Yongzheng Zhang,et al. Effect of temperature on the friction and wear behavior of electroless Ni–P–MoS2–CaF2 self-lubricating composite coatings , 2018, Tribology International.
[13] Sharnappa Joladarashi,et al. Microstructure and tribological behavior of flame sprayed and microwave fused CoMoCrSi/CoMoCrSi–Cr3C2 coatings , 2018 .
[14] M. Ramesh,et al. Influence of microwave hybrid heating on the sliding wear behaviour of HVOF sprayed CoMoCrSi coating , 2018, Materials Research Express.
[15] Peter Kenesei,et al. Investigation of fatigue crack initiation from a non-metallic inclusion via high energy x-ray diffraction microscopy , 2017 .
[16] C. Deng,et al. High temperature wear performance of HVOF-sprayed Cr 3 C 2 -WC-NiCoCrMo and Cr 3 C 2 -NiCr hardmetal coatings , 2017 .
[17] K. White,et al. Microscale fracture mechanisms of a Cr3C2-NiCr HVOF coating , 2017 .
[18] S. Zafar,et al. Microstructure and wear performance of heat treated WC-12Co microwave clad , 2016 .
[19] Apurbba Kumar Sharma,et al. Microwave–material interaction phenomena: Heating mechanisms, challenges and opportunities in material processing , 2016 .
[20] G. Bolelli,et al. Tribology of NiCrAlY+Al2O3 composite coatings by plasma spraying with hybrid feeding of dry powder+suspension , 2015 .
[21] Sunny Zafar,et al. Microstructure and Abrasive Wear Performance of Ni-Wc Composite Microwave Clad , 2015, Journal of Materials Engineering and Performance.
[22] R. Kadoli,et al. Hot Corrosion Behaviour of HVOF Sprayed (Cr3C2–35 % NiCr) + 5 % Si Coatings in the Presence of Na2SO4–60 % V2O5 at 700 °C , 2015, Transactions of the Indian Institute of Metals.
[23] N. Ramanaiah,et al. Microstructural Evolution of the WC-Co/NiCrAlY Duplex Coating System on Ti6Al4 V and its Influence on Mechanical Properties , 2014 .
[24] N. Arora,et al. Solid Particle Erosion Behavior of WC-CoCr Nanostructured Coating , 2013 .
[25] M. Aristizabal,et al. Comparison of the friction and wear behaviour of WC–Ni–Co–Cr and WC–Co hardmetals in contact with steel at high temperatures , 2012 .
[26] D. Gupta,et al. Development and microstructural characterization of microwave cladding on austenitic stainless steel , 2011 .
[27] D. Gupta,et al. Investigation on sliding wear performance of WC10Co2Ni cladding developed through microwave irradiation , 2011 .
[28] S. Sampath,et al. Damage tolerant functionally graded WC–Co/Stainless Steel HVOF coatings , 2010 .
[29] Satya Prakash,et al. Solid particle erosion of HVOF sprayed WC-Co/NiCrFeSiB coatings , 2010 .
[30] Shihong Zhang,et al. Investigation on microstructure, surface properties and anti-wear performance of HVOF sprayed WC–CrC–Ni coatings modified by laser heat treatment , 2009 .
[31] Tong-Yul Cho,et al. Processing optimization, surface properties and wear behavior of HVOF spraying WC-CrC-Ni coating , 2009 .