Innovative Technologies and Materials for the Production of Mechanical, Thermal and Corrosion Wear-Resistant Surface Layers and Coatings

Welding technologies of applying surface layers from innovative metal, ceramic, and cermet materials, called heat surfacing and spraying, are an important component of rational repair management and modern design of machine parts and devices with special operating properties. This reprint, which is...

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Bibliographic Details
Other Authors: Czupryński, Artur (Editor), Mele, Claudio (Editor)
Format: Electronic Book Chapter
Language:English
Published: Basel MDPI - Multidisciplinary Digital Publishing Institute 2023
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Online Access:DOAB: download the publication
DOAB: description of the publication
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520 |a Welding technologies of applying surface layers from innovative metal, ceramic, and cermet materials, called heat surfacing and spraying, are an important component of rational repair management and modern design of machine parts and devices with special operating properties. This reprint, which is a collection of current scientific works by international authors in the field of surface coating with welding technologies, presents the following:· Analysis of the causes of wear of working surfaces of machine parts and equipment;· Description of most materials used in world industry for surfacing and thermal spraying;· Extensive discussion of all modern technologies of applying surface layers (from gas cladding, through plasma spraying, to laser cladding);· Examples of technological conditions of surfacing and thermal spraying processes of parts of various types and shapes.The Editors of this Special Issue, titled "Innovative Technologies and Materials for the Production of Mechanical, Thermal and Corrosion Wear-Resistant Surface Layers and Coatings", recommend this reprint to students of materials engineering and welding engineers. Undoubtedly, its reprint should be in the handy library of everyone who professionally deals with welding, especially repair management. 
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653 |a impact load 
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653 |a tungsten carbide 
653 |a nanostructured hardmetals 
653 |a Co content 
653 |a GGIs 
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653 |a grain size 
653 |a electrochemical corrosion resistance 
653 |a H2SO4 + CO2 
653 |a hybrid welding 
653 |a steel S960QL 
653 |a HLAW 
653 |a laser beam 
653 |a MAG metal active gas 
653 |a transmission line model (TLM) method 
653 |a potential difference (PD) method 
653 |a contact resistance 
653 |a resistivity 
653 |a silicon solar cells 
653 |a I-V characteristics 
653 |a impact strength 
653 |a brittle fracture strength 
653 |a titanium diboride 
653 |a synthetic polycrystalline diamond 
653 |a aluminum matrix composites 
653 |a silicon carbide 
653 |a glassy carbon 
653 |a GTAW welding 
653 |a tribological test 
653 |a transition metal carbides 
653 |a NiBSi alloy 
653 |a phase interaction 
653 |a PTAW 
653 |a composite layers 
653 |a High Velocity Oxy Fuel 
653 |a AZ31 magnesium alloy 
653 |a microstructure 
653 |a X-ray diffraction 
653 |a residual stress analysis-sin2ψ method 
653 |a cavitation corrosion 
653 |a wear 
653 |a surface engineering 
653 |a roughness 
653 |a nickel 
653 |a cobalt 
653 |a tribology 
653 |a hardness 
653 |a erosion rate 
653 |a failure analysis 
653 |a MCrAlY 
653 |a high-temperature brittleness range 
653 |a hot cracking 
653 |a TIG welding 
653 |a transvarestraint test 
653 |a Inconel 713C 
653 |a nickel alloy 
653 |a LDMD 
653 |a corrosion resistance 
653 |a magnesium alloy 
653 |a bioresorbable stent 
653 |a parylene C 
653 |a surface coating 
653 |a erosion 
653 |a corrosion 
653 |a sand 
653 |a plug flow 
653 |a elbow 
653 |a U-bends 
653 |a discrete phase model 
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856 4 0 |a www.oapen.org  |u https://directory.doabooks.org/handle/20.500.12854/128792  |7 0  |z DOAB: description of the publication