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Development of Laser Welding and Surface Treatment of Metals

Development of Laser Welding and Surface Treatment of Metals

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Constant striving to reduce pollutant emissions, greenhouse gases and energy consumption, i.e., sustainable development, forces the development of new and improved materials, technologies and manufacturing processes. One of the areas of sustainable development of the global economy is also the development of laser devices and the spreading of laser technology applications.The book deals with important issues related to the development of science and technology in the field of application the laser beam for joining, surface treatment, coatings. However, the thematic scope is not limited only to mentioned issues. The scope of the book covers issues related to advances in computational modelling of heat sources in laser and arc processes, unique techniques of underwater welding or unique techniques of forced cooling the weld metal under solidification during arc welding or hybrid process of laser deposition under cryogenic conditions, microstructural and mechanical characterisation of coatings and joints produced by different welding technologies. The above book contains valuable information, both theoretical and practical research results in the field of advanced technologies of joining, surface treatment and coatings, quality control and assessment, as well as management of the technological processes. Therefore, I deeply believe that the book will be a valuable and helpful for young scientists, engineers, and students in the field of welding and surface engineering, materials science, and manufacturing engineering.

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Keywords

  • abrasion
  • abrasive wear resistance
  • Absorption
  • aluminium alloy
  • Aluminum
  • austenitic stainless steel
  • bending
  • boron carbide
  • butt weld
  • carbon nanotubes
  • carburite
  • cladding
  • coating
  • cold cracking
  • components
  • composite coatings
  • computational techniques
  • covered electrodes
  • cryogenic conditions
  • cryosurgical probe
  • Displacements
  • dissimilar welded joint
  • dissimilar welded joints
  • Docol steel
  • electrophoretic deposition
  • engine oil
  • Epidemiology & medical statistics
  • erosion wear resistance
  • Fatigue
  • fatigue limit
  • FCAW-GS
  • FCAW-SS
  • Fe-based coating
  • FEM
  • fiber laser
  • finite element method (FEM)
  • flame powder spray process
  • Fracture
  • Friction
  • hardfacing
  • hardness distribution
  • heat resistant steel
  • heat source model
  • high power diode laser
  • high-strength steel
  • HPDDL
  • hybrid process
  • iron-based alloy
  • joining
  • keyhole welding
  • lap joints
  • laser
  • laser beam
  • laser boriding
  • laser cladding
  • laser deposition
  • laser micro-welding
  • Laser processing
  • laser surface alloying
  • laser treatment
  • laser treatment nanoindentation
  • laser welding
  • lean duplex stainless steel
  • low-carbon steel
  • MAG
  • martensitic stainless steel
  • Mechanical engineering
  • Mechanical properties
  • mechanical resistance
  • mechanical tests
  • medicine
  • Medicine: General Issues
  • micro-jet
  • micro-jet welding
  • Microstructure
  • microstructure analysis
  • mini-specimen
  • MMAW
  • nickel-based superalloy
  • numerical analyses
  • Numerical Simulation
  • pad welding
  • Parameters
  • phase shares
  • potentiodynamic polarization
  • PPTA
  • properties of surface layers
  • Public health & preventive medicine
  • reflectivity
  • reinforcing
  • S700MC TMCP steel
  • Simulations
  • Smart city
  • steel sheets
  • strengthening
  • stresses
  • structure analysis
  • sulfide inclusions
  • surface layer
  • surfacing
  • SYSWELD
  • thermal analysis
  • thermo-mechanically controlled processed
  • thin steel plate
  • thin tube welding
  • Ti13Nb13Zr alloy
  • titanium nitrides
  • transmission electron microscopy (TEM)
  • transport
  • tribology
  • tubular hardfacing electrode
  • underwater welding
  • Vehicles
  • WC-Ni coatings
  • wear
  • wear plate
  • wear resistance
  • wear-resistant steel
  • weld geometry
  • weld surfacing
  • weldability
  • Welding
  • welding sequence
  • welding thermal cycle
  • wet welding
  • X100 pipeline steel

Links

DOI: 10.3390/books978-3-0365-6700-6

Editions

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