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Advanced Welding Technology in Metals

Advanced Welding Technology in Metals

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Welding is widely used by both academia and industry to create similar and dissimilar joints aiming to create a complex shape structure and to couple the mechanical properties of different materials into a single monolithic structure. In this book, a collection of peer-reviewed works on the welding of advanced engineering alloys is presented. Both solid-state and fusion-based welding technologies are presented. These works employed advanced microstructure characterization to evaluate how the selection of process parameters impacts the microstructure and mechanical properties of the welded joints. Moreover, three comprehensive review works are also included, providing an in-depth overview of distinct topics. We hope that this collection of works is of interest to the community so that welding technologies continue to grow further in the future.

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Keywords

  • AA2024-T4/AA7075-T6Al alloys
  • AA5456
  • Alloy 718
  • Aluminum
  • aluminum alloy
  • analytical Rosenthal equation
  • ASTM A553-1 (9% nickel steel)
  • Bead on Plate (BOP)
  • camera
  • CMT
  • constitutional supercooling
  • continuous wavelet transform
  • deep neural network
  • Diffusion
  • dissimilar aluminium alloys
  • dissimilar aluminium alloys joints
  • dissimilar friction stir welding
  • dissimilar metal joining
  • dissimilar metal joints
  • dissimilar metals
  • dissimilar welding
  • double-pulsed
  • double-pulsed gas metal arc welding (DP-GMAW)
  • droplet impact force
  • droplet impingement pressure
  • droplet transfer
  • EBSD
  • explosive welding
  • fiber laser-MIG hybrid
  • flexural strength
  • fractography
  • Fracture
  • fracture morphology
  • fracture surfaces
  • friction stir processing
  • friction stir welding
  • friction welding
  • fuzzy comprehensive evaluation
  • grain refinement
  • guidelines
  • hardness
  • heat input
  • high entropy alloys
  • high speed photograph
  • high strength steel
  • high temperature titanium alloy
  • History of engineering & technology
  • hot cracking mechanism
  • hot wire
  • hybrid joints
  • Image processing
  • Incomplete penetration
  • infrared thermography
  • interface wave
  • interfacial bonding mechanism
  • intermetallic compound
  • intermetallic compounds
  • investment casting
  • K-TIG
  • laser beam welding
  • laser impact welding
  • laser oscillating welding
  • laser welding
  • Mechanical properties
  • metal flow behavior
  • microhardness
  • Microstructure
  • microstructure evaluation
  • microstructures
  • MIG
  • nitinol
  • numerical finite-element modeling
  • orthogonal experimental design
  • Penetration
  • penetration shape
  • pin length
  • plasma arc welding
  • process conditions
  • pulsed GMAW
  • quality assessment
  • real time
  • resistance heat-assisted ultrasonic welding
  • review
  • robot operation
  • rolling temperature
  • root flaw
  • short-circuiting gas metal arc welding
  • spectrometer
  • t-butt joints
  • TA1/Q235B composite sheets
  • Technology, engineering, agriculture
  • Technology: general issues
  • temperature
  • tensile properties
  • tensile strength
  • Texture
  • thermal regime
  • Ti-6Al-4V
  • tungsten inert gas welding
  • Varestraint test
  • waveform control method
  • weak connection
  • weld bead formation
  • weld formation
  • weld pool oscillation
  • weld pool oscillation and flow
  • Welding
  • welding procedure optimisation
  • welding seam root

Links

DOI: 10.3390/books978-3-0365-5676-5

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