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Recent Developments in Non-conventional Welding of Materials

Recent Developments in Non-conventional Welding of Materials

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Welding is a technological field that has some of the greatest impact on many industries, such as automotive, aerospace, energy production, electronics, the health sector, etc. Welding technologies are currently used to connect the most diverse materials, from metallic alloys to polymers, composites, or even biological tissues. Despite the relevance and wide application of traditional welding technologies, these processes do not meet the demanding requirements of some industries. This has driven strong research efforts in the field of non-conventional welding processes. This Special Issue presents a sample of the most recent developments in the non-conventional welding of materials, which will drive the design of future industrial solutions with increased efficiency and sustainability.

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Keywords

  • AA6082-T6
  • advanced methods
  • Aluminium alloys
  • austenitic and ferritic-pearlitic steels
  • bobbin friction stir welding
  • butt joint
  • composite
  • Copper
  • Creep
  • dissimilar materials
  • EBSD
  • explosive cladding
  • explosive welding
  • fatigue performance
  • Fracture
  • friction stir lap welding
  • friction stir welding
  • FSW
  • high entropy alloys
  • high temperature
  • History of engineering & technology
  • hot rolling
  • intermetallic
  • laser beam welding
  • light alloys
  • Mechanical properties
  • Microstructure
  • microstructure analysis
  • n/a
  • Numerical Simulation
  • optical microscopy
  • orbital hole-drilling strain-gauge method
  • pin depth
  • prediction of tensile yield force
  • residual stress
  • sealed lap joints of dissimilar materials
  • solid type welding
  • steel
  • strain rate
  • T-joints
  • Technology, engineering, agriculture
  • Technology: general issues
  • three dissimilar aluminum alloys
  • tilt angle
  • tool rotational speed
  • traverse and rotation speed
  • traverse force
  • weld
  • weld strength
  • welding joint properties
  • welding speed
  • welding techniques
  • welding zone microstructure
  • Zr 700

Links

DOI: 10.3390/books978-3-0365-3874-7

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