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Impact Welding of Materials
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Recent industrial criteria increasingly require the production of multi-material components. However, the manufacturing requirements of these components are not met by conventional welding techniques. Alternative solid-state technologies, such as impact-based processes, must be considered. The impact welding family is composed of several processes, such as explosion welding, magnetic pulse welding, vaporizing foil actuator welding, and laser impact welding. These processes present very different length scales, providing the impact welding family with a broad applicability range. A sample of the cutting-edge research that is being conducted on the multidisciplinary field of impact welding is presented in this book.

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Keywords

  • Aluminum
  • carbon steel
  • cellular metal
  • cloud of particles
  • collision conditions
  • collision welding
  • composite structure
  • confinement layer
  • dissimilar materials
  • dissimilar metals
  • Energy Efficiency
  • explosive compaction
  • explosive welding
  • flyer rebound
  • flyer size
  • flyer velocity
  • Gelatin
  • high-energy-rate forming
  • high-velocity impact welding
  • impact angle
  • impact velocity
  • impact welding
  • interface
  • interlayer
  • jet
  • LPSO phase
  • magnesium alloys
  • magnetic pulse welding
  • Mechanical properties
  • microhardness
  • Microstructure
  • model test rig
  • n/a
  • peak velocity
  • pressure welding
  • process glare
  • SEM/EBSD
  • Severe plastic deformation
  • shock compression
  • smooth particle hydrodynamic (SPH)
  • smoothed particle hydrodynamics simulation
  • Stainless Steel
  • surface preparation
  • surface roughness
  • tantalum/copper/stainless steel clads
  • Technology, engineering, agriculture
  • Technology: general issues
  • thin aluminum plate
  • Ti6Al4V/Al-1060
  • unidirectional cellular metal
  • vaporizing foil actuators welding
  • welding interface
  • welding mechanisms
  • welding window

Links

DOI: 10.3390/books978-3-0365-0697-5

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