Impact Welding of Materials

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 impac...

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Bibliographic Details
Other Authors: Galvão, Ivan (Editor), Loureiro, Altino (Editor), Mendes, Ricardo (Editor)
Format: Electronic Book Chapter
Language:English
Published: Basel, Switzerland MDPI - Multidisciplinary Digital Publishing Institute 2021
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DOAB: description of the publication
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520 |a 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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546 |a English 
650 7 |a Technology: general issues  |2 bicssc 
653 |a dissimilar materials 
653 |a interlayer 
653 |a vaporizing foil actuators welding 
653 |a impact welding 
653 |a impact velocity 
653 |a impact angle 
653 |a welding interface 
653 |a flyer velocity 
653 |a energy efficiency 
653 |a peak velocity 
653 |a flyer rebound 
653 |a flyer size 
653 |a confinement layer 
653 |a explosive welding 
653 |a Ti6Al4V/Al-1060 
653 |a microstructure 
653 |a mechanical properties 
653 |a smooth particle hydrodynamic (SPH) 
653 |a high-velocity impact welding 
653 |a smoothed particle hydrodynamics simulation 
653 |a welding window 
653 |a gelatin 
653 |a thin aluminum plate 
653 |a magnesium alloys 
653 |a LPSO phase 
653 |a cellular metal 
653 |a composite structure 
653 |a unidirectional cellular metal 
653 |a explosive compaction 
653 |a high-energy-rate forming 
653 |a tantalum/copper/stainless steel clads 
653 |a severe plastic deformation 
653 |a SEM/EBSD 
653 |a microhardness 
653 |a magnetic pulse welding 
653 |a dissimilar metals 
653 |a surface preparation 
653 |a interface 
653 |a aluminum 
653 |a carbon steel 
653 |a stainless steel 
653 |a collision welding 
653 |a pressure welding 
653 |a process glare 
653 |a jet 
653 |a cloud of particles 
653 |a shock compression 
653 |a surface roughness 
653 |a collision conditions 
653 |a model test rig 
653 |a welding mechanisms 
653 |a n/a 
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