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Science, Characterization and Technology of Joining and Welding
Meysam Haghshenas
2020
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As the Guest Editor of this Special Issue entitled ""Science, Characterization, and Technology of Joining and Welding"" of Metals, I am pleased to have this book published by MDPI. Joining, including welding, soldering, brazing, and assembly, is an essential requirement in manufacturing processes and is classified as a secondary manufacturing process. This Special Issue of Metals includes technical and review papers on, but not limited to, different aspects of joining and welding, including welding technologies (i.e., fusion-based welding and solid-state welding), characterization, metallurgy and materials science, quality control, and design and numerical simulation. This Special Issue also includes the joining of different materials, including metal and non-metals (polymers and composites), including 17 peer-reviewed papers from several researchers all around the globe (China, Germany, Brazil, South Koria, Slovakia, USA, Taiwan, Canada, and India). As of this date (April 2020), the papers in this Special Issue have been cited 47 times by other researchers, which I think is an eminent number and shows the high quality of the published papers in this Issue. This Special Issue includes a large diversity of various subjects in the field of joining: laser welding, friction stir welding, diffusion bonding, multipass welding, rotary friction-welding, friction bit joining, adhesive bonding, weldbonding, simulation and experimentation, metal/FRP joints, welding simulation, plasma–TIG coupled arc welding, liquation cracking, soldering, resin bonding, microstructural characteristics, brazing, and friction stir butt and scarf welding. I would like to sincerely thank all the researchers who contributed to this Special Issue for their high-quality research. I also would like to acknowledge Mr. Toliver Guo, Senior Assistant Editor at MDPI, who continuously and tirelessly contributed toward this Special Issue by assisting me with inviting the authors and the follow ups. I think this Special Issue will enhance our knowledge and understanding in the field of joining and assembly. I would like to dedicate this book to my wife, Mehrnoosh, for her continued support and encouragement.
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Keywords
- 22MnB5
- active monomers
- Adhesion
- adhesive bonding
- adhesive thermos-mechanical property
- Aluminum
- anisotropy
- API 5L X80 steel
- arc profile
- bonding strength
- butt joint
- carbide dissolution
- carbon fiber-reinforced polymer
- Ceramics
- clad filler foil
- coating
- Copper
- coupled arc
- Cr-Mo steel
- Design of experiments
- direct diffusion bonding
- dissimilar joints
- dissimilar material joining
- dissimilar weldments
- distributed point heat sources model
- dual-phase steel
- electrical properties
- energy-input
- eutectoid
- flex-on-board assembly
- flow stress
- flux-less soldering
- friction bit joining
- friction stir welding
- FRP
- HAZ cracking
- heat-affected zone
- high-crystalline content zirconia
- hot pressing
- hybrid joining
- IN738 superalloy
- interfacial microstructure
- joint mechanical properties
- laser welding
- local brittle zone
- longitudinal wave
- M23C6
- mechanical interlocking
- Mechanical properties
- mechanical strength
- medium thick plate model
- Metallurgy
- microconstituent
- Microstructure
- Numerical Simulation
- oxide layer
- phased array ultrasonic
- plasma-TIG
- pores
- pressure distribution
- rotary friction-welding
- SA213-T23
- scarf joint
- simulation
- SnBi58 solder joint morphology
- solder
- surface structuring
- taguchi design
- tailor welded blanks
- TAN alloy
- thermal compression bonding
- thermal spraying
- thermophysical property
- Ti2AlNb alloy
- tint etching
- Titanium
- tool pin profiles
- ultrasonic bonding
- vacuum brazing
- weld bonding
- Welding
- welding thermal cycles
- Zn-coated low carbon microalloyed steels