Electromagnetic forming—a review
V Psyk, D Risch, BL Kinsey, AE Tekkaya… - Journal of Materials …, 2011 - Elsevier
Electromagnetic forming is an impulse or high-speed forming technology using pulsed
magnetic field to apply Lorentz'forces to workpieces preferably made of a highly electrically …
magnetic field to apply Lorentz'forces to workpieces preferably made of a highly electrically …
Magnetic pulse welding: an efficient and environmentally friendly multi-material joining technique
Magnetic pulse welding, a high speed joining process using electromagnetic forces,
because of clean and multi-material operation has a wide range of possibilities for further …
because of clean and multi-material operation has a wide range of possibilities for further …
Joining by plastic deformation
As the scale and complexity of products such as aircraft and cars increase, demand for new
functional processes to join mechanical parts grows. The use of plastic deformation for …
functional processes to join mechanical parts grows. The use of plastic deformation for …
A review of dissimilar welding techniques for magnesium alloys to aluminum alloys
L Liu, D Ren, F Liu - Materials, 2014 - mdpi.com
Welding of dissimilar magnesium alloys and aluminum alloys is an important issue because
of their increasing applications in industries. In this document, the research and progress of …
of their increasing applications in industries. In this document, the research and progress of …
High-velocity impact welding process: a review
H Wang, Y Wang - Metals, 2019 - mdpi.com
High-velocity impact welding is a kind of solid-state welding process that is one of the
solutions for the joining of dissimilar materials that avoids intermetallics. Five main methods …
solutions for the joining of dissimilar materials that avoids intermetallics. Five main methods …
Investigation of collision surfaces and weld interface in magnetic pulse welding of dissimilar Al/Cu sheets
M Sarvari, A Abdollah-zadeh… - Journal of Manufacturing …, 2019 - Elsevier
Abstract Magnetic Pulse Welding (MPW) is an essential procedure for joining of dissimilar
metals. The high velocity collision and jetting are the most important aspects of MPW …
metals. The high velocity collision and jetting are the most important aspects of MPW …
[HTML][HTML] Depiction of interfacial morphology in impact welded Ti/Cu bimetallic systems using smoothed particle hydrodynamics
Numerical simulations of high-velocity impact welding are extremely challenging due to the
coupled physics and highly dynamic nature of the process. Thus, conventional mesh-based …
coupled physics and highly dynamic nature of the process. Thus, conventional mesh-based …
Microstructure and mechanical properties of dissimilar welded Mg–Al joints by ultrasonic spot welding technique
VK Patel, SD Bhole, DL Chen - Science and Technology of …, 2012 - journals.sagepub.com
Dissimilar spot welds of magnesium–aluminium alloy were produced via a solid state
welding process, ie ultrasonic spot welding, and a sound joint was obtained under most of …
welding process, ie ultrasonic spot welding, and a sound joint was obtained under most of …
Interfacial microstructure and mechanical properties of the Al/Ti joint by magnetic pulse welding
J Xie, W Zhang, Y Chen, L Zhang, L Yin, T Zhang… - Materials …, 2022 - Elsevier
Magnetic pulse welding (MPW) had attracted widespread attention due to its advantages on
joining dissimilar metals. In this study, the joints of Al 1060/Ti-6Al-4 V dissimilar at different …
joining dissimilar metals. In this study, the joints of Al 1060/Ti-6Al-4 V dissimilar at different …
[HTML][HTML] Microstructure characteristics and mechanical properties of Al/Mg joints manufactured by magnetic pulse welding
C Zhu, S Xu, W Gao, Y Meng, S Lin, L Dai - Journal of Magnesium and …, 2023 - Elsevier
The effective connection of 1050 Al and AZ31 Mg was realized by magnetic pulse welding.
The maximum tensile-shear force of the dissimilar Al/Mg metal lap joint reached 97% of that …
The maximum tensile-shear force of the dissimilar Al/Mg metal lap joint reached 97% of that …