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Volume 4 Issue 11
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Electromagnetic Crimping: Green Pulse Technology Forming

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Conventional forming processes suffer from various environmental issues apart from technical limitations like high working temperatures, heavy structures and especially environment pollution. There is a great deal of urgency to develop a process that could form the components without harming environment and still has better technological capabilities. Electromagnetic crimping is the answer to this urgency. It is based on Lorentz force, working with plastic deformation, without any chemical bonding, mechanical contact or fasteners. The electromagnetic pulse technology provides non-contact processes for joining, welding, forming and cutting of metals by application of strong, short pulsed magnetic fields. Electromagnetic pulse technology crimping improves formability and forming can be combined with joining & assembling with dissimilar components including glass, plastic, composites and other metals with close tolerances. It also reduces tooling costs. The foremost advantage is that mechanical contact with the workpiece is not required, this avoids surface contamination and tooling marks. And all these advantages can be obtained at ambient temperatures. Due to these advantages and reduced use of lubricants, it promotes clean room condition and green forming, which is the need of an hour to reduce environment pollution. The present volume of this research presents the unique and innovative approach of use of Electromagnetic crimping for joining process.

Key Words

Electromagnetic Pulse Technology, Crimping, Lorentz force

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"Electromagnetic Crimping: Green Pulse Technology Forming", International Journal of Emerging Technologies and Innovative Research ( | UGC and issn Approved), ISSN:2349-5162, Vol.4, Issue 11, page no. pp176-178, November-2017, Available at : &

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Published Paper ID: JETIR1711032
Registration ID: 170851
Published In: Volume 4 | Issue 11 | Year November-2017
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Page No: 176-178
ISSN Number: 2349-5162

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(Volume 5 | Issue 1 | January 2018 |Impact factor 5.87)

Call For Paper | Volume 5 | Issue 1 | Impact factor 5.87

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