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http://dx.doi.org/10.17702/jai.2018.19.4.167

Study on the Thermal Behavior and Adhesion Properties of Polyurethane Hot Melt Adhesive via Induction Heating  

Jeon, Ho Kyyon (Korea Institute of Footwear & Leather Technology)
Park, Hyun Ju (Korea Institute of Footwear & Leather Technology)
Lee, Ji Eun (Korea Institute of Footwear & Leather Technology)
Lee, Jonh Hwan (Korea Institute of Footwear & Leather Technology)
Oh, Sang Taek (Korea Institute of Footwear & Leather Technology)
Publication Information
Journal of Adhesion and Interface / v.19, no.4, 2018 , pp. 167-172 More about this Journal
Abstract
In this study, a polyurethane hot melt adhesive was synthesized and metal particles sensitive to induction heating were added to produce an induction heating melt adhesive. The thermal behavior and adhesion characteristics of metal particles were investigated according to the kind, size and induction heating conditions. Among the various metal particles, induction heating efficiency was the best when nickel and iron were applied. Induction heating efficiency increased with decreasing metal particle size. In addition, the strength of the induction heating power of the adhesive was high and the adhesive strength was improved as the adhesive thickness was thinner.
Keywords
Polyurethane hot melt adhesive; Induction heating; Susceptor; Metal particle;
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