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Bulletin of the Korean Chemical Society
Article

Study on the Cause and Mechanism of Repeating Noise According to the Curing Conditions of Electrodeposition Coating

SungUk Choi

Body & Trim Development Team, Namyang R&D Center, Hyundai Motor Company, Gyenggi‐do, 445‐706 Republic of Korea

These authors contributed equally to this research.Search for more papers by this author
DongUk Lee

Department of Industrial Chemistry, Pukyong National University, Busan, 608‐739 Republic of Korea

These authors contributed equally to this research.Search for more papers by this author
YongSung Kwon

Body & Trim Development Team, Namyang R&D Center, Hyundai Motor Company, Gyenggi‐do, 445‐706 Republic of Korea

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NamKyu Lee

Body & Trim Development Team, Namyang R&D Center, Hyundai Motor Company, Gyenggi‐do, 445‐706 Republic of Korea

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MyungJun Moon

Body & Trim Development Team, Namyang R&D Center, Hyundai Motor Company, Gyenggi‐do, 445‐706 Republic of Korea

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MinYoung Shon

Corresponding Author

E-mail address: myshon@pknu.ac.kr

Body & Trim Development Team, Namyang R&D Center, Hyundai Motor Company, Gyenggi‐do, 445‐706 Republic of Korea

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First published: 22 March 2018
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Abstract

In this study, methods and specimens were developed and evaluated to determine the cause of noise resulting from electrodeposition coating penetration. The noise was evaluated using various coating curing temperatures and ambient temperatures. The electrodeposition coating penetrating the gaps exhibited repeating contact, and repeating noise was observed. As a result, it was confirmed that electrodeposition coating undergoes insufficient curing at curing temperatures of 150°C or less. Furthermore, the adhesion strength of the electrodeposition coating surface tends to increase with decreasing curing temperature, thereby increasing the noise magnitude. Consequently, noise is generated by electrodeposition coating penetrating gaps when the coating surfaces are separated due to the stickiness caused by insufficient curing.