한국생산제조학회 학술지 영문 홈페이지

Current Issue

Journal of the Korean Society of Manufacturing Technology Engineers - Vol. 33 , No. 1

[ Papers ]
Journal of the Korean Society of Manufacturing Technology Engineers - Vol. 30, No. 2, pp. 111-118
Abbreviation: J. Korean Soc. Manuf. Technol. Eng.
ISSN: 2508-5107 (Online)
Print publication date 15 Apr 2021
Received 11 Dec 2020 Revised 7 Mar 2021 Accepted 16 Mar 2021
DOI: https://doi.org/10.7735/ksmte.2021.30.2.111

미세 액상실리콘 제품의 마이크로 버블 개선을 위한 금형설계
동선희a ; 손덕수a ; 이우영a, *

Mold Design for Improving the Microbubble of Fine Liquid Silicon Products
Seon-Hee Donga ; Deuk-soo Sona ; Woo-Young Leea, *
aSchool of Mechanical Engineering, Korea University of Technology and Education
Correspondence to : *Tel.: +82-41-560-1134 E-mail address: wylee@koreatech.ac.kr (Woo-Young Lee).

Funding Information ▼

Abstract

Owing to its outstanding performance and properties including weatherability, thermal stability, and chemical resistance, liquid silicon rubber (LSR) is used widely for electronics and medical products, and its application has been extended to other industries as well. A common issue found in products with fine features is microbubbles, which are heavily dependent on the molding process and mold structure. Therefore, this study suggests an optimum overflow mold type to minimize the microbubbles trapped in a product throughout a molding simulation and experimental analysis with three different types of overflow. The results show that the sample group produced with the optimum overflow type meets the standard industrial cosmetic criteria.


Keywords: Liquid silicon rubber (LSR), Injection molding, Overflow, Microbubble, Lens-angle supporter (LAS)

Acknowledgments

이 논문은 2020년도 한국기술교육대학교 교수 교육연구진흥과제 지원에 의하여 연구되었습니다.


References
1. Park, K., Park, J. H., Choi, S. R., 2002, Numerical Analysis for Injection Molding of Precision Electronics Parts using Three-dimensional Solid Elements, Trans. Mater. Process., 11:5 414-422.
2. Park, J., 2017, A Numerical Analysis Study on Design of Helical Rib Type Runner for Balanced Filling 8-cavity Injection Mold, Masteral Dissertation, Incheon National University Graduate School of Engineering, Republic of Korea.
3. Park, H. P., Cha, B. S., Lee, J. B., Kim, D. H., Kim, J. S., Rhee, B. O., 2013, Effect on Mechanical Strength by Curing Process of Liquid Silicone Rubber, Proc. Korean Soc. Precis. Eng. Spring Conf., 1539-1540.
4. Park, K. M., Kim, C. K., 2003, A Study on The Optimum Design of Multi-Cavity Molding Parts using the Runner Balance Algorithm, J. Korean Soc. Precis. Eng., 20:11 41-46.
5. Yoon, G. S., Lee, J. W., Kim, G. H., Sohn, J. I., Seo, T. I., 2012, Experimental Study on the Filling Characteristics of Liquid Silicone Rubber According to Flow Distance, Proc. Korean Soc. Manuf. Technol. Eng. Spring Conf., 170.
6. Lee, K., 2009, Development of Injection Molding and in-mold Packaging Technologies for Polymer Micro Channels, Masteral Dissertation, Seoul National University of Technology, Republic of Korea.
7. Park, S., 2016, Analysis of Pressurized Cavity on Replication of Micro-patterns with Injection Molding, Doctoral Dissertation, Seoul National University of Technology, Republic of Korea.
8. Kim, B. R., 2019, Analysis of Flow Pattern Inside Multi-cavity System in Micro Injection Molding, Doctoral Dissertation, Seoul National University of Technology, Republic of Korea.

Seon-Hee Dong

Ph.D. candidate in the School of Mechanical Engineering, Korea University of Technology and Education.Her research interest is mechanical engineering, injection molding and precision measurement.

E-mail: sunny61@koreatech.ac.kr

Deuk-soo Son

Ph.D. candidate in the School of Mechanical Engineering, Korea University of Technology and Education.His research interest is mechanical engineering.

E-mail: dsson@koreatech.ac.kr

Woo-Young Lee

Professor in the School of Mechanical Engineering, Korea University of Technology and Education.His research interest is precision manufacturing process and product design.

E-mail: wylee@koreatech.ac.kr