DOI QR코드

DOI QR Code

3점 굽힘 하중 해석을 통한 복합재 도어 임팩트 빔 단면형상 설계개선

Design Improvement of Composite Door Section Impact Beam by Three-Point Bending Analysis

  • 하중찬 (경상대학교 대학원 융합기계공학과) ;
  • 오성하 (맥소프트(주)) ;
  • 백인석 (경상대학교 대학원 기계항공공학부, ERI) ;
  • 이석순 (경상대학교 대학원 기계항공공학부, ERI)
  • Ha, Jung-Chan (School of Convergence Mechanical Engineering, Gyeongsang National University) ;
  • Oh, Sung Ha (Maxoft Inc.) ;
  • Baek, In-Seok (School of Mechanical and Aerospace Engineering,ERI, Gyeongsang National University) ;
  • Lee, Seok-Soon (School of Mechanical and Aerospace Engineering,ERI, Gyeongsang National University)
  • 투고 : 2020.03.25
  • 심사 : 2020.05.21
  • 발행 : 2020.06.30

초록

The currently observed trend in car manufacturing is to increase energy-efficiency by producing lighter cars. This study examines the replacement of particular parts, specifically around the impact beam, with material composites 30% lighter than conventional steel currently used. The shape of the impact beam was determined as the trapezoidal cross-sectional area with central reinforcement, using three-point bending analysis. A prototype was fabricated based on the findings of our study and its performance was evaluated by the three-point bending analysis; 2 ply of aramid applied for its displacement. The performance of the final prototype for the door assembly was evaluated using a side-door strength test, which resulted to measured initial strength of 10.5 KN and intermediate strength of 15.6 KN. This research provides a promising solution for better impact beam manufacturing.

키워드

참고문헌

  1. Lee, I. C., Lee, T. K., and Jang, D. H., “Development Process of Side Impact Beam for Automotive Light-Weighting Door using Sheet Type,” Transactions of Materials Processing, Vol. 24, No. 2, pp. 130-137, 2015. https://doi.org/10.5228/KSTP.2015.24.2.130
  2. Jo, K. R., and Kang, S. J., “The Section Design of Press Door Impact Beam for Improving Bending Strength,” Transactions of KSAE, Vol. 25, No. 1, pp. 74-81, 2017. https://doi.org/10.7467/KSAE.2017.25.1.074
  3. Kim, S. Y., "Optimal Section Design for Metal Press Door Impact Beam Development by 3-Point Bending Analysis," Journal of the Korea Academia-Industrial cooperation Society 20.7, pp. 166-172, 2019. https://doi.org/10.5762/KAIS.2019.20.7.166
  4. Li, M. F., Chiang, T. S., Tseng, J. H. and Tsai, C. N., "Hot stamping of door impact beam," Procedia Engineering, Vol. 81, pp. 1786-1791, 2014. https://doi.org/10.1016/j.proeng.2014.10.233
  5. Zhang, Xu., and Zhou, Jie., "Optimization and Springback Control of Ultra-High Strength Steel Door Beam Forming Process," In Advanced Materials Research, Vol. 154, pp. 1033-1039, 2011.
  6. Shaharuzaman, M. A., Sapuan, S. M., Mansor, M. R. and Zuhri, M. Y. M., “Conceptual Design of Natural Fiber Composites as a Side-Door Impact Beam Using Hybrid Approach,” Journal of Renewable Materials, Vol. 8, No. 5, pp. 549-563, 2020. https://doi.org/10.32604/jrm.2020.08769
  7. Lim, T. S., and Lee, D. G., “Mechanically Fastened Composite Side-Door Impact Beams for Passenger Cars Designed for Shear-Out Failure Modes,” Composite Structures, Vol. 56, No. 2, pp. 211-221, 2002. https://doi.org/10.1016/S0263-8223(02)00005-3
  8. Warrior, N. A., Wilson, M. J., Brooks, R., and Rudd, C. D., "Modeling of Glass Reinforced Thermoplastic Composite Side-Impact Structures," International Journal of Crashworthiness, Vol. 6, No. 4, pp. 553-550, 2001. https://doi.org/10.1533/cras.2001.0197