콘텐츠 본문
논문 해외 국제전문학술지(SCI급) Experimental and Numerical Simulation Studied of Low-Velocity Impact Responses on Sandwich Panels for BIMODAL Tram
- 학술지 구분 국제전문학술지(SCI급)
- 게재년월 2009-03
- 저자명 Jae-Youl Lee, Kwang-Bok Shin, Jong-Cheol Jeong
- 학술지명 Advanced Composite Materials
- 발행처명 Taylor & Francis
- 발행국가 해외
- 논문언어 외국어
- 전체저자수 3
- 논문 다운로드 링크(외부) https://www.tandfonline.com/doi/abs/10.1163/156855108X385311
논문 초록 (Abstract)
This paper describes the results of experiments and numerical simulation studies on the impact and indentation damage created by low-velocity impact subjected onto honeycomb sandwich panels for application to the BIMODAL tram. The test panels were subjected to low-velocity impact loading using an instrumented testing machine at six energy levels. Contact force histories as a function of time were evaluated and compared. The extent of the damage and depth of the permanent indentation was measured quantitatively using a 3-dimensional scanner. An explicit finite element analysis based on LS-DYNA3D was focused on the introduction of a material damage model and numerical simulation of low-velocity impact responses on honeycomb sandwich panels. Extensive material testing was conducted to determine the input parameters for the metallic and composite face-sheet materials and the effective equivalent damage model for the orthotropic honeycomb core material. Good agreement was obtained between numerical and experimental results; in particular, the numerical simulation was able to predict impact damage area and the depth of indentation of honeycomb sandwich composite panels created by the impact loading.

