DOI QR코드

DOI QR Code

탄소성 유한요소해석시 2차원 유한요소 밀도에 대한 반복하중이 작용하는 노치부의 변형률의 민감도 분석

Sensitivity Analysis of Strain on Notches under Cyclic Loading to 2-D Finite Element Density in Elasto-Plastic Finite Element Analysis

  • 김종성 (세종대학교 양자 원자력공학과) ;
  • 장현수 (세종대학교 대학원 양자 원자력공학과)
  • 투고 : 2020.12.30
  • 심사 : 2021.02.17
  • 발행 : 2021.06.30

초록

This paper presents sensitivity analysis results of strain on notches under cycling loading to 2-D finite element density considering plasticity. Cylindrical notched specimens having some stress concentrations were modeled with 2-D axisymmetrical finite element having various finite element densities. Elasto-plastic finite element analysis was performed for the various finite element models subjected to cycling loading considering plasticity. The finite element analysis results were compared to investigate sensitivity of the finite element analysis variables such as von-Mises effective stress, accumulated equivalent plastic strain, and equivalent plastic strain to 2-D finite element density. As a result of the comparison, it was found that the accumulated equivalent plastic strain is more sensitive than the others whereas the von-Mises effective stress is much less sensitive.

키워드

과제정보

본 연구는 2018년도 한국연구재단(NRF)의 지원을 받아 수행한 연구과제(2018M2A8A4084016)의 결과입니다.

참고문헌

  1. 2016, weather center, http://www.weather.go.kr
  2. Masashi Hirano, Taisuke Yonomoto, Masahiro Ishigaki, Norio Watanabe, Yu Maruyama, Yasuteru Sibamoto, Tadashi Watanabe, Kiyofumi Moriyama, 2012, "Insights from review and analysis of the Fukushima Dai-ichi accidents", Journal of Nuclear Science and Technology, Vol. 49, No. 1, pp. 1-17, doi:10.1080/18811248.2011.636538
  3. Masaki Morishita, Akihito Otani, Izumi Nakamur, Tomoyoshi Watakabe, 2019, "A JSME Code Case on Piping Seismic Design Based on Inelastic Response Analysis and Strain-Based Fatigue Criteria", Journal of Pressure Vessel Technology-Transactions of the ASME, Vol. 142, No. 2, doi:10.1115/ 1.4045674
  4. Gyeong-Hoi Koo, Jong-Sung Kim, Yun-Jae Kim, 2020, "Feasibility Study on Strain-Based Seismic Design Criteria for Nuclear Components", Energies, MDPI, Open Access Journal, Vol. 13, No. 17, pp. 1-20, doi:10.3390/en13174435
  5. Jong-Sung Kim, Jun-Young Kim, 2020, "Simplified elastic-plastic analysis procedure for strain-based fatigue assessment of nuclear safety class 1 components under severe seismic loads", Nuclear Engineering and Technology, Vol. 52, Iss. 12, pp. 2918-2927, doi:10.1016/j.net.2020.05.008
  6. Tae-Kwang Song, Hong-yeol Bae, Yun-Jae Kim, Kyoung-Soo Lee and Chi-Yong Park, 2008, "Sensitivity Analysis of Finite Element Method for Estimating Residual Stress of Dissimilar Metal Multi-Pass Weldment in Nuclear Power Plant", KSME, Vol. A-32, No. 9, pp. 770-781, doi::10.3795/KSME-A.2008.32.9.770
  7. Hong-Yeol Bae, Ju-Hee Kim, Yun-Jae Kim, Chang-Young Oh, Ji-Soo Kim, Sung-Ho Lee and Kyoung-Soo Lee, 2012, "Sensitivity Analysis of Finite Element Parameters for Estimating Residual Stress of J-Groove Weld in RPV CRDM Penetration Nozzle", KSME, Vol. A-36, No. 10, pp. 1115-1130, doi:10.3795/KSME-A.2012. 36.10.1115
  8. Pawel Kaldunski, Leon Kukielka, 2008, "The sensitivity analysis of the drawpiece response on the finite element shape parameter", PAMM, Vol. 8, No. 1, pp. 10725- 10726, doi:10.1002/pamm.200810725
  9. Dassault Systems, ABAQUS Version 6.16, User's Manuals, 2016
  10. Jin-Weon Kim, 2021, "Experiment and Evaluation of Repetitive Properties of Representative Equipment Materials for Elevated Seismic Performance", Sejong University, Seoul
  11. ASME B&PV Code, Sec.II, Part D, 2019, "Properties Material", American Society of Mechanical Engineers, NY