No-bolt 유한요소 모델을 이용한 효율적 볼트 최적 경계조건

Efficient Bolt Optimal Boundary Condition using the No-bolt Finite Element Model
  • 양정현
  • 정민재
  • 임성준
  • 정회인
  • 박준
  • ... 박경수
  • 외 1명

초록

This paper proposes an enhanced no-bolt modeling approach as an alternative to conventional finite element method (FEM) modeling using solid elements. The proposed model retains the accuracy of solid bolt models while significantly reducing computational cost. To validate this approach, we fastened two aluminum plates using eight bolts and measured the contact pressure between the plates using force sensors. Finite element models - including a solid bolt model, a beam model, and a no-bolt model - were developed in ANSYS and compared with experimental results to reaffirm the accuracy of the solid bolt model. Building upon this, an improved FEM analysis process and boundary conditions were applied to the conventional no-bolt model, resulting in an efficient bolted joint model that achieves fast computation with minimal error compared to the solid model. The results demonstrate the potential applicability of the proposed approach to large-scale and defense-related structures requiring multiple bolted joints. This method is expected to offer high efficiency and practical value in future analyses.

키워드

Finite Element MethodBoltPre-tensionContact Mechanics유한요소법볼트볼트 장력접촉 역학
제목
No-bolt 유한요소 모델을 이용한 효율적 볼트 최적 경계조건
제목 (타언어)
Efficient Bolt Optimal Boundary Condition using the No-bolt Finite Element Model
저자
양정현정민재임성준정회인박준강광희박경수
발행일
2025-06
저널명
한국소음진동공학회논문집
35
3
페이지
326 ~ 336