원문정보
초록
영어
In this study, tapered double cantilever beam bonded with aluminum foam composite is modelled and analyzed by finite element analysis. The bonding strength on Mode II of this structure is evaluated and investigated. In cases of inclined angles of 6°, 8° and 10°, maximum equivalent stresses occur 1.29, 1.59 and 2.6 MPa respectively at the range of forced displacement of 5 to 6 mm. And maximum reaction forces become 186, 208 and 235 N individually at this range of displacement in these cases. By the analysis result on 3 kinds of models, the maximum reaction load increases as angle of inclination of model increases. And the elapsed time to approach the maximum load and the time to disappear away become shorter. This study result can be applied into the real composite structure with aluminum foam in case that the surface bonded with adhesive is inclined. This fracture behavior can also be investigated and the impact property can be examined.
목차
1. 서론
2. 연구모델 및 경계조건
2.1 연구모델
2.2 경계설정
3. 해석결과
3.1 θ=6°인 모델에 대한 해석 결과
3.2 θ=8°인 모델에 대한 해석 결과
3.3 θ=10°인 모델에 대한 해석 결과
3.4 θ값에 대한 변위-반력 그래프 비교
4. 결론
후기
References