상세 보기
초록
Due to the structural characteristic of a double roller, the double roller can have various deformation behaviors depending on a gap block design, even if dimensions and loading conditions for the double roller are the same. Based on this feature, we propose a strategy for designing the gap block of the carbon-fiber reinforced plastic (CFRP) double roller to minimize defects (e.g., sagging and wrinkling), which can be raised during the product conveying process, with the pursue of the lightweight design. In the suggested strategy, analysis cases are first selected by considering main design parameters and engineering tolerances of the gap block, and then deformation behaviors of these selected cases are extracted using the finite element method (FEM). Here, to obtain the optimal gap block parameters that satisfy the purpose of this study, deformation deviations in the contact area are calculated and compared using the extracted deformation behaviors. Note that the contact area in this work is located between the product and the roller. As a result, through the design method of the gap block proposed in this work, it is possible to construct the CFRP double roller that can significantly decrease the defects without changing the overall sizes of the roller. A detailed method is suggested herein, and the results are evaluated in a numerical way.
키워드
- 제목
- 제품 이송 시 결함 최소화를 위한 CFRP 이중 롤러의 Gap block 설계 전략
- 제목 (타언어)
- A strategy of a gap block design in the CFRP double roller to minimize defects during the product conveyance
- 저자
- 양승지; 박영준; 김성은; 안준걸; 양현익
- 발행일
- 2024-02
- 유형
- Article
- 권
- 37
- 호
- 1
- 페이지
- 7 ~ 14