Finite element analysis and experimental verification of the mechanical performance of a novel easy-to-splice mechanical coupler
- Authors
- Chung, Sukhwan; Jang, Seongmin; Seo, Ildong; Lee, Nakyoung; Chung, Wanjin; Joun, Mansoo
- Issue Date
- Feb-2025
- Publisher
- 사단법인 한국계산역학회
- Keywords
- easy-to-splice; implicit elastoplastic FEA; mechanical coupler; pull force-stroke curve; slip distance; strength
- Citation
- Computers and Concrete, An International Journal, v.35, no.2, pp 127 - 136
- Pages
- 10
- Indexed
- SCIE
SCOPUS
- Journal Title
- Computers and Concrete, An International Journal
- Volume
- 35
- Number
- 2
- Start Page
- 127
- End Page
- 136
- URI
- https://scholarworks.gnu.ac.kr/handle/sw.gnu/78054
- DOI
- 10.12989/cac.2025.35.2.127
- ISSN
- 1598-8198
1598-818x
- Abstract
- A novel easy-to-splice mechanical coupler (EtSMC) involving a sleeve, two caps, two racks, two rack guides, and two springs is introduced; this coupler easily and tightly connects two rebars through a simple manual operation (without any tool) on a construction site. The mechanical performance (including the pull force/stroke curve of the EtSMC assembly) is experimentally examined via tensile testing in air. A finite element analysis (FEA) model that minimizes simplification of the conceptual design is presented; the spring reaction is assumed to be mechanically symmetrical. The experimental tensile test is numerically analyzed using a fully implicit elastoplastic FEA function and a multi-body treatment scheme based on the tetrahedral MINI-element technique. The predictions are in qualitatively good agreement with the experimental data in terms of both the pull force/stroke curve and the damaged regions of the racks and rack guides. Small differences between the curves can be attributed to some experimental slip between parts. Copyright © 2025 Techno-Press, Ltd.
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