Browse > Article
http://dx.doi.org/10.11112/jksmi.2011.15.5.082

A Study on Shear Capacity and Behavior of Large Sized Concrete Anchorage System  

Kim, Kang Sik (한전전력연구원)
Shin, Sung Woo (한양대학교 건축공학과)
Lee, Kwang Soo (여주대학 건축공학과)
Publication Information
Journal of the Korea institute for structural maintenance and inspection / v.15, no.5, 2011 , pp. 82-91 More about this Journal
Abstract
In this study, 24 prototype specimens were tested to find out the shear behavior and strength of large anchorage system exceeding 50mm(2") in anchor bolt diameter($d_0$) and 635mm(25") in effective embedment depth($h_{ef}$) not addressed by ACI349-06 Appendix B. Test variables are anchor bolt diameter($d_0$ = 63.5, 76.2, 88.9mm), effective embedment depth($h_{ef}$=635, 762mm), and edge distance($c_1$=381, 508, 762mm). Concrete compressive strength is constant($f_{ck}$=38MPa). Test results ($V_{test}$) were overestimated by $V_{aci06}$(shear strength by ACI 349-06) and $V_{ccd}$(shear strength by CCD method). In large anchorage system exceeding 50mm(2") of anchor bolt diameter($d_0$) and 635mm(25") of anchor bolt effective embedment depth($h_{ef}$), the bolt diameter variation and effective embedment depth($h_{ef}$) has no influence on the shear strenth, But, according to the analysis results of the feature ratio on edge distance($c_1$) and anchor bolt diameter, the feature ratio become smaller, which means anchor bolt diameter is bigger, predicted ratio of test results and predicted equation is larger. It was found that anchor bolt diameter is immediate cause of deterioration in the shear capacity of large anchorage system. To improve and extend the validity of current design recommendations further theoretical and numerical work is needed.
Keywords
Large sized anchorage system; Behavior; Shear strength; CCD method;
Citations & Related Records
연도 인용수 순위
  • Reference
1 ACI 349-06, Code Requirements for Nuclear Safety Related Concrete Structures ; Appendix B Anchoring to Concrete, 2001, pp.81-88.
2 Fuchs, W. and Eligehausen, R. And Breen J. E., "Concrete Capacity Design(CCD) Approach for Fastenings to Concrete", ACI Structural Journal, vol. 92, No. 6, 1995, pp.794-802.
3 ASTM E 488-98, Standard Test Methods for Strength of Anchors in Concrete and Masonry Elements, 1998.
4 KEPRI and KOPEC Internal Report, "Pri-tests for Large-sized Cast-In-Place Anchors", 2003.
5 Eligehausen, R., "Behavior, Design and Testing of Anchorage in Cracked Concrete", ACI SP-130, 1991, pp.123-175.
6 NUREG/CR-5563, "A Technical Basis for Revision to Anchorage Criteria", 1999.