Structural Concrete 01/2016 free sample copy

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S.-J. Han/D. H. Lee/S.-H. Cho/S.-B. Ka/K. S. Kim · Estimation of transfer lengths in precast pretensioned concrete members based on a modified thick-walled cylinder model

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Length of Pretensioning Strand. PCI Journal, 1993, 38, No. 3, pp. 52–66. Oh, B. H., Kim, E. S.: Realistic Evaluation of Transfer Lengths in Pretensioned, Prestressed Concrete Members. ACI Structural Journal, 2000, 97, No. 6, pp. 821–830. Oh, B. H., Lim, S. N., Choi, Y. C.: Finite Element Analysis of Transfer Length in Pretensioned Prestressed Concrete Members. Journal of the Korea Concrete Institute, 2004, 16, No. 3, pp. 293–302. Guyon, Y.: Pretensioned Concrete: Theoretical and Experimental Study, Paris, 1953. Den Uijl, J. A.: Bond Modelling of Prestressing Strand. Bond and Development of reinforcement – A tribute to Dr. Peter Gergely, SP-180-7, American Concrete Institute, Farmington Hills, 1998, pp. 145–169. Lopes, S. M. R., do Carmo, R. N. F.: Bond of Prestressed Strands to Concrete: Transfer Rate and Relationship between Transfer Length and Tendon Draw-in. Structural Concrete, 2002, 3, No. 3, pp. 117–126. Brooks, M. D., Gerstle, K. H., Logan, D. R.: Effect of Initial Strand Slip on the Strength of Hollow-Core Slabs. PCI Journal, 1988, 33, No. 1, pp. 90–111. Russell, B. W., Burns, N. H.: Measured Transfer Lengths of 0.5 and 0.6 in. Strands in Pretensioned Concrete. PCI Journal, 1996, 44, No. 5, pp. 44–65. Logan, D. R.: Acceptance Criteria for Bond Quality of Strand for Pretensioned Prestressed Concrete Applications. PCI Journal, 1997, 42, No. 2, pp. 52–90. Steinberg, E., Beier, J. T., Sargand, S.: Effects of Sudden Prestress Force Transfer in Pretensioned Concrete Beams. PCI Journal, 2001, 46, No. 2, pp. 64–75. Wan, B., Harries, K. A., Petrou, M. F.: Transfer Length of Strands in Prestressed Concrete Piles. ACI Structural Journal, 2002, 99, No. 5, pp. 577–585. Olesniewicz, A.: Statistical Evaluation of Transmission Length of Strand, Research and Design Centre for Industrial Building (BISTYP), Warsaw, 1975. Jonsson, E.: Anchorage of Strands in Prestressed Extruded Hollow Core Slabs. Proc. of Intl. Symp. on Bond in Concrete: From Research to Practice, Riga Technical University and CEB (eds.), Riga, Latvia, 1992, pp. 2.20–2.28. Marin, L. D., Scott, N.: Development of Prestressing Strand in Pretensioned Members. ACI Journal, 1976, 73, No. 8, pp. 453–456. Hanson, N., Kaar, P.: Flexural Bond Tests of Pretensioned Hollow Core units. ACI Journal, 1959, 55, No. 7, pp. 783– 803. Zia, P., Mostafa, T.: Development Length of Prestressing Strand. PCI Journal, 1977, 22, No. 5, pp. 54–65. Russell, B. W., Burns, N. H.: Measurement of Transfer Lengths on Pretensioned Concrete Elements. Journal of Structural Engineering, ASCE, 1997, 123, No. 5, pp. 541–549. Oh, B. H., Kim, E. S., Choi, Y. C.: Theoretical Analysis of Transfer Lengths in Pretensioned Prestressed Concrete Members. Journal of Engineering Mechanics, ASCE, 2006, 132, No. 10, pp. 1057–1066. Han, S. J., Lee, D. H., Kim, K. S., Seo, S. Y., Moon, J. H., Monteiro, P. J. M.: Degradation of Flexural Strength in Reinforced Concrete Members Caused by Steel Corrosion. Construction and Building Materials, 2014, 54, No. 1, pp. 572– 583. Bhargava, K., Ghosh, A. K.: Analytical model of corrosioninduced cracking of concrete considering the stiffness of reinforcement. Structural Engineering and Mechanics, 2003, 16, No. 6, pp. 749–769. Burgueño, R., Sun, Y.: Stress transfer characteristics of sheathed strand in prestressed concrete beams: computational study. PCI Journal, 2014, 59, No. 3, pp. 95–109.

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32. Wang, X. H., Liu, X. L.: Modeling bond strength of corroded reinforcement without stirrups. Cement and Concrete Research, 2004, 34, No. 8, pp. 1331–1339. 33. Tepfers, R.: Cracking of Concrete Cover Along Anchored Deformed Reinforcing Bars. Magazine of Concrete Research, 1979, 31, No. 106, pp. 3–12. 34. Laldji, S., Young, A. G.: Bond between Steel Strand and Cement Grout in Ground Anchorages. Magazine of Concrete Research, 1988, 31, No. 106, pp. 3–12. 35. Arab, A. A., Badie, S. S., Manzari, M. T.: A Methodological Approach for Finite Element Modeling of Pretensioned Concrete Members at the Release of Pretensioning. Engineering Structures, 2011, 33, No. 6, pp. 1918–1929. 36. Park, H., Din, Z. U., Cho, J. Y.: Methodological Aspects in the Measurement of Strand Transfer Length in Pretensioned Concrete. ACI Structural Journal, 2012, 109, No. 5, pp. 625– 634. 37. Thomas, E. C., David, W. J., Paul, Z.: Transfer Length of Epoxy-Coated Prestressing Strand. ACI Materials Journal, 1990, 87, No. 3, pp. 193–203.

Sun-Jin Han Graduate Student Department of Architectural Engineering University of Seoul 163 Siripdaero, Dongdaemun-gu Seoul 130-743, Korea Tel: 82-2-6490-5576 Fax: 82-2-6490-2749 gkstjswls12@uos.ac.kr

Deuck Hang Lee, Ph.D. Research Scholar Department of Civil and Environmental Engineering University of Illinois at Urbana-Champaign 205 N. Mathews Ave. Urbana Illinois 61801, United States Tel : 1-618-380-1066 Fax: 82-2-6490-2749 dlemrgod@illinois.edu

Sang-Heum Cho Graduate Student Department of Architectural Engineering University of Seoul 163 Siripdaero, Dongdaemun-gu Seoul 130-743, Korea Tel: 82-2-6490-5576 Fax: 82-2-6490-2749 ohhoi88@naver.com

Soon-Beum Ka Graduate Student Department of Architectural Engineering University of Seoul 163 Siripdaero, Dongdaemun-gu Seoul 130-743, Korea Tel: 82-2-6490-5576 Fax: 82-2-6490-2749 envclea1@uos.ac.kr

Kang Su Kim, Ph.D. Professor Department of Architectural Engineering University of Seoul 163 Siripdaero, Dongdaemun-gu Seoul 130-743, Korea Tel: 82-2-6490-2762 Fax: 82-2-6490-2749 kangkim@uos.ac.kr


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Structural Concrete 01/2016 free sample copy by Ernst & Sohn - Issuu