Table of Contents
SP-247—1
Development of Self-Consolidating Concrete for Prestressed Bridge Beams
by E.P. Koehler and D.W. Fowler
SP-247—2
Applicability of Standard Equations for Predicting Mechanical Properties of SCC
by H.N. Atahan, D. Trejo, and M.D. Hueste
SP-247—3
Effect of Admixture Combination on Top-Bar Effect of Highly Flowable and Self-Consolidating Concrete Mixtures
by K.H. Khayat, E.K. Attiogbe, and H.T. See
SP-247—4
Improving Precast Operations in Sweden Through the Application of Self-Consolidating Concrete
by R.C. Lewis and J. Larsson
SP-247—5
Shear Characteristics of Self-Consolidating Concrete for Precast Prestressed Concrete Members
by Y.H. Kim, D. Trejo, and M.D. Hueste
SP-247—6
Structural Behavior and Field-Monitoring of SCC Prestressed Box Beams for Demonstration Bridge
by R. Burgueño and D.A. Bendert
SP-247—7
Experimental Study of Prestress Land and Camber in High-Strength SCC Beams
by S.P. Gross, J.R. Yost, and E. Gaynor
SP-247—8
Prestress Losses in Beams Cast with Self-Consolidating Concrete
by E.D. Ruiz, B.W. Staton, N.H. Do, and W. Micah Hale
SP-247—9
Effect of SCC Mixture Proportioning on Trasnfer and Development Length of Prestressing Strand
by R. Burgueño and M. Haq
SP-247—10
Evaluation of Bond Properties in Self-Consolidating Prestressed Beams
by E. Salcedo Rueda and A.J. Schokker
SP-247—11
Bond Strength and Shear Capacity of Prestressed Beams Made of SCC
by J. Hegger, N. Will, and S. Bülte
SP-247—12
Time-Dependent Behavior of Full-Scale Self-Consolidating Concrete Precast Prestressed Girders
by B. Erkmen, C.K. Shield, and C.E. French