Experimental and Analytical Investigation of Full depth Precast Deck Panels on Prestressed I girders

This book PDF is perfect for those who love Bridges genre, written by Sean Robert Sullivan and published by Unknown which was released on 03 May 2024 with total hardcover pages 81. You could read this book directly on your devices with pdf, epub and kindle format, check detail and related Experimental and Analytical Investigation of Full depth Precast Deck Panels on Prestressed I girders books below.

Experimental and Analytical Investigation of Full depth Precast Deck Panels on Prestressed I girders
Author : Sean Robert Sullivan
File Size : 47,8 Mb
Publisher : Unknown
Language : English
Release Date : 03 May 2024
ISBN : OCLC:285464451
Pages : 81 pages
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Experimental and Analytical Investigation of Full depth Precast Deck Panels on Prestressed I girders by Sean Robert Sullivan Book PDF Summary

A bridge with precast bridge deck panels was built at the Virginia Tech Structures Laboratory to examine constructibility issues, creep and shrinkage behavior, and strength and fatigue performance of transverse joints, different types of shear connectors, and different shear pocket spacings. The bridge consisted of two AASHTO type II girders, 40 ft long and simply supported, and five precast bridge deck panels. Two of the transverse joints were epoxied male-female joints and the other two transverse joints were grouted female-female joints. Two different pocket spacings were studied: 4 ft pocket spacing and 2 ft pocket spacing. Two different shear connector types were studied: hooked reinforcing bars and a new shear stud detail that can be used with concrete girders. The construction process was well documented. The changes in strain in the girders and deck were examined and compared to a finite element model to examine the effects of differential creep and shrinkage. After the finite element model verification study, the model was used to predict the long term stresses in the deck and determine if the initial level of post-tensioning was adequate to keep the transverse joints in compression throughout the estimated service life of the bridge. Cyclic loading tests and flexural strength tests were performed to examine performance of the different pocket spacings, shear connector types and transverse joint configurations. A finite element study examined the performance of the AASHTO LRFD shear friction equation for the design of the horizontal shear connectors. The initial level of post-tensioning in the bridge was adequate to keep the transverse joints in compression throughout the service life of the bridge. Both types of pocket spacings and shear connectors performed exceptionally well. The AASHTO LRFD shear friction equation was shown to be applicable to deck panel systems and was conservative for determining the number of shear connectors required in each pocket. A recommended design and detailing procedure was developed for the shear connectors and shear pockets.

Experimental and Analytical Investigation of Full depth Precast Deck Panels on Prestressed I girders

A bridge with precast bridge deck panels was built at the Virginia Tech Structures Laboratory to examine constructibility issues, creep and shrinkage behavior, and strength and fatigue performance of transverse joints, different types of shear connectors, and different shear pocket spacings. The bridge consisted of two AASHTO type II girders, 40

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Full depth Precast Concrete Bridge Deck Panel Systems

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Experimental Evaluation of Full Depth Precast prestressed Concrete Bridge Deck Panels

A literature review concerning the objectives of the project was completed. A significant number of published papers, reports, etc., were examined to determine the effectiveness of full depth precast panels for bridge deck replacement. A detailed description of the experimental methodology was developed which includes design and fabrication of the

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