Detailed Study of Integral Abutment Bridges and Performance of Bridge Joints in Traditional Bridges

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ISBN 13 :
Total Pages : pages
Book Rating : 4.:/5 (964 download)

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Book Synopsis Detailed Study of Integral Abutment Bridges and Performance of Bridge Joints in Traditional Bridges by : Brooke H. Quinn

Download or read book Detailed Study of Integral Abutment Bridges and Performance of Bridge Joints in Traditional Bridges written by Brooke H. Quinn and published by . This book was released on 2016 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: Integral Abutment Bridges (IABs) are jointless bridges in which the superstructure is cast monolithically with its substructure. Eliminating expansion joints from the superstructure reduces corrosion of bridge elements that typically result from leaking joints in traditional bridges. IABs have proven to be cost effective for both construction and life-cycle analysis. As a result, they are the standard single span highway bridge of choice by the majority of State Departments of Transportation (DOTs) across the country. Despite the widespread use of these bridges, there are no uniform guidelines in place. Factors such as pile orientation, design assumptions, maximum span length, skew angle, and curvature vary widely. A study of expansion joint performance was done to investigate typical problems with joints through information collected from meetings with Massachusetts DOT as well as survey results collected from DOT personnel from nine states in and around New England. Results highlight the many issues associated with expansion joints which have resulted in the preference to construct IABs whenever possible. The Vermont Agency of Transportation (VTrans) instrumented three IABs of increasing complexity for long term monitoring and analysis of their performance. The bridges include a straight bridge with 141 ft (43 m) span, a 15 degree skew bridge with 121 ft (37 m) span, and a two-span continuous curved structure with 11.25 degrees of curvature and 221 ft (68 m) total bridge length. This dissertation presents over five years of field data. Results are compared with three-dimensional finite element model predictions. Variations in response due to skew, curvature, and field conditions are addressed. The finite element models were the basis for a parametric study investigating the effect of pile orientation on IABs of varying length and skew angle. Results highlight the factors that affect optimal pile orientation to avoid pile yielding.

Behavior of High Performance Concrete Integral Abutment Bridges

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ISBN 13 :
Total Pages : 544 pages
Book Rating : 4.:/5 (622 download)

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Book Synopsis Behavior of High Performance Concrete Integral Abutment Bridges by : David Jonathan Knickerbocker

Download or read book Behavior of High Performance Concrete Integral Abutment Bridges written by David Jonathan Knickerbocker and published by . This book was released on 2005 with total page 544 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Long Term Behavior of Integral Abutment Bridges

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ISBN 13 :
Total Pages : 3 pages
Book Rating : 4.:/5 (774 download)

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Book Synopsis Long Term Behavior of Integral Abutment Bridges by : Robert J. Frosch

Download or read book Long Term Behavior of Integral Abutment Bridges written by Robert J. Frosch and published by . This book was released on 2011 with total page 3 pages. Available in PDF, EPUB and Kindle. Book excerpt: Integral abutment bridges, a type of jointless bridge, are the construction option of choice when designing highway bridges in many parts of the country. Rather than providing an expansion joint to separate the substructure from the superstructure to account to volumetric strains, an integral abutment bridge is constructed so the superstructure and substructure are continuous. The abutment is supported by a single row of piles which must account for the longitudinal movement previously accommodated by the joints. The primary advantage of an integral abutment bridge is that it is jointless (expansion joints are eliminated) and thus reduces both upfront and overall life-cycle costs. In addition to other benefits provided by integral construction, the reduction in overall cost has led to INDOT requiring all new structures within certain geometric limitation be integral. These geometric limitations, traditionally based on engineering judgment, have been modified over time based as investigations have revealed more about the behavior of integral abutment bridges. While there has been a considerable amount of research and investigation conducted on the behavior of integral abutment bridges, information is limited on both long-term behavior and the effects of highly skewed structures. Because there is a great desire for the application of these structures to be expanded, this research serves to expand the understanding of the behavior of integral abutment structures. Additionally, updated geometric limitations are recommended along with design recommendations and recommended analysis procedures for properly modeling integral abutment behavior.

Integral Abutment Bridges

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ISBN 13 :
Total Pages : 32 pages
Book Rating : 4.3/5 (555 download)

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Book Synopsis Integral Abutment Bridges by : Jonathan Kunin

Download or read book Integral Abutment Bridges written by Jonathan Kunin and published by . This book was released on 1999 with total page 32 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Integral and Semi-Integral Bridges

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Publisher : John Wiley & Sons
ISBN 13 : 1444316370
Total Pages : 272 pages
Book Rating : 4.4/5 (443 download)

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Book Synopsis Integral and Semi-Integral Bridges by : Martin P Burke Jr

Download or read book Integral and Semi-Integral Bridges written by Martin P Burke Jr and published by John Wiley & Sons. This book was released on 2009-06-17 with total page 272 pages. Available in PDF, EPUB and Kindle. Book excerpt: Worldwide, integral type bridges are being used in greater numbersin lieu of jointed bridges because of their structural simplicity,first-cost economy, and outstanding durability. In the UK and theUS states of Tennessee and Missouri, for example, the constructionof most moderate length bridges is based on the integral bridgeconcept. The state of Washington uses semi-integral bridges almostexclusively, while, depending on subfoundation characteristics, thestate of Ohio and others use a mix of these two bridge types. Integral and Semi-Integral Bridges has been written by apracticing bridge design engineer who has spent his entire careerinvolved in the origination, evaluation and design of such bridgesin the USA, where they have been in use since the late1930’s. This work shows how the analytical complexity due tothe elimination of movable joints can be minimized to negligiblelevels so that most moderate length bridges can be easily andquickly modified or replaced with either integral or semi-integralbridges. Bridge design, construction, and maintenance engineers; bridgedesign administrators; graduate level engineering students andstructural research professionals will all find this bookexceptionally informative for a wide range of highway bridgeapplications.

Long-Term Behavior of Integral Abutment Bridges

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Publisher : Joint Transportation Research Program
ISBN 13 : 9781622600120
Total Pages : 149 pages
Book Rating : 4.6/5 (1 download)

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Book Synopsis Long-Term Behavior of Integral Abutment Bridges by : Robert J. Frosch

Download or read book Long-Term Behavior of Integral Abutment Bridges written by Robert J. Frosch and published by Joint Transportation Research Program. This book was released on 2011-08-15 with total page 149 pages. Available in PDF, EPUB and Kindle. Book excerpt: Integral abutment (IA) construction has become the preferred method over conventional construction for use with typical highway bridges. However, the use of these structures is limited due to state mandated length and skew limitations. To expand their applicability, studies were implemented to define limitations supported by rational analysis rather than simply engineering judgment. Previous research investigations have resulted in larger length limits and an overall better understanding of these structures. However, questions still remain regarding IA behavior; specifically questions regarding long-term behavior and effects of skew. To better define the behavior of these structures, a study was implemented to specifically investigate the long term behavior of IA bridges. First, a field monitoring program was implemented to observe and understand the in-service behavior of three integral abutment bridges. The results of the field investigation were used to develop and calibrate analytical models that adequately capture the long-term behavior. Second, a single-span, quarter-scale integral abutment bridge was constructed and tested to provide insight on the behavior of highly skewed structures. From the acquired knowledge from both the field and laboratory investigations, a parametric analysis was conducted to characterize the effects of a broad range of parameters on the behavior of integral abutment bridges. This study develops an improved understanding of the overall behavior of IA bridges. Based on the results of this study, modified length and skew limitations for integral abutment bridge are proposed. In addition, modeling recommendations and guidelines have been developed to aid designers and facilitate the increased use of integral abutment bridges.

Integral Bridges

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Publisher : Thomas Telford
ISBN 13 : 9780727728456
Total Pages : 178 pages
Book Rating : 4.7/5 (284 download)

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Book Synopsis Integral Bridges by : George L. England

Download or read book Integral Bridges written by George L. England and published by Thomas Telford. This book was released on 2000 with total page 178 pages. Available in PDF, EPUB and Kindle. Book excerpt: This work was commissioned by the Highways Agency to produce guidance for bridge designers by addressing the thermally induced soil/structure integration problem created by environmental changes of temperature and the associated cyclical displacements imposed on the granular backfill to the bridge abutments. It develops a better theoretical understanding of the cyclic performance, in particular the strain racheting in the backfill soil when in contact with a stiff structure. It also identifies the governing soil parameters and examines their influence in the interaction problem, develops numerical modelling procedures to predict interactive soil behaviour, and identifies and quantifies the controlling features of bridge structures relevant to the interaction problem.

Experimental and Analytical Study of Integral-abutment Bridges

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Publisher :
ISBN 13 :
Total Pages : 518 pages
Book Rating : 4.:/5 (447 download)

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Book Synopsis Experimental and Analytical Study of Integral-abutment Bridges by : Brad Harold Sayers

Download or read book Experimental and Analytical Study of Integral-abutment Bridges written by Brad Harold Sayers and published by . This book was released on 2000 with total page 518 pages. Available in PDF, EPUB and Kindle. Book excerpt: Integral-abutment bridges eliminate the expansion joints that are generally used to accommodate bridge length changes due to daily and annual temperature variations. Additional stresses and displacements due to the thermal loading are induced in these indeterminate structures that are not typically associated with bridge structures supported on pins and rollers. The goal of this research was to determine the effects of the thermal loading on two integral-abutment bridges. Extensive field monitoring was conducted on two, in-service, skewed, integral-abutment bridges located in central Iowa. The experimental program included long-term monitoring of longitudinal and transverse abutment displacements, relative displacements of the superstructure over the pier caps, strains in selected steel HP-shaped piles supporting the abutments, strains in several PC girders, bridge member temperatures, and end fixity of selected piles and girders in the abutments. The experimental temperature and displacement data was used to calibrate an ANSYS, finite-element model for each of the two monitored bridge structures. Experimental strains were verified and maximum strains due to the thermal loading were predicted for various members using the finite-element models.

Behavior of Integral Abutment Bridges

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ISBN 13 :
Total Pages : 510 pages
Book Rating : 4.:/5 (642 download)

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Book Synopsis Behavior of Integral Abutment Bridges by : Christine H. Bonczar

Download or read book Behavior of Integral Abutment Bridges written by Christine H. Bonczar and published by . This book was released on 2005 with total page 510 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Behavior of Integral Abutment Bridges

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ISBN 13 :
Total Pages : 226 pages
Book Rating : 4.:/5 (1 download)

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Book Synopsis Behavior of Integral Abutment Bridges by : Christine Bonczar

Download or read book Behavior of Integral Abutment Bridges written by Christine Bonczar and published by . This book was released on 2005 with total page 226 pages. Available in PDF, EPUB and Kindle. Book excerpt: This project investigated the seasonal behavior of integral abutment bridges through field monitoring and finite element modeling (FEM). The Orange-Wendell Bridge was used as a case study for the project. The structure was instrumented with 85 gages measuring bridge movements and forces (temperature gages, joint meters, tilt meters, strain gages, earth pressure cells, thermistors and four inclinometer casings for manual readings). Instruments were monitored by the University of Massachusetts at Amherst from January 2002 through December 2004. Both 2-D and 3-D FEM of the bridge were developed using GTSTRUDL and calibrated to the field data. Parametric FEM was performed to evaluate the influence of soil properties and construction practices on bridge behavior.

Field Testing of Integral Abutments

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ISBN 13 :
Total Pages : 24 pages
Book Rating : 4.:/5 (945 download)

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Book Synopsis Field Testing of Integral Abutments by : R. Abendroth

Download or read book Field Testing of Integral Abutments written by R. Abendroth and published by . This book was released on 1998 with total page 24 pages. Available in PDF, EPUB and Kindle. Book excerpt: Integral abutment bridges are constructed without an expansion joint in the superstructure of the bridge; therefore, the bridge girders, deck, abutment diaphragms, and abutments are monolithically constructed. The abutment piles in an integral abutment bridge are vertically orientated, and they are embedded into the pile cap. When this type of a bridge experiences thermal expansion or contraction, horizontal displacements are induced at the top of the abutment piles. The flexibility of the abutment piles eliminates the need to provide an expansion joint at the inside face to the abutments: Integral abutment bridge construction has been used in Iowa and other states for many years. This research is evaluating the performance of integral abutment bridges by investigating thermally induced displacements, strains, and temperatures in two Iowa bridges. Each bridge has a skewed alignment, contains five prestressed concrete girders that support a 30-ft wide roadway for three spans, and involves a water crossing. The bridges will be monitored for about two years.

Analysis and Design of Integral Abutment Bridges

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Publisher : Butterworth-Heinemann
ISBN 13 : 9780128031247
Total Pages : 512 pages
Book Rating : 4.0/5 (312 download)

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Book Synopsis Analysis and Design of Integral Abutment Bridges by : Mohiuddin Ali Khan

Download or read book Analysis and Design of Integral Abutment Bridges written by Mohiuddin Ali Khan and published by Butterworth-Heinemann. This book was released on 2016-11-12 with total page 512 pages. Available in PDF, EPUB and Kindle. Book excerpt: Although integral abutments bridges have been used successfully for 50 years, there are no uniform standards or policies regarding permissible bridge lengths, skews, details or design procedures. Their implementation is not an exact science, but rather a matter of intuition, experimentation and observation. Analysis and Design of Integral Abutment Bridges five-part treatment starts with a clear and rigorous with the types of Integral Abutment Bridges their common problems and code applications. This is quickly followed by applications for analytical methods and computer software including Lateral Load Analysis Techniques and Nonlinear Analysis of Integral Abutment Bridges. Next, the third part on the Methods of Design and Structural Details includes Foundations, Backfill and a section on Beam Design including steel, cast-in-place concrete beams and precast/prestressed concrete beams. With this book in hand, structural and bridge engineers will find a brief and valuable guide illustrating how these concepts are successfully applied in the real world. The latest published results on experimental, analytical, and field studies on the behaviour of integral abutment bridges and their components Unified guidelines based on activities such as the AASHTO/NCHRP joint taskforce, LRFD specs and FHWA-sponsored research study on Jointless Bridges The book contains sufficient coverage of the most critical behavioural aspects of integral abutment bridges, namely: Interaction between the foundation piles, the integral abutment, and the surrounding ground under cyclic loading due to temperature effects, dynamic earthquake loading, and shrinkage/creep Abutment displacements and associated earth pressure distribution Settlement of the approach fill

The Behavior of Integral Abutment Bridges

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Publisher :
ISBN 13 :
Total Pages : 33 pages
Book Rating : 4.:/5 (433 download)

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Book Synopsis The Behavior of Integral Abutment Bridges by : Sami Arsoy

Download or read book The Behavior of Integral Abutment Bridges written by Sami Arsoy and published by . This book was released on 1999 with total page 33 pages. Available in PDF, EPUB and Kindle. Book excerpt: This report presents findings of a literature review, a field trip, and a finite element analysis pertaining to integral bridges. The purpose of the report is to identify problems and uncertainties, and to gain insight into the interactions between the foundation piles, the integral abutment, and the surrounding ground. The field trip included visits to six bridges arranged by Mr. Park Thompson from the Staunton district. Pertinent literature is reviewed and findings are presented. Important factors identified on the basis of this review are settlement of the approach fill, loads on the abutment piles, the nature of the abutment displacements and the associated earth pressure distribution, secondary loads on the superstructure, and soil structure interaction effects. The causes of approach fill settlement and possible mitigation techniques are discussed. Recommendations for improving the performance of integral bridges are included, and actions for improvement of integral bridge behavior are suggested.

Numerical Modelling of Integral Abutment Bridges

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Publisher :
ISBN 13 :
Total Pages : 0 pages
Book Rating : 4.:/5 (134 download)

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Book Synopsis Numerical Modelling of Integral Abutment Bridges by : Abiola Odejayi

Download or read book Numerical Modelling of Integral Abutment Bridges written by Abiola Odejayi and published by . This book was released on 2021 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt: Integral Abutment Bridges (IABs) are well known for their lower construction and maintenance costs by eliminating expansion joints and bearings. The flexible piles supporting the end-span abutments offer the possibility of this expansion and contraction of the superstructure caused by the daily and seasonal changes in temperature. This thesis focuses on achieving integral bridge abutments' long-term performance by evaluating available backfill alternatives. Field results from a monitored integral abutment bridge in Fredericton, New Brunswick, were firstly used to simulate the non-linearity of backfill soils using two finite elements soil models (Mohr-Coulomb and Hardening Soil). The magnitude of lateral earth pressure from different backfill options was then estimated using the validated Hardening soil model. Further study reveals that this magnitude of lateral earth pressure increases with time, and it significantly depends on the stiffness property of the backfill material. As a result, it is suggested to be the first consideration in the design, as its maximum constant value is essential for the behaviour of integral bridge abutments.

Series: Civil Engineering

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Publisher :
ISBN 13 :
Total Pages : 7 pages
Book Rating : 4.:/5 (774 download)

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Book Synopsis Series: Civil Engineering by : Robert J. Frosch

Download or read book Series: Civil Engineering written by Robert J. Frosch and published by . This book was released on 2011 with total page 7 pages. Available in PDF, EPUB and Kindle. Book excerpt: Integral abutment bridges, a type of jointless bridge, are the construction option of choice when designing highway bridges in many parts of the country. Rather than providing an expansion joint to separate the substructure from the superstructure to account to volumetric strains, an integral abutment bridge is constructed so the superstructure and substructure are continuous. The abutment is supported by a single row of piles which must account for the longitudinal movement previously accommodated by the joints. The primary advantage of an integral abutment bridge is that it is jointless (expansion joints are eliminated) and thus reduces both upfront and overall life-cycle costs. In addition to other benefits provided by integral construction, the reduction in overall cost has led to INDOT requiring all new structures within certain geometric limitation be integral. These geometric limitations, traditionally based on engineering judgment, have been modified over time based as investigations have revealed more about the behavior of integral abutment bridges. While there has been a considerable amount of research and investigation conducted on the behavior of integral abutment bridges, information is limited on both long-term behavior and the effects of highly skewed structures. Because there is a great desire for the application of these structures to be expanded, this research serves to expand the understanding of the behavior of integral abutment structures. Additionally, updated geometric limitations are recommended along with design recommendations and recommended analysis procedures for properly modeling integral abutment behavior.

Monitoring of Integral Abutment Bridges and Design Criteria Development

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Publisher :
ISBN 13 :
Total Pages : 620 pages
Book Rating : 4.:/5 (894 download)

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Book Synopsis Monitoring of Integral Abutment Bridges and Design Criteria Development by : Jeffrey A. Laman

Download or read book Monitoring of Integral Abutment Bridges and Design Criteria Development written by Jeffrey A. Laman and published by . This book was released on 2009 with total page 620 pages. Available in PDF, EPUB and Kindle. Book excerpt: The objective of this project was to revise and make more accurate integral abutment bridge design criteria based on observed structural behavior and results of numerical parametric studies. Observed behaviors were on the basis of field monitoring conducted at 4 integral abutment bridge sites and a weather station utilizing previously installed instrumentation and data acquisition systems. Integral abutment bridge engineering data were continuously collected over the entire contract period at bridges 109, 203, 211, and 222 and compiled, processed and evaluated. Numerical parametric studies were conducted on the basis of 2D and 3D finite element models, developed and calibrated to the observed integral abutment behavior, in order to evaluate the field performance of integral abutments and establish the range of potential applications for integral abutment bridge construction in Pennsylvania.

Effect of Substructure Stiffness on the Performance of Integral Abutment Bridges Under Thermal Loads

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Publisher :
ISBN 13 :
Total Pages : 325 pages
Book Rating : 4.:/5 (89 download)

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Book Synopsis Effect of Substructure Stiffness on the Performance of Integral Abutment Bridges Under Thermal Loads by : Suhail Albhaisi

Download or read book Effect of Substructure Stiffness on the Performance of Integral Abutment Bridges Under Thermal Loads written by Suhail Albhaisi and published by . This book was released on 2012 with total page 325 pages. Available in PDF, EPUB and Kindle. Book excerpt: This research investigates the effect of substructure stiffness on the performance of short and medium span length Integral Abutment Bridges (IABs) subjected to thermal load. Various parameters such as foundation soil stiffness, pile orientation, pile type, and abutment geometry on the performance of IABs, are considered. Three-dimensional (3D) Finite Element (FE) models were developed using the FE software LUSAS to capture the behavior of IABs including the variations in displacement and rotation in the transverse direction for the various components of the superstructure as well as the substructure. Field measurements from a recently constructed two-span steel girder IAB were utilized to validate the 3D FE models. Using the validated model, a parametric study was carried out to study the effect of the above parameters on the performance of IABs under thermal loading using AASHTO-LRFD temperature ranges. The study shows that among the investigated parameters, the foundation soil stiffness stands as the most important factor that affects the performance of IABs. In general, the bridge behavior is more sensitive to the foundation soil stiffness during bridge contraction. The results from the study show considerable variations in displacement and rotation in the transverse direction for the various components of the superstructure and the substructure in relatively wide IABs. This research suggests that Prestressed Concrete Piles can be a viable alternative to steel H-Piles for short span bridges. It was also noticed that the stress level due to thermal loading in the various components of the bridge can be significantly reduced by enclosing the top part of the pile in an enclosure filled with crushed stone or loose sand. Moreover, the research suggests that the pile orientation has a minimum effect on the behavior of IABs. It also suggests that a slight increase in the abutment height can significantly reduce the displacement and rotation along the piles during bridge expansion. The research also suggests that 3D models are necessary to capture the behavior of IABs especially during bridge expansion. The research provides simple equations and charts to help bridge engineers calculate the displacement and rotation along the substructure.