Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Numerical Analysis of the Load-carrying Capacity of Built-up Columns with Damaged or Missing Lacing Bars

View through CrossRef
Built-up columns with lacing bars are commonly used in old bridges. Typically, these columns consist of shaped steel members connected by riveted lacing bars. This design held the advantage of reducing steel usage, thereby lowering costs. However, these techniques have become outdated. Nevertheless, structures constructed using these methods persist today. Over time, some of these columns have experienced component loss because of ageing, damage, or corrosion. This study uses finite element analysis to determine the load-carrying capacity of built-up columns with lacing bars subjected to compressive forces. The results indicate that the loss of some lacing bars results in a 2% reduction in load-carrying capacity, while the loss of both lacing bars and rivets leads to a 5% reduction. Though the reduction may appear marginal, the presence or absence of lacing bars and rivets becomes a significant consideration in estimating the remaining load-carrying capacity. The results of this study have implications with respect to the ongoing use and maintenance of built-up columns with missing components, which has emerged as a critical concern.
Title: Numerical Analysis of the Load-carrying Capacity of Built-up Columns with Damaged or Missing Lacing Bars
Description:
Built-up columns with lacing bars are commonly used in old bridges.
Typically, these columns consist of shaped steel members connected by riveted lacing bars.
This design held the advantage of reducing steel usage, thereby lowering costs.
However, these techniques have become outdated.
Nevertheless, structures constructed using these methods persist today.
Over time, some of these columns have experienced component loss because of ageing, damage, or corrosion.
This study uses finite element analysis to determine the load-carrying capacity of built-up columns with lacing bars subjected to compressive forces.
The results indicate that the loss of some lacing bars results in a 2% reduction in load-carrying capacity, while the loss of both lacing bars and rivets leads to a 5% reduction.
Though the reduction may appear marginal, the presence or absence of lacing bars and rivets becomes a significant consideration in estimating the remaining load-carrying capacity.
The results of this study have implications with respect to the ongoing use and maintenance of built-up columns with missing components, which has emerged as a critical concern.

Related Results

Strength analysis of concrete-encased cellular steel columns
Strength analysis of concrete-encased cellular steel columns
This research investigates the compression behavior of bare cellular steel columns and concrete-encased cellular steel (CECS) columns subjected to concentric and eccentric loadings...
Performance of PSGWC-Bars and Other Rebars Reinforced Columns
Performance of PSGWC-Bars and Other Rebars Reinforced Columns
Abstract In comparison to earlier concrete structures, recent decades' structures have experienced early deterioration. The majority of the time, this is due to the severe ...
Study on the Ecological Carrying Capacity and Driving Factors of the Source Region of the Yellow River in China in the Past 30 Years
Study on the Ecological Carrying Capacity and Driving Factors of the Source Region of the Yellow River in China in the Past 30 Years
Abstract Under the influence of natural factors and human activities, the ecological environment functions in the source region of the Yellow River in China have been degra...
Enhancing structural behaviour of polypropylene fibre concrete columns longitudinally reinforced with fibreglass bars
Enhancing structural behaviour of polypropylene fibre concrete columns longitudinally reinforced with fibreglass bars
Abstract The research aims to study the behaviour of concrete columns reinforced with fibreglass as bars exposed to seawater. Firstly, hardened concrete properties a...
Numerical modeling of reinforced concrete columns strengthened by external steel collars and steel bars
Numerical modeling of reinforced concrete columns strengthened by external steel collars and steel bars
This study investigated numerical modeling for reinforced concrete columns strengthened by external hollow structural section (HSS) steel collars and external steel bars. The main ...
Load-Shortening Behavior of Damaged Tubular Columns
Load-Shortening Behavior of Damaged Tubular Columns
Abstract A simple "engineering" method was formulated for computing the axial load vs. axial shortening relationship of pin-ended tubular members damaged by a den...
Structural Behavior of Pre-Loaded Fire-Damaged RC Columns Rehabilitated with UHPC
Structural Behavior of Pre-Loaded Fire-Damaged RC Columns Rehabilitated with UHPC
This study presents an experimental investigation into the rehabilitation of fire-damaged reinforced concrete (RC) columns using Ultra-High-Performance Concrete (UHPC) under an ecc...

Back to Top