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Evaluation of the Superiority of Lightweight-Aggregate-Concrete Prestressed Box Girders in Terms of Durability and Prestress Loss. | LitMetric

Evaluation of the Superiority of Lightweight-Aggregate-Concrete Prestressed Box Girders in Terms of Durability and Prestress Loss.

Materials (Basel)

Department of Civil Engineering and Geomatics, Cheng Shiu University, No. 840 Chengching Road, Niaosong District, Kaohsiung 83347, Taiwan.

Published: September 2023

AI Article Synopsis

  • The study compared durability and prestress loss in prestressed box girders made from normal-weight concrete (NC) and lightweight aggregate concrete (LWC) using synthetic lightweight aggregates.
  • Testing included basic mechanical properties and durability indicators, showing that LWC has better resistance to air, water, and chloride ion penetration due to improved bonding at the aggregate-cement interface.
  • Results indicated that LWC experienced lower prestress loss (4.6% and 4.9%) compared to NC (8.1%), demonstrating that LWC is more effective in maintaining prestress under the same environmental conditions.

Article Abstract

This case study aimed to compare the differences in the durability and prestress loss between normal-weight-concrete (NC) and lightweight-aggregate-concrete (LWC) prestressed box girders, which were constructed at the same time in the same area, so as to verify the superiority of using synthetic lightweight aggregate (LWA) made from reservoir sediments in prestressed bridges. For the NCs and LWCs used in the prestressed box girders, the basic mechanical properties (compressive strength, flexural strength, splitting tensile strength, and elastic modulus) were tested, as well as the durability properties (chloride ion penetration resistance and rapid chloride permeability). Then, through the prestress-monitoring system, the prestress losses of the two groups of prestressed box girders were tracked. The results of the durability test confirmed that LWC can inhibit the penetration of air, water, and chloride ions by strengthening the interfacial transition zone between the aggregate and the cement paste, thereby improving its durability. Moreover, the magnetic-flux prestress loss of the NC prestressed box girder reached 8.1%. In contrast, the magnetic-flux prestress losses on both sides of the LWC prestressed box girder were 4.6% and 4.9%, respectively. This verified that, under the same environmental conditions, the use of LWC produced less of a prestress loss than the use of NC.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10573278PMC
http://dx.doi.org/10.3390/ma16196360DOI Listing

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