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    Analytical and Experimental Investigation of Thermal Expansion Mechanism of Steel Cables

    Source: Journal of Materials in Civil Engineering:;2011:;Volume ( 023 ):;issue: 007
    Author:
    Guojun Sun
    ,
    Zhihua Chen
    ,
    Zhansheng Liu
    DOI: 10.1061/(ASCE)MT.1943-5533.0000271
    Publisher: American Society of Civil Engineers
    Abstract: Different countries adopt different values of thermal expansion coefficients for steel cables in their design specifications, which results in the inconsistency for the design of prestressed structures. Therefore, a systematic study was conducted analytically and experimentally on thermal expansion mechanism of steel cables in this paper. First, the thermal expansion mechanism of steel cables was proposed, and the evaluation approach on the linear thermal expansion coefficient of steel cables was developed. The study identified the parameters that significantly affected the thermal expansion coefficient. After that, six types of steel-wire rope cables were tested by a thermal expansion coefficient measuring instrument. The identified parameters of the thermal expansion coefficient for these steel-wire rope cables were examined to show the effectiveness of the proposed approach. The analytical analysis further showed that the linear thermal expansion coefficients of these steel cables decreased with the lay pitch of the steel wires increasing, but the coefficients increased with the diameter of the steel wires increasing. Because the explicit expression of the analytical formula for the thermal expansion coefficients was very complicated, an advanced nonlinear finite-element model (FEM) was established to evaluate the thermal expansion coefficients of steel cables under idealized conditions by using the ANSYS software package. The analysis showed that the test result, the analytical result, and the numerical result were consistent, which exhibited that the FEM was effective to simulate the expansion of steel cables. In addition, 14 types of steel cables were tested. The tested steel cables included steel-wire rope cable, steel strand cable, and steel tendon cable. The thermal expansion coefficients were as follows: the steel-wire rope cable was
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      Analytical and Experimental Investigation of Thermal Expansion Mechanism of Steel Cables

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    contributor authorGuojun Sun
    contributor authorZhihua Chen
    contributor authorZhansheng Liu
    date accessioned2017-05-08T21:55:29Z
    date available2017-05-08T21:55:29Z
    date copyrightJuly 2011
    date issued2011
    identifier other%28asce%29mt%2E1943-5533%2E0000303.pdf
    identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/66627
    description abstractDifferent countries adopt different values of thermal expansion coefficients for steel cables in their design specifications, which results in the inconsistency for the design of prestressed structures. Therefore, a systematic study was conducted analytically and experimentally on thermal expansion mechanism of steel cables in this paper. First, the thermal expansion mechanism of steel cables was proposed, and the evaluation approach on the linear thermal expansion coefficient of steel cables was developed. The study identified the parameters that significantly affected the thermal expansion coefficient. After that, six types of steel-wire rope cables were tested by a thermal expansion coefficient measuring instrument. The identified parameters of the thermal expansion coefficient for these steel-wire rope cables were examined to show the effectiveness of the proposed approach. The analytical analysis further showed that the linear thermal expansion coefficients of these steel cables decreased with the lay pitch of the steel wires increasing, but the coefficients increased with the diameter of the steel wires increasing. Because the explicit expression of the analytical formula for the thermal expansion coefficients was very complicated, an advanced nonlinear finite-element model (FEM) was established to evaluate the thermal expansion coefficients of steel cables under idealized conditions by using the ANSYS software package. The analysis showed that the test result, the analytical result, and the numerical result were consistent, which exhibited that the FEM was effective to simulate the expansion of steel cables. In addition, 14 types of steel cables were tested. The tested steel cables included steel-wire rope cable, steel strand cable, and steel tendon cable. The thermal expansion coefficients were as follows: the steel-wire rope cable was
    publisherAmerican Society of Civil Engineers
    titleAnalytical and Experimental Investigation of Thermal Expansion Mechanism of Steel Cables
    typeJournal Paper
    journal volume23
    journal issue7
    journal titleJournal of Materials in Civil Engineering
    identifier doi10.1061/(ASCE)MT.1943-5533.0000271
    treeJournal of Materials in Civil Engineering:;2011:;Volume ( 023 ):;issue: 007
    contenttypeFulltext
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