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    Viscoelastic Tension-Compression Nonlinearity in Asphalt Concrete

    Source: Journal of Materials in Civil Engineering:;2015:;Volume ( 027 ):;issue: 012
    Author:
    Eyal Levenberg
    DOI: 10.1061/(ASCE)MT.1943-5533.0001319
    Publisher: American Society of Civil Engineers
    Abstract: A new one-dimensional (1D) viscoelastic creep formulation is proposed for modeling the recoverable deformation component in asphalt concrete (AC). The formulation is designed to accommodate different tensile and compressive properties in analogy with bimodular elasticity. It is structured as a Volterra equation of the second kind with a kernel that alternates between tensile and compressive compliances based on the sign of the viscoelastic (VE) strain. If the response is only in one direction, or if the viscoelastic properties are identical in both directions, the model degenerates to the linear Boltzmann superposition. As a demonstrative application, the theory was utilized to match the response of an asphalt specimen exposed to several load–unload–rest sequences in uniaxial tension–compression. It was found that two dissimilar creep functions were needed to achieve excellent reproducibility. At short times the two were almost overlapping while for longer times they departed such that the compliance associated with compression was lower than the tension-related compliance; this finding is in tune with previously reported experimental evidence. The new theory is deemed capable of correctly simulating viscoelastic tension–compression nonlinear behavior.
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      Viscoelastic Tension-Compression Nonlinearity in Asphalt Concrete

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    contributor authorEyal Levenberg
    date accessioned2017-05-08T22:12:49Z
    date available2017-05-08T22:12:49Z
    date copyrightDecember 2015
    date issued2015
    identifier other39866953.pdf
    identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/73800
    description abstractA new one-dimensional (1D) viscoelastic creep formulation is proposed for modeling the recoverable deformation component in asphalt concrete (AC). The formulation is designed to accommodate different tensile and compressive properties in analogy with bimodular elasticity. It is structured as a Volterra equation of the second kind with a kernel that alternates between tensile and compressive compliances based on the sign of the viscoelastic (VE) strain. If the response is only in one direction, or if the viscoelastic properties are identical in both directions, the model degenerates to the linear Boltzmann superposition. As a demonstrative application, the theory was utilized to match the response of an asphalt specimen exposed to several load–unload–rest sequences in uniaxial tension–compression. It was found that two dissimilar creep functions were needed to achieve excellent reproducibility. At short times the two were almost overlapping while for longer times they departed such that the compliance associated with compression was lower than the tension-related compliance; this finding is in tune with previously reported experimental evidence. The new theory is deemed capable of correctly simulating viscoelastic tension–compression nonlinear behavior.
    publisherAmerican Society of Civil Engineers
    titleViscoelastic Tension-Compression Nonlinearity in Asphalt Concrete
    typeJournal Paper
    journal volume27
    journal issue12
    journal titleJournal of Materials in Civil Engineering
    identifier doi10.1061/(ASCE)MT.1943-5533.0001319
    treeJournal of Materials in Civil Engineering:;2015:;Volume ( 027 ):;issue: 012
    contenttypeFulltext
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