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    On Variational Principles in Geometrically Nonlinear Theory of Viscoelasticity
    关于几何非线性粘弹理论的变分原理
    MINIMUM PRINCIPLES IN THE LINEAR DYNAMIC THEORY OF VISCOELASTICITY
    关于线性粘弹性动力学的最小值原理
    Applying the Theory of Viscoelasticity to Evaluate Thermal Stability of Asphalt Mixtures
    用粘弹性理论评价沥青混合料的高温稳定性
    Two variational principles in geometrically nonlinear theory of viscoelasticity arc proposed with one in full variable form and the other in incremental form.
    本文提出几何非线性粘弹理论的两个变分原理,其一是全量形式的,其二是增量形式的.
    The analogic conditions applied to model experiment are generally presented in this paper, according to the linear theory of viscoelasticity and satifying the Boltzmann's principle of superposition and further discussed for creep of frozen soils.
    从线性粘弹性理论出发,在满足Boltzmann叠加原理的情况下,给出了模型实验应满足的一般相似条件。
    Based on the theory of viscoelasticity, BURGERS model has been used to simulate the viscoelasticity property of asphalt mixtures. The nonlinear program model confirming the viscoelasticity parameters is put forward and the Levenberg-Marquardt method of this mathematical model is given.
    以粘弹性力学理论为基础 ,采用Burgers模型模拟直接拉伸试验测定沥青混合料的粘弹性特性 ,提出了粘弹性参数确定的非线性规划数学模型 ,并给出该数学模型的Levenberg-Marquardt求解方法。
    A Statistical Theory of Viscoelasticity and Its Application for Styrene-Diene Block Copolymers-Thermoplastic Elastomers Dissertation
    苯乙烯—二烯嵌段共聚物热塑性弹性体的粘弹性统计理论及其应用
    New Variational Principles Using Laplace Transforms in the Linear Dynamic Theory of Viscoelasticity
    线粘弹性动力学中Laplace变换形式的各种新的变分原理
    THE GENERAL THEORY OF VISCOELASTICITY UNDER NONCONSTANT TEMPERATURE STATES
    变温粘弹性的一般理论
    Advance on Theory of Viscoelasticity
    关于粘弹性力学的一些进展
    From the numerical simulation results, we can draw the following conclusions:(1) The absorption and attenuation are adequately taken into account in the theory of viscoelasticity, which explain the difference between theoretical data sets and observed ones, rather the classical elastic theory.
    通过模拟得到了下面几点认识和结论:粘弹性介质充分了考虑了实际介质对地震波的吸收衰减作用,合理的解释了经典弹性波理论不能解释的预期地震记录同实际接收的地震记录之间的差异,使理想介质理论研究向实际介质理论研究前进了一步。
 

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