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Experimental Study on the Constitutive Model of the Betula platyphylla Root System

机译:白桦根系本构模型的实验研究

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The mechanisms of soil reinforcement by root system are illustrated by a series of experiments on the tensile-resistance of the root system of the Betula platyphylla in North China. By investigating parameters such as different diameters, gauge lengths, and rate of extension, complete stress-strain curve shows a straight-line relation with the root system during the initial stage. With an increase of pulling force over its elasticity limit, plasticity of shape takes place in the root system. The complete stress-strain curves gradually deviate from the straight line and reflect the highly nonlinear characteristic. The stress-strain curves reflect more non-linear elastic characteristics with an increase in the diameter. the unified math expression of resistance to tensile stress and the complete stress-strain curve is put forward according to experimental results and theoretical analysis. This paper establishes the elasto-plastic constitutive model of Betula platyphylla and provides the theoretical basis for the mechanical characteristics of its root system. The results show that the model curves are close to the experimental curves.
机译:通过对华北白桦根系抗张性的一系列实验,阐明了根系对土壤的强化机理。通过研究不同直径,规格长度和延伸率等参数,完整的应力应变曲线在初始阶段显示出与根系的直线关系。随着拉力超过其弹性极限,形状的可塑性在根部系统中发生。完整的应力-应变曲线逐渐偏离直线并反映出高度非线性的特性。应力-应变曲线随着直径的增加而反映出更多的非线性弹性特征。根据实验结果和理论分析,提出了抗拉应力和完整的应力-应变曲线的统一数学表达式。建立了白桦的弹塑性本构模型,为其根系的力学特性提供了理论依据。结果表明,模型曲线与实验曲线较为接近。

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