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Stress-strain characteristics of cohesionless granular materials subjected to statically applied homogenous loads in an open system

机译:在开放系统中静态施加均匀载荷的无粘性颗粒材料的应力 - 应变特性

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摘要

A general stress-strain relationship in incremental and invariant form is derived for sand on the basis of experimental evidence. The resulting expression does not include the yield condition but makes allowance for the direction of loading and the state of stress. Two new modified and dimensionless invariant functions are introduced and a detailed description and classification of stress paths presented. A new first yield criterion for sand stressed to yield along one stress path is developed from experimental evidence. The friction angle in triaxial compression was minimum and 14[degrees] less than that in triaxial extension. The Mohr-Coulomb yield criterion extended to three dimensions is rejected.ududEmphasis is placed on the importance of obtaining homogeneous stress in physical experiments. A new spherical compression apparatus was developed to study the behavior of sand under spherical compression. Disadvantages of former apparatuses were largely overcome by elimination of frictional loading, and a homogeneous state of stress was obtained. A new stress controlled three-dimensional compression apparatus capable of applying principal stresses to a rectangular, plate sample was developed to study the behavior of sand under a general stress state, particularly under deviatoric stress. This apparatus provided for the independent measurement of volumetric strain and allowed for the development of considerable deformation in obtaining yield.
机译:根据实验证据,得出了沙子的增量和不变形式的一般应力-应变关系。所得表达式不包括屈服条件,但允许加载方向和应力状态。介绍了两个新的修改的无量纲不变函数,并给出了应力路径的详细描述和分类。从实验证据中得出了一种新的砂岩第一屈服准则,该应力准则是沿一条应力路径屈服。三轴压缩时的摩擦角最小,比三轴延伸时的摩擦角小14°。拒绝将Mohr-Coulomb屈服准则扩展到三个维度。 ud ud着重强调了在物理实验中获得均匀应力的重要性。开发了一种新的球形压缩装置,以研究砂子在球形压缩下的行为。通过消除摩擦载荷在很大程度上克服了以前设备的缺点,并获得了均匀的应力状态。开发了一种能够将主应力施加到矩形板样品上的新型应力控制三维压缩设备,以研究砂在一般应力状态下,特别是在偏应力下的行为。该设备提供了体积应变的独立测量,并允许在获得屈服时发生相当大的变形。

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    Bell James Melvin;

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  • 年度 1965
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