• 稳定蠕变应变本构方程作用盐岩应力偏量的函数能量温度指数函数

    The steady-state creep strain rate is a power function of deviatoric stress and exponential function of temperature and energy.

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  • 应力量,作为单个应变量为变量的张量值函数,用含有弹性量的张量多项式表示

    As a tensor-valued function with a single tensor variable, i. e. strain, stress is expressed as a tensor polynomial that contains high order elasticity tensors.

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  • 计算时,板料真实应力-应变曲线拟合强化函数型。

    In calculating, power hardening function is used as the true stress - strain curve of materials.

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  • 对于平面应变平面应力情况分别给出函数方程定解方程的具体公式。

    The detailed forms of the functional equations and the final governing equations for solutions are given for the cases of plane strain and plane stress.

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  • 应力-应变等时曲线线性回归函数相关系数高于0

    The correlative coefficients of linear regression function for isochronous stress-strain curve are all higher than 0.

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  • 理论框架下,增量的应力应变关系可以所构造的能量函数推导出来。

    Under this framework, the stress-strain relations are derived from a pseudo-elastic strain-energy density.

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  • 稳定应变本构方程作用盐岩应力偏量的函数能量温度指数函数

    The steady state creep strain rate is a power function of deviatoric stress and exponential function of temperature and energy.

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  • 通过构筑PM空间密度函数,求出饱和岩石应力应变状态方程模拟了其轴向应变—径向应变滞后回线

    Through constitution of PM space density function, the stress-strain state equation for saturated rocks has been defined and the hysteresis loops of axial stress-radial stress has been simulated.

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  • 位移函数表示应变应力分量,其解答简捷适用

    A simple and useful representation of the stress and strain components are obtained by displacement function.

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  • 小弹塑性变形范围内,首先应力写成应变项式函数形式。使相当精确拟合材料的拉伸曲线

    This paper presents the odd function with four terms which can be used to make the curve fitting of the stress-strain for various materials precisely.

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  • 文章i裂纹正交各向异性功能梯度材料沿弹性常数表达式呈指数函数变化时的应力-应变进行分析

    In this article, the fracture analysis on mode I crack of orthotropic functionally gradient materials is studied, under which the elastic constants changed exponentially along thickness of the plate.

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  • 运用解析方法量子结构进行分析,通过对积分核函数进行计算,可以得到各种量子点结构的应力应变分布

    An analytical method based on Green's function for calculating strain filed in quantum dot structures of arbitrary shape was presented.

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  • 利用一种新的橡胶材料应变函数橡胶刚性缺口接触大变形问题进行了分析。得到了楔体尖端场的方程,对渐近方程进行了数值分析,得到了尖角附近应力及变形分布。

    A new strain energy function was used to analyze a rubber wedge contact with a rigid notch. We found the asymptotic equations near wedge tip, and solved the equations with numeric method.

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  • 高温材料流动应力通常是应变总量、温度应变速率函数考虑三个因素对流动应力影响,建立了高温硬化材料的弹塑性构关系

    The present work takes account of the above influence factors on the flow stress and derives a constitutive matrix for the hot deforming materials.

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  • 本文主要解决问题两点1应力空间应变空间中表示应变密度函数方法

    In this paper, we have discussed two problems:(1) the method of representation of strain energy density function in the stress and strain spaces;

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  • 本文通过应变分布寿命影响函数分析,导出了一种适用应力疲劳应变疲劳的通用寿命模型

    A general life model adapted to both stress fatigue and strain fatigue is deduced, through analyzing the influence function of strain distribution on life.

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  • 研究表明,6061铝合金压缩塑性变形时流变应力应变速率之间的关系满足双曲正弦函数关系式

    The results show that relationship between flow stress and strain rate is applied to hyperbolic sine equation in the hot compressive deformation of 6061 aluminum alloy;

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  • 通过矩阵变换,得到隧道围岩体扰动应力应变位移解答函数

    By matrix transformation, the solutions of surrounding rocks disturbance stress, strain and displacement are obtained.

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  • 当差应力达到岩石屈服应力扩容非线性应变开始。此外,随应力水平的增加,扩容和非线性变形呈幂函数形式增加。

    The volume dilatation and the non-linear deformation of rock originated, when the differential stress equals to the yield point of rock.

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  • 利用分数阶微积分理论提出应变加载情况应力应变关系。关系式显示应力应变之间呈乘幂函数关系。

    On the basis of the fractional calculus operator theory, the stress-strain relation of soft soil under the condition of loading with constant strain rate is proposed.

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  • 利用分数阶微积分理论提出应变加载情况应力应变关系。关系式显示应力应变之间呈乘幂函数关系。

    On the basis of the fractional calculus operator theory, the stress-strain relation of soft soil under the condition of loading with constant strain rate is proposed.

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