• 最后得出应力强度因子计算公式。

    Finally, formulas for stress intensity factors are deduced.

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  • 应力强度因子随着裂纹扩展而下降

    The intensity factor decreases with the propagation of cracks.

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  • 得到了快速扩展裂纹动态应力强度因子

    Finally, the dynamic stress intensity factors of the fast-propagating crack is obtained.

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  • 随着应力强度因子下降发射随着减少

    The acoustic emission also shows a decreasing rate, following the drop in stress-intensity factor.

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  • 研究载荷作用裂纹应力强度因子

    We study stress intensity factor of thick wall cylinder with cracks under dynamic load.

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  • 探讨了边界配置应力强度因子收敛性问题

    The convergence problem of boundary collocation method used to calculate the stress intensity factor is also investigated.

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  • 分析了扩张疲劳裂纹尖端应力强度因子分布影响

    The influence of cold expansion on the stress intensity factor distribution in crack tip was also analyzed.

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  • 给出瞬态位移运动裂纹尖端动态应力强度因子

    The transient displacement field and the dynamic stress intensity factor at the moving crack tip are obtained.

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  • 给出剪切应力强度因子裂纹接触尺寸数值结果

    The numerical results of shear stress intensity factor and the length of the crack face contact region are given.

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  • 利用方便地计算裂纹机架应力强度因子

    With this formula the intensity factors of the rollhousings with a crack in the corner can be evaluated conveniently.

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  • 正交各向异性各向同性材料应力强度因子本文的特例。

    The stress intensity factors of both orthotropic and isotropic materials can be obtained from the present results.

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  • 人们发现,动态应力强度因子变化滞后应力脉冲冲击微秒

    The dynamic SIF variation was found to lag behind the stress - pulse impingement by several microseconds.

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  • 最后得到垂直裂纹端点处应力强度因子压头下方压力数值

    Stress intensity factors at vertical crack tips and numerical results of pressure under punch are obtained.

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  • 采用线弹簧模型求解多个共面任意分布表面裂纹应力强度因子

    The stress intensity factors of multitudinous arbitrarily distributed coplanar surface cracks are solved by using the line - spring model.

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  • 基于裂纹表面位移间断计算结果得到了裂纹前沿的应力强度因子

    So the stress intensity factors can be obtained by the displacement discontinuities.

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  • 试样的受力状态动态应力强度因子历史曲线确定具有重要影响。

    The loading state of specimen is important for calculation of the temporal evolution of dynamic stress intensity factor.

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  • 但是试样重要力学参数量纲应力强度因子标定尚有问题

    However, the calibration of the dimensionless stress intensity factor, which is an important mechanical parameter, is still in question.

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  • 它们结果表明:切口尖锐切口动态应力强度因子增长率更快

    Their results showed a more rapid rate of increase in the dynamic sif for blunt than for sharp notches.

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  • 首先推导了双材料界面裂纹尖端位移应力强度因子之间的关系式。

    The relative equation between stress intensity factor and displacement field near interface crack tip of bimaterials was derived firstly.

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  • 地质预测主要曲率构造应力模拟法断层应力强度因子计算法

    Geological methods mainly include curvature method, structural stress modeling and strength factor computation of fault stress.

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  • 通过弱奇异积分方程数值求解,可得裂纹端点交点应力强度因子

    Through the numerical solution of the integral equation, the stress intensity factors at the end points of the crack and intersection are obtained.

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  • 求解五种情况应力强度因子采用的方法艾雷应力函数加权残数法

    In this article a solution is found of the stress intensity factors in five cases. The solution is based on Airy stress function and the method of weighted residuals.

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  • 本文采用一种边界积分方程计算共线周期反平面裂纹应力强度因子

    In this paper, a boundary integral equation method is applied to compute the dynamic stress intensity factors of collinear periodic antiplane cracks.

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  • 给出高强钢表面裂纹压弯组合应力应力强度因子及其疲劳寿命计算式。

    The formulae for calculating SIF and fatigue life of surface crack at weld toe of the high-strength steel under the combination stresses have been presented.

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  • 通过积分集中载荷应力强度因子分布载荷应力强度因子方法可行的。

    This method proved available to find the stress intensity factors of the distributed load by integrating the intensity factors of concentration load.

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  • 应力强度因子(K):断裂力学使用一个因子说明裂纹尖端处应力强度

    Stress intensity factor (k). A factor used in fracture mechanics to specify the stress intensity at the tip of a crack.

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  • 给出高强钢表面裂纹压弯组合应力应力强度因子及其疲劳寿命计算式。

    The formulae for calculating SIF and fatigue life of surface crack at weld toe of the high-strength steel under the combination stresses were given out.

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  • 结果表明应力强度因子材料常数无关,应变释放依赖所有材料常数。

    The results show that the stress intensity factor is independent of material constants, and the strain energy release rate is dependent on all material constants.

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  • 结果表明应力强度因子材料常数无关,应变释放依赖所有材料常数。

    The results show that the stress intensity factor is independent of material constants, and the strain energy release rate is dependent on all material constants.

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