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The result shows that the relationship between stress and strain can be described by Hardin model.

试验结果表明:该尾矿砂的动应力应变关系可用Hardin等效黏弹性模型描述,模型中的起始动剪切模量和最大动剪应力皆随固结应力比和有效固结围压的增大而增大,这两个参数与有效固结轴压成幂函数关系,且其受固结应力的影响较小。

By solving a axial-symmetrical boundary value problem consisting of a infinite solid and an isolated spheriodal particle embedded in an infinite matrix, some interesting results are found as follow:(1) at the micron scale, the smaller the particle is, the higher the stresses at the matrix/inclusion interface and within the particle are;(2) this size effect is more remarkable with decreasing the stress triaxiality and increasing the remote equivalent strain.

通过对三轴应力下含椭球夹杂的无限大体边值问题的分析,结果表明:(1)在微米尺度下,夹杂尺寸越小,夹杂/基体界面的法向应力、剪切应力和夹杂内部主拉伸方向的应力越高。

Recent years as development of the computer and software, it becomes reality using numeric simulation to research grouting in clay. Using the software of PFC2D, the grouting in clay is lucubrated and such achievements are reached: Grouting technologies in existence grouting material and serosity are studied and rational methods are put forward in choosing grouting technology and serosity.(2) Base on numeric simulation biax test a method is explored to simulate clay with PFC2D.(3) A method is explored to simulate grouting using PFC2D.(4) The relation between serosity pressure and diffuseness of grouting in clay with different initial stress is studied.(5) The stress transformation of clay is studied during grouting.(6) The stress distribution is studied under different serosity pressure.(7) The normal stresss and shear stresss at any section are studied.

近年来随着计算技术的发展,使得采用数值模拟的方式研究均质土体中的注浆成为可能,本文则利用离散元程序PFC2D对均质土体中注浆进行了研究,主要做了以下几方面的工作:(1)研究了现有注浆加固技术、注浆材料以及浆液的性质,阐述了合理选择注浆方式以及浆液的方法;(2)采用数值双轴实验,探索了应用离散元模型模拟土体的方法:(3)探索了采用颗粒流程序进行注浆数值模拟的方法途径;(4)研究了在粘土中注浆不同侧向土压力条件下浆液扩散范围与注浆压力规律;(5)研究了注浆过程中不同阶段土体中压应力的变化;(6)研究了不同注浆压力对土体应力分稚的影响:(7)研究了注浆过程中土体中任一截面处正应力与剪应力的对比关系。

Relatively speaking, the drawing for tube with fixed short plug technology would reduce the difference of the residual stress between inside and outside of the tube, and increases its uniformity.

外模半锥角对固定短芯头拔管材的轴向残余应力具有显著的影响;当半锥角为12 时,拉拔后管材的轴向残余应力值较小且分布均匀。

Aiming at the fracture in operation of damageable pump shaft used on locomotive, macroscopic and microscopic analysis of the pattern of fractured cross section in pump shaft is conducted and it is recognized that the fracture is typically caused by combined action of bending and torsion fatigue.

针对机车用水泵轴在使用中容易发生断裂的问题,对水泵轴断口的宏观和细观形貌进行了分析,认为断口为典型的弯扭复合疲劳断口。通过检测水泵轴上装配的齿轮,发现由于齿轮的加工误差过大,在轴的退刀槽根部造成了较大的附加拉应力,最终导致轴的断裂。因此及时消除齿轮的加工误差,同时提高安装精度,是防止此类断裂发生的关键

Third, the stress-strain and damage parameters on multiaxial fatigue damage critical planes were analyzed. A new multiaxial fatigue damage parameter was presented. This parameter can not only describe multiaxial proportional and nonproportional loading, but also uniaxial loading.

第三,对多轴疲劳损伤临界面上的应力应变及损伤参量进行了分析,在此基础上提出了一种新的多轴疲劳损伤控制参量,该参量不仅能够描述多轴比例与非比例加载下的疲劳损伤,而且可以退化成单轴的形式。

Finally, the finite element analysis for the IT shaft of the driving system is fulfilled by using ANSYS 8.0 and the stresses and deformations curves of the Π shaft are obtained. The paper else gives a study on few underprops and a reasonable project about few underprops is obtained.

最后利用有限元分析软件ANSYS 8.0完成传动箱Ⅱ轴零部件静态有限元应力和应变分析,得到Ⅱ轴零件在受载情况下的应力应变图,并对各种支撑情况进行了研究,提出合理的径向轴承布置方案。

First, systematic study on propagation, reflection and interaction of axial stress wave is made to deduce the calculation equation for axial elastic and plastic stress wave, which fit for analysis of impact buckling of axial compression member.

本文首先对轴向应力波在构件中的传播、反射及相互作用进行系统分析,推导出适合轴心受压构件冲击屈曲分析的轴向弹、塑性应力波计算公式。

In this modified model, the effect of the stress concentration on the end stress in the fiber end region is considered, the average matrix strain is used to substitute for the so-called far field strain in the previous shear lag model. The change of the deformation states from elasticity to plasticity is considered and the interfacial shear stress and fiber axial stress are derived.

修正的模型合理考虑了纤维根区域应力集中对根应力的影响;用基体平均应变代替了经典剪切滞后模型中的远场应变;考虑了基体变形状态从弹性到塑性的变化,给出了塑性区上的表面剪切应力和纤维轴向应力的表达式。

Based on the critical approach, a model for multiaxial fatigue life prediction was established by combining maximum shear strain and normal strain on the critical plane, and the effect of stress state under the multiaxial cyclic loading condition on the fatigue life was taken into account.

通过对薄壁圆管和缺口试样的高温多轴疲劳寿命特性分析,基于临界面方法提出了一个的多轴疲劳寿命预测模型,在考虑临界面上最大剪应变和正应变对多轴疲劳损伤贡献的同时,还引入了应力状态对多轴疲劳寿命的影响因素。

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