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1)  transverse shearing strain
横向剪切应变
1.
The nonlinear equation includes two nonlinear terms caused by finite deformation and double geometric dispersion effects caused by transverse inertia and transverse shearing strain.
在同时引入横向惯性和横向剪切应变的情况下,导出了有限变形弹性圆杆的非线性纵向波动方程,方程中包含了二次和三次的非线性项以及由横向剪切与横向惯性导致的两种几何弥散效应。
2)  transverse shear effects
横向剪切效应
3)  transverse shear stress
横向剪切应力
4)  transverse shearing distortion
横向剪切变形
1.
Compared with glass fiber reinforced plastics(GFRP) beams of the same section,the bending rigidity of HFRP beam,which is reinforced in the flanges with the carbon fiber,increases obviously,but the ability to resist the transverse shearing distortion doesn't increase.
在进行混杂纤维树脂基复合材料梁的挠度计算时须采用考虑横向剪切变形对挠度影响的铁木辛柯梁理论。
2.
A conclusion is drawn that the influence of transverse shearing distortion must be considered when the deflection of the fiber reinforced ash plastic beam was calculated.
结果表明:对粉煤灰-树脂-玻璃纤维筋复合材料梁的挠度计算,必须考虑横向剪切变形对挠度影响的铁木辛柯梁理论。
3.
As to the application of the box-girder with corrugated steel webs in China now,the flexure curve e-quation of cantilever box-girder with corrugated steel webs was educed based on Timoshenko beam theory that deflection was affected by transverse shearing distortion.
针对目前国内正在推广应用波形钢腹板组合箱梁,基于横向剪切变形对挠度影响的铁摩辛柯梁理论,推导出悬臂波形钢腹板组合箱梁的挠曲线计算方程。
5)  transverse shear
横向剪切变形
1.
The transverse shear deformation effect is included by use of Mindlin-Reissner first-order shear deformation theory.
在板和肋骨的基本方程中,引用Von-Karman大变形理论计及大变形的影响,按照 Mindlin-Reissoner一阶剪切变形理论考虑横向剪切变形。
2.
The transverse shear deformation effect was included by using the Mindlin-Reissoner first-order shearing deformation theory.
在板和肋骨的方程中 ,引用Von-Karman大变形理论计及几何非线性的影响 ,按照Mindlin-Reissoner一阶剪切变形理论考虑横向剪切变形 ;在肋骨的本构造方程中 ,计及常规梁单元忽略了的侧向Poisson效应和扭转刚度。
3.
Also, the formulation accounts for transverse shear deformation effects of the plate and stiffener in terms of Mindlin hypothesis, and a interpolation for revising membrane strains and transverse shear strains is used to overcome ‘locking’ behavior.
在肋骨和板的运动方程中引用 Von Karman形变方程 ;按照 Mindlin板理论计及横向剪切变形的影响 ;对横向剪应变和薄膜应变重新插值修正克服 Mindlin型单元在薄板应用时的“锁定”行为 ,此模型可适合于薄板和厚板的非线性分析 。
6)  transverse shear deformation
横向剪切变形
1.
Displacemental vibration equations of thick shells of revolution considering transverse shear deformation;
考虑横向剪切变形厚旋转壳振动的位移型基本方程
2.
Tn this paper, equations of motion of axisymmetrically laminated cylindrical orthotropic spherical shells are derived with consideration of the transverse shear deformation and rotatry inertia On this basis, using the finite difference method, the dynamic response of spherical shells under axisymmetric dynamic load is calculated.
本文建立了计及横向剪切变形的旋转惯性的复合材料轴对称层合圆柱正交异性球壳的运动方程。
3.
This paper compared several mechanical models with transverse shear deformation and put forward a kind of layer model assuming that shear stresses vary parabolically through the plate thickness.
比较了考虑横向剪切变形的几种力学模型 ,提出了一种新的假定剪应力沿板厚呈抛物线分布的分层模型 。
补充资料:剪切应变
分子式:
CAS号:

性质:剪切时物体所产生的相对形变量。即指在简单剪切的情况下,材料受到的力F是与截面A0相平行的大小相等、方向相反的两个力,在此剪切力作用下,材料将发生偏斜。偏斜角θ的正切定义为剪切应变γ:即γ=tgθ。当剪切应变足够小时,γ=θ,相应地剪切应力为τ=F/A。

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