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rubber material
相关语句
  橡胶材料
     The Study of Modified Y_2O_3 Reinforced Rubber Material
     改性Y_2O_3增强橡胶材料研究
短句来源
     Finite Element Analysis Software MSC.Marc/Ment for Rubber Material Analysis
     有限元软件MSC.Marc/Mentat在橡胶材料分析中的应用
短句来源
     MULTIELEMENT ANALYSIS OF RUBBER MATERIAL BY X-RAY FLUORESCENCE SPECTROSCOPY
     橡胶材料的X射线荧光多元素分析
短句来源
     This paper mainly introduced the superelasticity theory and finite analysis softwear ANSYS non-linearity elasticity model, among which related structure equation of varied superelasticity model such as Polynomid Form model、Mooney-Rivlin modle、Neo-Hookean model、Yeohmodel、Arruda- Boycemodel、Gentmodel、Ogdenmodel、Hyperfoam model、Blatz-Ko model. To select model at the different condition, gain the data of the materials, put samples of the selected different model of various rubber material and parameters.
     本文主要介绍了超弹性理论和有限元分析软件ANSYS非线性超弹性模型,其中主要叙述了各种超弹性模型的本构方程(Polynomid Form模型、Mooney-Rivlin模型、Neo-Hookean模型、Yeoh模型、Arruda-Boyce模型、Gent模型、Ogden模型、Hyperfoam模型、Blatz-Ko模型),在不同情况下模型的选取、材料数据的获得、参数拟合及不同橡胶材料选用不同模型的应用实例。
短句来源
     The effect of different fillers such as hollow glass microsphere, pulverous coal ash and foam polymer on water insertion loss of sound isolation rubber material were studied.
     本文研究了空心玻璃微珠、粉煤灰 (煤胞 )、发泡聚合物等填料对阻尼隔声橡胶材料水中插入损失的影响 ,发现橡胶中加入隔声填料可以明显提高水中插入损失。
短句来源
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  橡胶体
     On the basis of the analysis of the thermoforming and blow moulding mechanism, the mathematical model was established to simulate the plastic thermoforming and blow moulding process. In the analysis, the expanding process of the polymer was considered as super_elastic deformation, similar to that of the complete rubber material. And the material model used Ogden and Mooney_Rivlin super_elastic model.
     在分析热成型和吹塑成型的机理基础上 ,建立了描述塑料热成型和吹塑成型过程的数学模型 ,在分析中 ,聚合物膨胀过程看作是超弹性类似于完全橡胶体的变形 ,材料模型采用Ogden和Mooney_Rivlin超弹性模型 ,在数值分析中 ,采用了薄膜单元 ,控制方程采用La grangian描述 ,应变描述采用Green变形张量 ,应力描述采用二阶Piola_Kirchoff应力张量。
短句来源
  “rubber material”译为未确定词的双语例句
     Test of gas penetrability of porous metal rubber material made of 0Cr18Ni9Ti
     0Cr18Ni9Ti金属橡胶多孔材料的气体渗透性
短句来源
     Study on the Impact of Nano-meter CaCO_3 on the Mechanics Properties of EPDM Rubber Material
     纳米CaCO_3对三元乙丙橡胶(EPDM)材料力学性能影响研究
短句来源
     FRACTURE MECHANICS ANALYSIS OF RUBBER MATERIAL PURE SHEAR TESTPIECE
     橡胶纯剪试件断裂力学分析
短句来源
     Ultraviolet Ray Ageing Resistance Test Research on Rubber Material of Air Spring for Tibet Railway
     青藏铁路用空气弹簧橡胶胶料耐紫外线老化试验研究
短句来源
     Lagrange Multipliers are introduced in loose incompressible constraints, and the nonlinear hybrid FEM is applied to analyses and calculations for stress, strain and strain energy density of viscoeiastic rubber material.
     本文引入拉格朗日乘子对不可压缩性的约束进行放松,并采用非线性混合有限元法,对悬挂机构所用橡胶黏弹性材料的应力、应变及应变能密度进行分析计算。
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  rubber material
The heat resistant properties of the rubber material were measured at various temperatures using a stress relaxation method.
      
Application of intercalated compound of montmorillonite and N, N'-diphenyl-p-phenylenediamine to antioxidant for rubber material
      
The effects of different rubber material models, tearing energy distributions, crack extension angles, and three-dimensional regions at the crack tip for interface cracks are presented and discussed.
      
Asymptotic Analysis of the Nonlinear Boussinesq Problem for a Kind of Incompressible Rubber Material (Compression Case)
      
The main obstacle to this recycling is bad adhesion between the crumb and matrix of virgin rubber material due to little formation of interfacial sulphur crosslinks.
      
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In this paper a method of dynamic sealing applicable to depth of 1000 meters is introduucsed. Squeeze-type molded packings use for reciprocal, rotatory and vibratory sealing are discussed. Based on the rubber O-ring seals the squeeze-type molded packing is theoretically analyzed.The dynamic seals design, technology, rubber materials, friction, lubrication, examples of design and some charts are also given here in. Finally, the method of dynamic sealing applied in depth greater than 1000 meters is...

In this paper a method of dynamic sealing applicable to depth of 1000 meters is introduucsed. Squeeze-type molded packings use for reciprocal, rotatory and vibratory sealing are discussed. Based on the rubber O-ring seals the squeeze-type molded packing is theoretically analyzed.The dynamic seals design, technology, rubber materials, friction, lubrication, examples of design and some charts are also given here in. Finally, the method of dynamic sealing applied in depth greater than 1000 meters is primarily described.

本文介绍适用于工作深度为1000米的动态密封。主要讨论采用模压成型填料应用于往复运动、旋转运动和振荡运动的动态密封。以O形橡胶密封圈为主,在动态密封理论上对模压成型填料作了较为详细的分析。并在实际使用上,对O形橡胶密封圈的动态密封设计、制造工艺、橡胶材料,摩擦和润滑作了简单的介绍。还附有设计实例与若干图表数据。最后初步讨论了适用于工作深度为千米以上的动态密封问题。

The continuous formulation,the matrix formulation related to the finite element modelling and the detailed computational procedure for the problems of axisymmetric large deformation of incompressible rubber material are presented in this paper. A method of separation of displacement and pressure to solve the global matrix equation is proposed in order to save computer memory and computational effort. Two theorems about the singularity of the tangent stiffness matrix are given. The numerical solution in...

The continuous formulation,the matrix formulation related to the finite element modelling and the detailed computational procedure for the problems of axisymmetric large deformation of incompressible rubber material are presented in this paper. A method of separation of displacement and pressure to solve the global matrix equation is proposed in order to save computer memory and computational effort. Two theorems about the singularity of the tangent stiffness matrix are given. The numerical solution in an example meets the analytical one pretty well.

本文给出了下可压缩Mooney像皮材料轴对称大变形的分析步骤。提出了可以节省存储的位移和静水压力分组联立求解的方法,并给出了大变形不可压缩材料切线刚度阵是奇异的二个定理.最后给出一个例题,其结果和解析解符合的很好.

In this paper, the rubber bearing in the form of hollow circular cylinderis transferredintoa cuboid rubber element by using conformal transformation. The force acted is calculated to make the inner surface of rubber a unit displacement in the direction of force. This force value is just the radial stiffness of rubber bearing. The incompressibility of rubber material has been considered. The result of the example shows that this method is sufficiently accurate. The hypothesis in the derivation of formula...

In this paper, the rubber bearing in the form of hollow circular cylinderis transferredintoa cuboid rubber element by using conformal transformation. The force acted is calculated to make the inner surface of rubber a unit displacement in the direction of force. This force value is just the radial stiffness of rubber bearing. The incompressibility of rubber material has been considered. The result of the example shows that this method is sufficiently accurate. The hypothesis in the derivation of formula and the condition under which this formula is valid are given. Some questions are discussed in the last part of the paper.

本文根据保角变换原理,将固筒状橡胶轴承变换成长方体橡胶元件。求出了使橡胶内表面沿载荷作用方向产生单位位移所需加的径向集中力的大小,此力值就是橡胶轴承的径向刚度。考虑了橡胶材料的不可压缩性质。通过例子说明了本方法的精确性。给出了公式推导中的假设和公式适用的条件,并对一些问题进行了讨论。

 
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