首页> 外文会议>Third European Conference on Constitutive Models for Rubber Sep 15-17, 2003 London, UK >A finite element formulation for the stress rate in hyperelasticity based on the Updated Lagrangian approach and its applicability to vibration control devices
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A finite element formulation for the stress rate in hyperelasticity based on the Updated Lagrangian approach and its applicability to vibration control devices

机译:基于更新拉格朗日方法的超弹性应力率的有限元公式及其在振动控制装置中的适用性

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A rate-type constitutive equation of compressible isotropic hyperelasticity and a finite element formulation based on the Updated Lagrangian approach are proposed. The constitutive equations of compressible hyperelasticity are simplified by introducing modified tensors in an intermediate configuration, which separates the volumetric deformation from the distortional deformation. Selective integration and a mixed pressure/displacement formulation have been adopted to avoid volumetric locking and the hourglass modes. The deformation of a simple rectangle block was simulated to show the effect of the choice of the finite elements and the integration methods on the stability and the accuracy of proposed method. Moreover, loading tests were carried out on a prototype specimen of a vibration control device made from circumferential rubber parts and reinforcing steel layers in order to evaluate applicability of the proposed formulation to such devices.
机译:提出了可压缩各向同性超弹性的速率型本构方程和基于更新拉格朗日方法的有限元公式。通过在中间配置中引入修正的张量来简化可压缩超弹性的本构方程,该张量将体积变形与变形变形分开。为了避免体积锁定和沙漏模式,采用了选择性积分和压力/位移混合公式。模拟了一个简单矩形块的变形,以显示有限元的选择和积分方法对所提出方法的稳定性和准确性的影响。此外,在由圆周橡胶部件和增强钢层制成的振动控制装置的原型样品上进行了载荷测试,以评估所提出的配方对此类装置的适用性。

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