首页> 外文会议>World Congress on Engineering >Predicting Wave Velocity and Stress of Impact of Elastic slug and Viscoelastic Rod Using Viscoelastic Discontinuity Analysis (Standard Linear Solid Model)
【24h】

Predicting Wave Velocity and Stress of Impact of Elastic slug and Viscoelastic Rod Using Viscoelastic Discontinuity Analysis (Standard Linear Solid Model)

机译:使用粘弹性不连续性分析预测弹性块和粘弹性杆撞击抗冲击力(标准线性固体模型)

获取原文

摘要

The study is about impact of a short elastic rod (or slug) on a stationary semi-infinite viscoelastic rod. The viscoelastic materials are modeled as standard linear solid which involve three material parameters and the motion is treated as one-dimensional. We first establish the governing equations pertaining to the impact of viscoelastic materials subject to certain boundary conditions for the case when an elastic slug moving at a speed V impacts a semi-infinite stationary viscoelastic rod. The objective is to predict stresses and velocities at the interface following wave transmissions and reflections in the slug after the impact using viscoelastic discontinuity. If the stress at the interface becomes tensile and the velocity changes its sign, then the slug and the rod part company. If the stress at the interface is compressive after the impact, the slug and the rod remain in contact. After modelling the impact and solve the governing system of partial differential equations in the Laplace transform domain. We invert the Laplace transformed solution numerically to obtain the stresses and velocities at the interface for several viscosity time constants and ratios of acoustic impedances. In inverting the Laplace transformed equations, we used the complex inversion formula because there is a branch cut and infinitely many poles within the Bromwich contour. In the discontinuity analysis, we look at the moving discontinuities in stress and velocity using the impulse-momentum relation and kinematical condition of compatibility. Finally, we discussed the relationship of the stresses and velocities using numeric and the predictable stresses and velocities using viscoelastic discontinuity analysis.
机译:该研究是关于短弹杆(或块)在固定半无限粘弹性棒上的影响。粘弹性材料被建模为标准线性固体,涉及三个材料参数,并且运动被视为一维。我们首先建立与粘弹性材料对某些边界条件影响有关的控制方程,因为以速度V移动的弹性块撞击半无限固定粘弹性棒。目的是在使用粘弹性不连续的冲击后,预测在波透射后的波传输后的界面和反射中的应力和速度。如果界面处的应力变为拉伸,并且速度会改变其标志,然后是杆和杆部件。如果界面处的应力在冲击之后压缩,则块和杆保持接触。在建模冲击和解决拉普拉斯变换域中的偏微分方程的控制系统之后。我们在数控上反转拉普拉斯变换的解决方案,以获得界面处的应力和速度,以获得几个粘度时间常数和声学阻抗的比率。在反转拉普拉斯变换方程式中,我们使用了复杂的反转公式,因为在溴曲线轮廓中有一个分支和无限的多极。在不连续性分析中,我们使用矛盾的动量关系和相容性的动力学条件来看看压力和速度的移动不连续性。最后,我们讨论了使用粘弹性不连续性分析使用数字和可预测的应力和速度的应力和速度的关系。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号