...
首页> 外文期刊>Acta Mechanica >The propagation and reflection of finite amplitude cylindrically symmetric shear waves in a hyperelastic incompressible solid
【24h】

The propagation and reflection of finite amplitude cylindrically symmetric shear waves in a hyperelastic incompressible solid

机译:超弹性不可压缩固体中有限振幅圆柱对称剪切波的传播和反射

获取原文
获取原文并翻译 | 示例
           

摘要

We consider axially symmetric shear waves propagating in an incompressible hyperelastic thick-walled cylindrical shell, whose strain energy function is expressible as a truncated power series in terms of the basic strain invariants. A continuous pulse is initiated at the interior boundary of the cylinder by surface tractions of finite duration. The pulse propagates away from the interior boundary, then reflects from the outer boundary, and subsequently reflects back and forth between the two boundaries of the cylinder. We analyze shock development of the first incident and first reflected wave. The incident pulse can break before it reaches the outer boundary. Using Whitham's nonlinearization technique, we determine conditions under which the incident wave breaks and which shock waves can subsequently occur. Similar calculations are carried out for the first reflection. The formulas obtained for the incident pulse provide accurate estimates of the breaking distance and time, and the location of the shock paths, for any incident shock waves that occur. Results obtained for the reflected wave cannot be used to make similar estimates, but they do reveal that once the pulse has completely left the outer boundary, the possible shock that can occur is the same as for the incident wave. Our analysis is carried out for axial shear waves. A similar analysis can be done for torsional shear waves, but not for combined axial and torsional shear wave propagation. We illustrate the conclusions of our shock analysis with numerical solutions obtained using a relaxation scheme for systems of conservation laws. Numerical results are obtained for axial shear and for combined axial and torsional shear. These results indicate that the shock behavior indicated by our analysis of axial shear is also valid for combined axial and torsional shear wave propagation.
机译:我们考虑了在不可压缩的超弹性厚壁圆柱壳中传播的轴对称剪切波,其应变能函数可以用基本应变不变量表示为截断幂级数。通过有限持续时间的表面牵引在圆柱体的内部边界处发出连续脉冲。脉冲从内部边界传播出去,然后从外部边界反射,然后在圆柱体的两个边界之间来回反射。我们分析了第一事件和第一反射波的冲击发展。入射脉冲在到达外边界之前可能会破裂。使用Whitham的非线性技术,我们确定入射波破裂的条件以及随后可能发生的冲击波。对于第一次反射进行了类似的计算。对于发生的任何入射冲击波,针对入射脉冲获得的公式可提供准确的断裂距离和时间以及冲击路径的位置的估计值。对于反射波获得的结果不能用于做出类似的估计,但是它们确实揭示出,一旦脉冲完全离开外边界,则可能发生的冲击与入射波相同。我们对轴向剪切波进行了分析。对于扭转剪切波可以进行类似的分析,但对于组合的轴向和扭转剪切波传播则无法进行分析。我们用守恒律系统的松弛方案获得的数值解来说明冲击分析的结论。获得了轴向剪切以及轴向和扭转组合剪切的数值结果。这些结果表明,由我们的轴向剪力分析表明的冲击行为对于组合的轴向和扭转剪力波传播也是有效的。

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