首页> 外文会议>ASME international mechanical engineering congress and exposition >DYNAMIC INSTABILITY ANALYSIS OF A CANTILEVER BEAM WITH BREATHING CRACK
【24h】

DYNAMIC INSTABILITY ANALYSIS OF A CANTILEVER BEAM WITH BREATHING CRACK

机译:带有裂纹裂纹的悬臂梁的动态不稳定性分析

获取原文

摘要

In this paper, dynamic characteristics of a beam with breathing crack is considered. Breathing crack is modeled as a bilinear oscillator. The stiffness of the cracked beam is estimated by using influence coefficients based on castigliano's theorem and strain energy release rate (SERR). The equation of motion of breathing cracked beam is formulated using finite element method using Hamilton's principle. The equation of motion of breathing cracked beam is converted into Mathieu - Hill type equation to obtain the regions of dynamic instability of beam using Harmonic balance method and it is further solved for Eigen frequency of the cracked beam. The increase in breathing crack depth increases the instability region and it is found that the effect of the crack location near to the fixed end is more for the cantilever beam, and this also increases the instability region. It is found that increase in dynamic instability index increases the instability regions of the cracked structure. In addition to that, the effect of static and dynamic loads are also investigated and discussed. The study has been conducted for the first two instability boundaries of the cracked structure only. It is hence seen that assuming the crack to remain open underestimates the stability boundaries of the system. Permitting the crack to open and close (breath) yields a stability boundaries in between the open and uncracked beam.
机译:在本文中,考虑了具有呼吸裂纹的梁的动力特性。呼吸裂纹被建模为双线性振荡器。通过使用基于卡斯蒂利亚诺定理和应变能释放速率(SERR)的影响系数,估算裂化梁的刚度。利用汉密尔顿原理,采用有限元方法建立了裂隙呼吸的运动方程。用谐波平衡法将裂隙呼吸的运动方程式转换为Mathieu-Hill型方程,得到梁的动态失稳区域,并进一步求解裂隙的本征频率。呼吸裂纹深度的增加增加了不稳定性区域,并且发现对于悬臂梁,靠近固定端的裂纹位置的影响更大,这也增加了不稳定性区域。发现动态不稳定性指数的增加增加了裂纹结构的不稳定性区域。除此之外,还研究和讨论了静载荷和动载荷的影响。仅对裂纹结构的前两个不稳定性边界进行了研究。因此可以看出,假设裂纹保持开放状态会低估系统的稳定性边界。允许裂缝打开和关闭(呼吸)会在打开和未打开的梁之间产生稳定边界。

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