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  2024, Vol. 45 Issue (6): 846-856    
  研究论文 本期目录 | 过刊浏览 | 高级检索 |
高转速硬涂层阻尼双薄壁圆柱壳耦合结构的行波振动特性
王鹏,王宇,常宇枫,王立萍
辽宁科技大学
Traveling Wave Vibration Characteristics of Hard Coating Damping Double Thin-Walled Cylindrical Shells Coupled Structure with High Rotating Speed
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摘要 为分析具有螺栓连接旋转硬涂层阻尼双薄壁圆柱壳耦合结构的行波振动特性。首先,通过改进连续整周的人工弹簧分布方法,构造非连续弧连接来模拟实际螺栓连接条件。其次,基于Sanders壳理论,确定硬涂层壳体结构的应变能。最后,考虑转速的影响并采用Rayleigh-Ritz法推导动力学方程。此外,利用状态空间法进行求解计算,通过文献和有限元方法验证理论方法的合理性。结果表明:连接刚度在108~1010区间范围内行波频率显著增大;旋转导致行波频率出现分离现象且整体呈增大趋势;硬涂层厚度越大对行波频率的影响越明显,硬涂层厚度从0提高到0.85 mm时,行波频率最大增长程度可达5.87%。
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王鹏
王宇
常宇枫
王立萍
关键词 双薄壁圆柱壳硬涂层阻尼非连续弧连接Rayleigh-Ritz法状态空间法行波振动double thin-walled cylindrical shells hard coating damping discontinuous arc connection Rayleigh-Ritz method state space approach traveling wave vibration    
Abstract:The connection conditions and vibration suppression methods of the shell coupled structure have received much attention. Moreover, the shell coupled structure, as a key component in an aero-engine, should focus on the study of traveling wave vibration characteristics. Therefore, this paper analyzes the traveling wave vibration characteristics of a rotating hard coating damping double thin-walled cylindrical shells coupled structure with bolt connection. Firstly, the discontinuous arc connection is constructed to simulate the actual bolt connection conditions by improving the artificial spring distribution method of the continuous whole circumference. And the artificial spring technique is used to construct the boundary conditions of the shell structure. Secondly, the strain energy of the hard coating shell structure is determined based on Sander’s shell theory. Finally, the effect of rotational speed is considered, and the Rayleigh-Ritz method is used to derive the dynamic equations of the shell structure. In addition, the efficient state space method is used to solve the calculation, the rationality and accuracy of the theoretical methods are verified by literature and the finite element method. The effects of rotational speed, connection stiffness, hard coating thickness, and boundary conditions on the traveling wave vibration characteristics of the shell structure are also analyzed. The results show that the traveling wave frequency increases significantly when the connection stiffness is in the range of 108~1010. Besides, the rotation leads to the separation phenomenon and an overall increasing trend in the traveling wave frequency. The effect of the larger hard coating thickness on the traveling wave frequency is more obvious, and the maximum increase in the traveling wave frequency can be up to 5.87% when the hard coating thickness is increased from 0 to 0.85 mm. Overall, the findings of this paper can provide theoretical references and data support for the engineering design of a hard coating double thin-walled cylindrical shells coupled structure.
收稿日期: 2024-05-20      出版日期: 2024-12-27
基金资助:国家自然科学基金资助项目;国家自然科学基金资助项目;辽宁省教育厅基金资助项目
通讯作者: 王宇     E-mail: wangzy801@163.com
引用本文:   
王鹏 王宇 常宇枫 王立萍. 高转速硬涂层阻尼双薄壁圆柱壳耦合结构的行波振动特性[J]. , 2024, 45(6): 846-856.
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