摘要
管路的振动不仅造成噪声污染,而且造成机器设备的损坏。将声子晶体布拉格带隙原理引入到管壁的结构设计中,将管壁设计成沿轴向交替排列的周期复合结构,采用传递矩阵法,计算此周期弯管中轴向波及弯曲波的传输特性,同时用MSC有限元软件验证了传递矩阵法计算的正确性。研究表明平面周期管路存在弯曲振动、轴向振动带隙特性,在带隙频率范围内,对相应的振动波传播具有很强的衰减作用。进一步,研究材料阻尼比对管路振动特性的影响。
Longitudinal vibration and flexural vibration of a bend pipe system was studied.The bend pipe was modeled as a periodic composite materials structure based on the Bragg scattering mechanism of phononic crystals to form the Bragg band structure.Using a transfer matrix method,the frequency response functions(FRFs) of longitudinal vibration and flexural vibration were calculated to study the vibration transfer properties of the Bragg periodic L-shaped pipe.The correctness of the transfer matrix method was proved by the calculation with commercial software MSC.Patran.The effects of damping factor on the frequency response function of pipe vibration were considered.The periodic bend pipe may be effective for vibration reduction of a complex pipe system.
出处
《振动与冲击》
EI
CSCD
北大核心
2011年第3期42-46,共5页
Journal of Vibration and Shock
基金
国家自然科学基金资助项目(50875255)
关键词
声子晶体
布拉格散射
能带结构
轴向振动
弯曲振动
传输特性
phononic crystal
Bragg scattering
band gap
longitudinal vibration
flexural vibration
transfer properties