摘要
根据经典隔振理论、橡胶材料本构模型以及应用有限元仿真技术对某卫星惯性设备进行隔振分析,研制一种三向等刚度橡胶减振器。结果表明,橡胶减振器采用宽温域高阻尼硅橡胶材料与金属材料复合制备,在三向振动频率为(75±5) Hz以及冲击环境下,安装橡胶减振器设备的振动响应量值由19g(g为重力加速度)降至7.7g,冲击量值由8 000g降至500g,满足惯性设备的减振需求。
According to the classical vibration isolation theory,the constitutive model of rubber materials and the application of finite element simulation technology,the vibration isolation analysis of a satellite inertial equipment was carried out,and a three-dimensional equal stiffness rubber shock absorber was developed.The rubber shock absorber was made of a wide temperature range high damping silicone rubber and metal materials.In a three-dimensional vibration frequency of(75±5)Hz and an impact environment,the vibration response value of the equipment with rubber shock absorber was reduced from 19 g(g was the acceleration of gravity)to 7.7 g,and the impact value was reduced from 8000 g to 500 g,which met the damping requirements of inertial equipment.
作者
赵苗苗
段宇星
ZHAO Miaomiao;DUAN Yuxing(China Aircraft Strength Research Institute,Xi’an 710065,China)
出处
《橡胶工业》
CAS
2021年第2期114-118,共5页
China Rubber Industry