共查询到15条相似文献,搜索用时 484 毫秒
1.
动力设备周围阻振质量闭式回路隔振特性研究 总被引:1,自引:1,他引:0
基于波动理论分析了T型板架中阻振质量对振动波传递的阻抑特性,推导了阻振质量的隔振度公式,给出了振动波入射角度、阻振质量截面参数对其隔振性能的影响规律。在此基础上,基于阻抗失配原理将环形阻振质量回路、矩形阻振质量回路引入双壳动力段动力设备周围结构的刚性隔振动设计中,给出了艇体铺板结构阻振质量刚性隔振设计原则。结果表明阻振质量闭式回路能有效降低动力舱段的振动及声辐射。 相似文献
2.
阻振质量刚性隔振在舰船基座结构中应用研究 总被引:1,自引:0,他引:1
基于波动理论,探讨了阻振质量对典型船体连接结构中振动波传递的阻抑特性。兼顾基座阻振质量布置工艺,开展了阻振质量偏心距对其隔振特性的影响研究。从工程应用的角度出发,将阻振质量带引入动力舱段基座结构的刚性隔振设计中,联合应用声固耦合法和统计能量法数值研究了阻振质量截面尺寸、截面形状参数和布置位置对舱段全频段隔振特性的影响规律。在此基础上,开发了动力舱段基座阻振质量隔振效果工程快速预报方法,旨在为艇体早期结构声学设计提供参考。 相似文献
3.
4.
5.
6.
7.
8.
船舶阻抗失配基座对平面弯曲波传递的阻抑特性 总被引:1,自引:1,他引:0
研究了船舶阻抗失配基座对平面弯曲波传递的阻抑特性.基于波动理论,根据不均质结构中波型转换、阻抗特性,推导并给出了振动波入射不同连接形式的船舶基座结构的透声系数及隔声量公式,归纳了隔振性能随基座板架厚度比及频率变化规律,讨论了基座连接结构处板架固定方式对隔振性能的影响.在理论分析基础上,构造含阻振质量的阻抗失配基座.数值结果表明阻抗失配基座显著增大了基座的输入机械阻抗,加剧了振动波在船体板架中的波形转换、散射和反射,显著提高了舰船基座结构的隔振效果. 相似文献
9.
10.
11.
阻振质量参数对动力舱段隔振性能影响规律研究 总被引:1,自引:0,他引:1
Rigid blocking masses are located in the typical base structure of a power cabin based on the impedance mismatch principle.By combining the acoustic-structural coupling method and statistical energy analysis,the full-band vibration and sound radiation reduction effect of vibration isolation masses located in a base structure was researched.The influence of the blocking mass’ cross-section size and shape parameters and the layout location of the base isolation performance was discussed.Furthermore,the effectiveness of rigid vibration isolation design of the base structure was validated.The results show that the medium and high frequency vibration and sound radiation of a power cabin are effectively reduced by a blocking mass.Concerning weight increment and section requirement,suitably increasing the blocking mass size and section height and reducing section width can result in an efficiency-cost ratio. 相似文献
12.
为对结构中的振动波传播,特别是遇到阻隔质量时的传播规律进行研究.首先介绍振动波的产生、传播和表述方法,然后利用波动理论,分析振动波在传播过程中遇到阻隔质量时的透射、反射规律.最后得到隔振质量对板结构中振动波的隔振度的表达式,并且推导出阻隔质量的隔振度随着振动波频率,以及随着阻隔质量的高度h的变化规律. 相似文献
13.
Based on the principle of impedance mismatching,the performance of rigid vibration isolation mass in impeding vibration wave propagation was discussed from the perspective of wave approach.Based on FEM,the influence of its weight as well as the cross-section shape parameters on the isolation performance of rigid vibration isolation mass was studied through numerical simulation.The results show that rigid vibration isolation mass can effectively impede the propagation of the medium and high frequency vibration waves,and the heavier the vibration isolation mass,the better the isolation performance.For low frequency waves,the vibration isolation effect is not so obvious;for a rectangular vibration isolation mass,the isolation performance could be effectively improved by increasing the cross-section height and reducing the cross-section width.A useful reference was provided for the application of rigid vibration isolation masses to the vibration isolation and noise reduction of ship structure. 相似文献
14.
《舰船科学技术》2017,(15)
The vibration isolation performances of typical hull structure with viscoelastic interlayer are analyzed according to wave theory,and the influences of interlayer Young’s modulus and length on the vibration reduction are discussed.The theoretical analysis shows that combination of polyurethane interlayer with blocking mass can enhance the vibration isolation performance and expand isolation frequency band.In order to verify the effectiveness of polyurethane interlayer,the model test of power cabin’s vibration is carried out.The test data shows that the reduction of 20–1 000 Hz variation acoustic level at hull shell is more than 5 dB. 相似文献
15.
The vibration isolation performances of typical hull structure with viscoelastic interlayer are analyzed ac-cording to wave theory, and the influences of interlayer Young's modulus and length on the vibration reduction are dis-cussed. The theoretical analysis shows that combination of polyurethane interlayer with blocking mass can enhance the vibra-tion isolation performance and expand isolation frequency band. In order to verify the effectiveness of polyurethane interlay-er, the model test of power cabin's vibration is carried out. The test data shows that the reduction of 20–1000 Hz variation acoustic level at hull shell is more than 5 dB. 相似文献