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弹性支承减振
相关语句
  vibration isolation spring support
     Equipment Foundation Vibration Isolation Spring Support of Forging Hammers and Presses
     锻锤和压力机设备基础的弹性支承减振系统
短句来源
  相似匹配句对
     Elastic boundary condition is considered.
     边界为弹性支承
短句来源
     Vibration Reduction by Elastic Support Dry Friction Damper
     弹性支承干摩擦阻尼器减振研究
短句来源
     Equipment Foundation Vibration Isolation Spring Support of Forging Hammers and Presses
     锻锤和压力机设备基础的弹性支承减振系统
短句来源
     Experimental Investigation of the Dry Friction Damper with Elastic Support
     弹性支承干摩擦阻尼器减振实验研究
短句来源
     CALCULATION OF THE T-FORM ELASTIC BEARING
     T型弹性支承的计算
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Vibration isolation spring support as the ideal foundation for Forging Hammers and Presses, which has been developed by GERB Germany is introduced. This system has the following advantages: reducting the size of foundation, reductiing dynamic force and vibration in large scale,and considerably decreasing cost and construction time,with levelling function.

介绍了一种用于设备基础的高效隔振弹性支承减振系统 ,可大幅度减小动态载荷及振动 ,避免或减少基础沉降 ,可减小基础尺寸 ,节省基础费用和施工时间 ,并具有调平功能。

Under strong shock,violent vibration will occur in the pipe system of naval ships,which then results in the pipe systems breakage. In this article,the straight girder model is used to simulate the pipe system,state equation is deduced by ECPM,and vibrational response will be gained.An analysis of vibrational response in a real pipe system of naval ships revealed that it will be effective to reduce vibrational response by rational dispose the position of supports. The diagrams and conclusions offer theoretical...

Under strong shock,violent vibration will occur in the pipe system of naval ships,which then results in the pipe systems breakage. In this article,the straight girder model is used to simulate the pipe system,state equation is deduced by ECPM,and vibrational response will be gained.An analysis of vibrational response in a real pipe system of naval ships revealed that it will be effective to reduce vibrational response by rational dispose the position of supports. The diagrams and conclusions offer theoretical reference for the position optimizing of the pipe systems supports.

在强冲击作用下 ,船舶的管路系统会发生剧烈的振动 ,从而导致管路系统的破坏。本文拟采用不同边界条件的直梁模型 ,模拟管路系统 ,利用等效最优控制特性法建立系统的状态方程 ,进而得到直梁模型在多约束情况下的动态响应。经过对该模型冲击作用后在持续性周期荷载、随机荷载作用下的振动响应优化分析指出 ,合理布置弹性支承位置可以有效的避开共振区 ,改善弹性支承的减振效果。本文所得图表和结论对于管路系统弹性支承的位置设置提供了理论上的参考依据。

 
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