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1)  Vibrating carrier
振动载体
2)  vibration load
振动载荷
1.
Effect of soft starting time on vibration load of belt conveyor driving system;
软起动时间对带式输送机传动系统振动载荷的影响
2.
Influence of vibration load of oil pumping unit on the camber wear of rod tube and its prevention.
抽油机井振动载荷对杆管偏磨的影响与防治
3.
It also studies effect of swabbing parameter on vibration load of roof bolt,providing theoretical basis for decreasing vibration of roof bolt and studying mechanical behaviour of roof bolt of rod pumped well.
根据振动理论,采用有限元方法,在考虑抽油杆柱纵向振动、横向振动和扭转振动的耦合条件下,研究了抽油杆柱在工作中的振动规律,并研究了抽汲参数对抽油杆柱的振动载荷的影响,为抽油杆柱的减振及研究抽油机井中杆柱力学行为奠定理论基础。
3)  Vibrating loading
振动装载
4)  vibration load
振动荷载
1.
Model of pore water pressure development in saturated soft clay around a subway tunnel under vibration load;
地铁振动荷载下隧道周围饱和软黏土的孔压发展模型
2.
Dynamic response of saturated soft clay around a subway tunnel under vibration load;
地铁振动荷载作用下隧道周围饱和软黏土动力响应研究
3.
Based on the two typical kinds of undisturbed silt clay and silty clay in the Bohai subsea, this paper studies the essential change relationship of the clay strength characteristic under the action of vibration load and proposes the method to determine strength attenuation coefficient.
本文针对渤海海底两种典型的原状淤泥质粘土及粉质粘土,研究了振动荷载作用下土强度特性的基本变化关系,建议了确定强度衰减系数的方法。
5)  vibrating load
振动荷载
1.
Structural degrade analysis of frozen soil under vibrating load;
振动荷载作用下冻土结构弱化机理研究
2.
Based on track vibrating acceleration data measured from tunnels of Shanghai Metro Project, the numerical simulations by using 3D and 2D FEM are carried out in order to understand the dynamic response of overlap tunnels in close proximity to Nanpu Bridge Project due to the train抯 vibrating load.
采用上海地铁某区间隧道现场实测振动加速度数据,对南浦大桥近距离交叠隧道在列车振动荷载作用下的动力响应进行了有限元数值模拟。
6)  vibration loading
振动荷载
1.
Response characteristics of pore pressure in saturated soft clay to the metro vibration loading;
饱和粘性土体中孔隙水压力对地铁振动荷载响应特征分析
补充资料:点振子振动和点电极振子振动
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CAS号:

性质:又称点振子振动和点电极振子振动。振动能量绝大部分集中在点电极范围内,形成“能量封闭”的振动模式。振子电极面远小于压电陶瓷片的总面积,且与厚度有适宜的匹配关系。在交变电场作用下,沿厚度方向产生振动,其振幅随着至电极中心距离的增加,呈指数式衰减。谐振频率与压电陶瓷片的厚度有关。为提高频率通常将压电陶瓷片磨得很薄,有时考虑到压电陶瓷自身强度太低,可用特制的陶瓷片作垫片来防止压电陶瓷片损坏。常用于高频场合。

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