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1)  cantilever plate with linearly varying depth
变高度悬臂板
2)  variable-thickness cantilever slab
变厚悬臂板
1.
Through ANSYS calculation, this article pointed out that the variable-thickness cantilever slab is not suitable for normalized form, and suggested adopting the FEM based on shell element model to analyze and calculate.
本文通过通用有限元软件ANSYS计算,指出变厚悬臂板不宜再采用规范公式,推荐设计采用基于壳单元模型的有限元方法进行计算与分析。
3)  cantilevered plate
悬臂板
1.
The placement rule of piezosensors and piezoactuators for cantilevered plate is given,and the piezoelectric control equation based on distributed piezoelectric actuators for cantilevered plate including bending and torsion modes is derived,and the control methods can be designed using this equation.
给出了悬臂板的压电敏感器和致动器的布置准则,并推导了悬臂板的(包括弯曲和扭转振动模态)基于分布式压电致动器的压电致动方程,可以根据该方程设计悬臂板压电主动振动抑制的控制器。
4)  cantilever board
悬臂板
1.
Self-shaking and shaking control of pressing cantilever board;
压电悬臂板的自振及振动控制
2.
The paper adopts composites layer board model to analyse functionally gradient materials cantilever board.
本文采用复合材料层合板模型,对梯度功能材料悬臂板进行了分析。
5)  cantilever slabs
悬臂板
1.
Aimed at the unreasonable calculation methods for cantilever slabs of concrete box girders,based on FEM and some kinds of calculation methods,a analyses is performed by sub-model technique to study the influence of several parameters,such as distortion for box girders,length and degree of slope for cantilever slabs as well as load location.
针对目前混凝土箱梁悬臂板计算的不合理性,以有限元为基础,结合诸多算法,应用子模型技术分析了箱梁畸变、悬臂板长度及坡度、荷载作用位置等参数对混凝土箱梁悬臂板有效分布宽度的影响规律。
6)  cantilever square plate
悬臂方板
补充资料:等板高度
分子式:
CAS号:

性质:又称板高(plate height)、等板高度等。单位理论塔板的长度称为理论塔板高度。它等于色谱柱长度除以理论塔板数。用理论塔板数与板高表示柱效率时是等价的。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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