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1)  conical shell
锥壳
1.
Through the analysis of material layout and lofting process for conical shell,the relevant equations were derived.
通过分析锥壳放样排料的过程,推导出锥壳放样排料的有关公式。
2.
Natural frequencies and damping ratios of a conical shell with honeycomb construction are identified by modal experiment.
通过模态试验对蜂窝结构锥壳结构的纵向固有频率和阻尼比进行了识别,并与数值仿真结果进行了对比。
3.
This paper is concerned with the free vibration analysis of conical shell on the two-parameter elastic foundation.
本文研究双参数弹性地基上锥壳的自由振动问题,并计及地基惯性作用。
2)  cone shell
锥壳
3)  conical shells
锥壳
1.
Before the experiments to the transient responses of conical shells under impulsive loading, the effect of many factors on the experimental results should be considered, while the pulse shape on the conical shells is one of the important factors.
在进行锥壳结构瞬态响应试验之前,需要考虑各种因素对试验结果的影响。
4)  circular conical shell
锥壳
5)  slant conical shell
斜锥壳
1.
The slant conical shell of fixed tube-sheet reboiler is simplified for stress analysis with finite element method.
对固定管束釜式重沸器的斜锥壳元件建立了简化力学模型,并进行了有限元分析计算,结果表明大端转角过渡区存在较大的弯曲应力。
2.
Based on the equivalence of tension and bending stiffness,the tube bundle in the fixed tube- sheet kettle-type re-boiler with slant conical shell was considered as an equivalent cylinder.
根据抗拉刚度等效及抗弯刚度等效将换热器管束简化为当量圆筒以考察其对斜锥壳应力状况的影响,同时根据轴向载荷等效及泊松效应等效,对作用在管板布管限定圆内的压力载荷及作用在管束外表面的压力载荷进行了当量转换,建立了考虑管板及管束影响的斜锥壳应力分析简化模型。
3.
With the aid of software ANSYS, the 3D FEA (Finite Element Analysis) model of kettle-type reboiler with fixed-tubesheet and slant conical shell is constructed.
利用有限元软件ANSYS建立了斜锥壳固定管板釜式重沸器的三维有限元模型,模型采用了Solid45、Beam188、Link10、Conta175和Tareg170等多种单元。
6)  conical shell
锥形壳体
1.
In order to explore the filament winding process technology of fiber reinforced plastics conical shells,the fiber laying design,winding pattern and filament winding process parameter are studied in this paper.
本文主要从铺层设计、线型设计、缠绕工艺参数的合理选择及固化成型等方面着手,利用纤维单向缠绕技术对制备锥形壳体的工艺过程进行初步探索研究。
2.
According to rules of GB150 Steel Pressure Vessel, thickness of cylindrical shell, spherical shell and conical shell can be calculated by middle diameter formula, and provide limited application condition of these formulas for cylindrical and spherical shell.
按GB150《钢制压力容器》的规定,圆筒形壳体、球形壳体和锥形壳体的壁厚都可按中径公式进行计算,且对圆筒形壳体和球形壳体给出了公式应用的限定条件,但对锥形壳体却没有给出限定条件。
补充资料:壳壳
1.亦作"殻殻"。 2.诚笃貌。 3.中空貌。 4.象声词。
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