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1)  combined ring-shell cross section
加强圈-壳体组合截面
2)  composite section
组合截面
1.
Design of steel-aluminum composite section member in curtain wall construction;
幕墙工程中钢铝组合截面杆件的设计
3)  compound section
组合截面
1.
It also puts forward the problem to be paid attention, when analyzing elastic foundation slab, hybrid structure and compound section with multi-material and cable structure.
介绍ROBOT软件几个可用于特种结构的典型功能,以及分析弹性地基板、组合结构、多种材料组合截面和拉索结构时要注意的问题。
2.
In this paper, advanced integral theory and computer are applied to solve the stress distribution of steel-concrete compound section.
针对钢 混凝土组合结构的截面特性计算问题 ,利用AutoCAD技术 ,进行编程作二次开发 ,对钢 混凝土组合截面的应力进行求解。
4)  built-up section
组合截面
1.
A general model and its heuristic algorithms are presented for engineering structures with discrete variables and built-up sections, where all design variables in a section are combined into one design variable, and restrictive conditions according to the effect ranges are classified into three types, local, global and medium.
建立了组合截面离散变量优化设计的通用模型;提出了一种启发式求解算法。
5)  combined section
组合截面
1.
The Prestressed RPC-NC combined section beams have good performance in durability and economical efficiency;however, the present specifications have not provide a valid and effective calculation method specially to prestressed RPC-NC combined section beams.
预应力RPC-NC组合截面梁具有良好的耐久性能和经济性,但现行规范中尚没有提出一种有效的计算方法,而采用非线性有限元程序对预应力RPC-NC组合截面梁进行全过程分析不失为一种较精确的方法,同时考虑了RPC、NC和钢筋的材料非线性和结构的几何非线性,建立了预应力RPC-NC组合截面梁的三维有限元分析模型,分析并模拟了在三分点荷载作用下加载直到破坏的全过程,并和试验进行了比较。
2.
With the help of the ANSYS,the bending effect under Uniform Load of the thin walled aluminum alloy combined section beam have been calculated by adopting three methods from simulation to predigestion.
本文借助有限元分析软件ANSYS,采用由"仿真"至"简化"的三种不同方法,计算了铝合金薄壁插接组合截面梁在均布荷载下的弯曲效应,通过对计算结果的分析,探讨了适合工程应用的计算方法,并提出了使用该方法时应引起重视的问题。
6)  composite shells
组合壳体
1.
By using a penaltyelement method, the paper provides the compatible relations of composite shells under global coordinates.
本文采用不等距三次B样条函数对旋转壳在整体坐标下的位移进行插值,给出了周向插值所必须满足的周期性条件,采用罚单元法,给出了组合壳体在整体坐标下的协调关系。
补充资料:加强圈
分子式:
CAS号:

性质:为增强容器的刚性和稳定性而固定于容器的内侧或外侧的环状构件称为加强圈。

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