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1)  flanging of box part
盒形件翻孔
2)  square cup
盒形件
1.
The regularity of the weld bead displacement is deduced by analysing the stress of the square cup stamping.
通过对盒形件拉深过程的应力分析,得到了焊缝移动规律。
2.
The numerical simulation is carried out to square cup's drawing process.
建立了包括板料、凸凹模及压边圈在内的整体分析模型,应用ANSYS软件,对方盒形件拉深成形过程进行了数值模拟,初步探讨了方盒形件的变形特点。
3.
Based on finite element simulation software Dynaform,the process of square cup drawing using TWBs with different thicknesses in Hydro-mechanical deep drawing without draw die was simulated and studied .
基于Dynaform有限元模拟软件,就差厚拼焊板方盒形件的无模充液拉深工艺进行数值仿真与研究。
3)  rectangular box
盒形件
1.
Drawing process of hydroforming deep rectangular box;
深盒形件液压拉深成形工艺研究
2.
Analytical solution of stress in corners during deep drawing for rectangular box;
盒形件拉深角部变形区的应力解析
3.
Critical condition of flange wrinkling for a rectangular box;
盒形件法兰皱曲失稳的临界条件
4)  box-component
盒形塑件
1.
Analysis on forming process and design of injection mould for box-component;
盒形塑件成形工艺分析与注射模设计
5)  square box
盒形件
1.
Analysis of forming of tailor welded blanks square box based on strain path;
拼焊板盒形件冲压成形失效及应变路径分析
2.
A square box was divided into two parts which were TWBs ones of U shape with transverse welding line and U shape with longitudinal welding line.
将拼焊板盒形件分解成包含横向或纵向焊缝的U形件拼焊板,从分析简单U形件拼焊板出发,考虑压边圈类型及压边力大小和分布、焊缝位置和方向等因素的作用,研究盒形件拼焊板金属流动规律和焊缝移动原因及移动趋向。
3.
The depth of calculation method in square box-shaped drawing is introduced.
主要介绍了常用的方形盒形件拉深深度的计算 ,按照传统的计算方法 ,会存在很大的误差 ,采用CAE进行模具设计时 ,通过计算机辅助设计软件建立力学模型 ,使得设计计算变得简单可靠。
6)  box-shape part
盒形制件
补充资料:刀形双翻髻
刀形双翻髻  古代妇女发式,见“单刀髻、双刀髻”。
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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