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1)  hold-down cylinder
压紧圆筒,固定圆筒
2)  stationary cylinder
固定圆筒
3)  self-shrinking cylinder
自紧圆筒
4)  autoferritage cylinder,self-shrinking cylinder
自紧高压圆筒
5)  Internal Pressure Cylinder
内压圆筒
1.
Elastic-Plastic Finite Element Analysis of the Nozzles With the Big Nozzle-to-Cylinder Diameter Ratio on the Internal Pressure Cylinders;
内压圆筒大开孔率接管弹塑性有限元分析
2.
Fuzzy Reliability of the Static Strength of the Thin-Wall Internal Pressure Cylinders at Pressure Tests;
压力试验时薄壁内压圆筒静强度的模糊可靠度
6)  cylinder subjected to external pressure
外压圆筒
1.
Based on the principles used in ASME VIII-1 and other codes, the comparison of design methods for the cylinder subjected to external pressure in AD code and ASME VIII-1 was carried out.
本文据ASMEⅧ -1及其它有关规范的制订原理 ,对AD规范和ASMEⅧ -1的外压圆筒设计方法进行比较 ,并指出GB150-1998对厚、薄壁界限的修改有所不
2.
On the basis of the calculation method for the cylinder subjected to external pressure and the relevant content in ASME VIII-1, the revision of the calculation for the cylinder subjected to external pressure was discussed in this paper.
本文以外压圆筒的稳定性计算原理和ASMEⅧ-1为基础,对GB150-1998的修订提出商榷。
补充资料:自紧圆筒
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性质:在单层厚壁圆筒内施以较设计压力为高的压力,使简体内壁产生局部塑性变形,外壁仅产生弹性变形;压力卸去后,外壁有残余拉应力,内壁有残余压应力。这种由外层筒壁自紧效果而使简体强化的简体称自紧圆筒。经过这样处理的简体,承受内压时,筒壁内沿径向方向的应力分布较为均匀,故承载能力增强。这种使筒体承载能力增强的方法称为自增强法。

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