• CN:11-2187/TH
  • ISSN:0577-6686

›› 1984, Vol. 20 ›› Issue (2): 48-57.

• 论文 • 上一篇    下一篇

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纤维增强复合压力容器的弹塑性分析

周次青;丘益元   

  1. 华南工学院
  • 发布日期:1984-03-01

ELASTIC-PLASTIC ANALYSES OF FIBER-REINFORCED COMPOSITE PRESSURE VESSEL

Zhou Ciqing;Qiu Yiyuan   

  1. South China Institute of Technology
  • Published:1984-03-01

摘要: 本文研究了圆柱正交异性纤维增强复合压力容器在内压力作用下,弹、塑性的应力解和位移解(采用了Tsai-Hill屈服准则)。给出了弹性极限压力(屈服压力)、极限载荷和安定载荷的公式。并按目前国际上沿用的弹性失效准则、整体屈服设计准则和爆破失效准则[1][4]与各向同性解进行了比较。计算数据表明,用纤维增强复合材料制作的压力容器,不仅弹性极限压力大大提高(K值越大,相对提高值越大),而且,材料抗变形的能力当K≥0.79时亦有所增加。

Abstract: This paper has studied in detail the elastic-plastic solutions of the stress and displacement of cylindrically orthotropic composite pressure vessel under the action of an internal pressure p (with Tsai-Hill Yield Criterion). The formulas of the yield pressure, the limit load and the region of shakedown have been given. According to the Elastic Loss-Effect Criterion, whole Yield Design Criterion and the Explosive Loss-Effect Criterion adopted internationally at present, Comparisons are made with the isotropic solutions. Numerical calculation shows that not only will the yield pressure of the pressure vessel made with fiber-reinforced composite materials increase greatly (the larger the value of k the larger the value of increase percentage), but also the resistance to deformation will increase when the ratio between the inner and outer radii k is equal to or greater than 0.79.