Applied Mathematics and Mechanics (English Edition) ›› 1999, Vol. 20 ›› Issue (7): 773-780.

• 论文 • 上一篇    下一篇

ITERATIVE METHOD FOR LARGE DEFLECTION NONLINEAR PROBLEM OF LAMINATED COMPOSITE SHALLOW SHELLS AND PLATES

尹邦信   

  1. Department of Civil Engineering, Southwest Institute of Technology, Mianyang 621000, P. R. China
  • 收稿日期:1996-11-26 修回日期:1999-03-10 出版日期:1999-07-18 发布日期:1999-07-18

ITERATIVE METHOD FOR LARGE DEFLECTION NONLINEAR PROBLEM OF LAMINATED COMPOSITE SHALLOW SHELLS AND PLATES

Yin Bangxin   

  1. Department of Civil Engineering, Southwest Institute of Technology, Mianyang 621000, P. R. China
  • Received:1996-11-26 Revised:1999-03-10 Online:1999-07-18 Published:1999-07-18

摘要: Based on the results by Wang,in this paper, the iterative method is presented for the study of large deflection nonlinear problem of laminated composite shallow shells and plates. The rectangular laminated composite shallow shells have been analyzed. The results have been compared with the small deflection linear analytical solution and finite element nonlinear solution. The results proved that the solution coincide with small deflection linear analytical solution in the condition of the low loads and finite element nonlinear solution in the condition of the high loads.

关键词: piezoelectric material, interface inclusion, complex potential, tip field, Stroh formula, laminated composite shallow shells and plates, large deflection, iterative method

Abstract: Based on the results by Wang,in this paper, the iterative method is presented for the study of large deflection nonlinear problem of laminated composite shallow shells and plates. The rectangular laminated composite shallow shells have been analyzed. The results have been compared with the small deflection linear analytical solution and finite element nonlinear solution. The results proved that the solution coincide with small deflection linear analytical solution in the condition of the low loads and finite element nonlinear solution in the condition of the high loads.

Key words: piezoelectric material, interface inclusion, complex potential, tip field, Stroh formula, laminated composite shallow shells and plates, large deflection, iterative method

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