Association Journal of CSIAM
Supervised by Ministry of Education of PRC
Sponsored by Xi'an Jiaotong University
ISSN 1005-3085  CN 61-1269/O1

Chinese Journal of Engineering Mathematics

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Stress Analysis of Finite Octagonal Two-dimensional Quasicrystal Problem with Elliptical Hole

CHEN Decai1,   WANG Guixia1,2,   LI Lianhe1,2   

  1. 1. College of Mathematics Science, Inner Mongolia Normal University, Hohhot 010022
    2. Inner Mongolia Center of Applied Mathematics, Hohhot 010022
  • Received:2023-01-05 Accepted:2023-05-22
  • Contact: G. Wang. E-mail address: nsdwgx@126.com
  • Supported by:
    The National Natural Science Foundation of China (11962026); the Natural Science Foundation of Inner Mongolia Autonomous Region (2022ZD05); the Research Funding Project of Inner Mongolia Autonomous Region University (NJZZ21003); the Research Innovation Fund Project of Inner Mongolia Normal University Graduate (CXJJS22099).

Abstract:

Firstly, the extended Stroh formulism is used to study the Green's function of an infinite octagonal two-dimensional quasicrystals plate with an elliptical hole. And the fundamental solution of the boundary element method for solving the finite octagonal two-dimensional quasicrystals plate with an elliptical hole is obtained. Secondly, the boundary integral equation is established by using the weighted residual method. The boundary integral equation with unknown quantity is discretized by linear interpolation function and Gauss integral, and the discrete format is reorganized to form a linear system of equations with unified variables. Finally, the hole edge stress of the elliptical hole is numerically solved, and the numerical results of the finite plate are compared with the analytical solution of the infinite plate to verify the effectiveness of the boundary element method. The influence of the size of the plate, the size of the hole and the inclination angle on the stress at the edge of the hole under vertical tension are further analyzed. The results of numerical examples show that the stress concentration at the edge of the hole is more obvious with the increase of the size of the elliptical hole. The inclination of the elliptical hole aggravates the stress concentration at the edge of the hole. The stress intensity factor at the crack tip increases with the growth of the crack.

Key words: boundary element method, octagonal two-dimensional quasicrystals, finite size, elliptical hole, stress concentration factor

CLC Number: