A THEORY FOR THE FRACTURE OF THIN PLATES SUBJECTED TO BENDING AND TWISTING MOMENTS

被引:65
作者
HUI, CY
ZEHNDER, AT
机构
[1] Department of Theoretical and Applied Mechanics, Cornell University, Ithaca, 14853-1503, New York
关键词
D O I
10.1007/BF00036341
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Stress fields near the tip of a through crack in an elastic plate under bending and twisting moments are reviewed assuming both Kirchhoff and Reissner plate theories. The crack tip displacement and rotation fields based on the Reissner theory are calculated here for the first time. These results are used to calculate the J-integral (energy release rate) for both Kirchhoff and Reissner plate theories. Invoking Simmonds and Duva's [16] result that the value of the J-integral based on either theory is the same for thin plates, a universal relationship between the Kirchhoff theory stress intensity factors and the Reissner theory stress intensity factors is obtained for thin plates. Calculation of Kirchhoff theory stress intensity factors from finite elements based on energy release rate is illustrated. A small scale yielding like model of the crack tip fields is discussed, where the Kirchhoff theory fields are considered to be the far field conditions for the Reissner theory fields. It is proposed that, for thin plates, fracture toughness and crack growth rates be correlated with the Kirchhoff theory stress intensity factors.
引用
收藏
页码:211 / 229
页数:19
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