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Extension of generalized plane strain plates with reinforced cracks

机译:具有增强裂纹的广义平面应变板的扩展

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Applying the transversally isotropic generalized plane strain plate of Mindlin and Kane, as refined by Kotousov and Wang, the authors use Fourier transforms to develop a hyper-singular line-spring model for a reinforced crack under extensional loads, enabling the analysis of cracks in plates of arbitrary thickness. The new model is used to develop fracture mechanics geometry correction factors to account for the effect of the transverse modulus, Poisson's ratio, and plate thick-ness on the stress intensity and crack opening displacement. The model is then used to examine the reinforcing effect of springs bridging the crack faces and extend the Rose model to include plate thickness effects, allowing the inclusion of plate thickness effects in the fracture mechanics analysis of reinforced cracks.
机译:作者使用了由Kotousov和Wang改进的Mindlin和Kane的横观各向同性广义平面应变板,作者使用傅立叶变换建立了一个超奇异的线弹簧模型,用于拉伸载荷下的增强裂纹,从而可以分析板中的裂纹任意厚度。该新模型用于开发断裂力学的几何校正因子,以考虑横向模量,泊松比和板厚对应力强度和裂纹开口位移的影响。然后,使用该模型检查桥接裂缝面的弹簧的增强效果,并将Rose模型扩展到包括板厚效应,从而在增强裂缝的断裂力学分析中包括板厚效应。

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