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A dynamic model of bridging fiber pull-out of composite materials

机译:复合材料桥接纤维拔出的动力学模型

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An elastic analysis of an internal central crack with bridging fibers parallel to the free surface in an infinite orthotropic anisotropic elastic plane is carried out. In this paper a dynamic model of bridging fiber pull-out is presented for analyzing the distributions stress and displacement of composite materials with the internal central crack under the loading conditions of an applied non-uniform stress and the traction forces on crack faces yielded by the fiber pull-out model. Thus the fiber failure is determined by maximum tensile stress, the fiber breaks and hence the crack propagation should occur in self-similar fashion. By reducing the dynamic model to the Keldysh-Sedov mixed boundary value problem. a straightforward and easy analytical solution can be attained. When the crack extends, its fibers continue to break. Analytical study on the crack extension under the action of an inhomogeneous point force Px/t, R is obtained for orthotropic anisotropic body, respectively; and it can be utilized to attain the concrete solutions of the model by the ways of superposition. (C) 2003 Published by Elsevier Ltd.
机译:对在无限正交各向异性各向异性弹性平面内平行于自由表面的桥接纤维进行内部中心裂纹的弹性分析。本文提出了一种桥接纤维拔出的动力学模型,用于分析在施加非均匀应力的载荷条件下复合材料的内部中心裂纹的分布应力和位移,以及裂纹产生的裂纹面上的牵引力。光纤拉出模型。因此,纤维破坏是由最大拉应力决定的,纤维断裂,因此裂纹扩展应该以自相似的方式发生。通过将动力学模型简化为Keldysh-Sedov混合边值问题。可以实现简单明了的分析解决方案。当裂纹扩展时,其纤维继续断裂。分别获得正交各向异性各向异性体在非均匀点力Px / t,R作用下的裂纹扩展的解析研究。可以通过叠加的方式来获得模型的具体解。 (C)2003年由Elsevier Ltd.出版

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