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首页> 外文期刊>Meccanica: Journal of the Italian Association of Theoretical and Applied Mechanics >An asymmetrical dynamic model for bridging fiber pull-out of unidirectional composite materials
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An asymmetrical dynamic model for bridging fiber pull-out of unidirectional composite materials

机译:桥接单向复合材料纤维拉出的非对称动力学模型

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摘要

An elastic analysis of an internal crack with bridging fibers parallel to the free surface in an infinite orthotropic elastic plane is studied. An asymmetrical dynamic model for bridging fiber pull-out of unidirectional composite materials is presented for analyzing the distributions of stress and displacement with the internal asymmetrical crack under the loading conditions of an applied non-homogenous stress and the traction forces on crack faces yielded by the bridging fiber pull-out model. Thus the fiber failure is determined by maximum tensile stress, resulting in fiber rupture and hence the crack propagation would occur in a self-similarity manner. The formulation involves the development of a Riemann-Hilbert problem. Analytical solution of an asymmetrical propagation crack of unidirectional composite materials under the conditions of two moving loads given is obtained, respectively. After those analytical solutions were utilized by superposition theorem, the solutions of arbitrary complex problems could be obtained.
机译:研究了在无限正交异性弹性平面中具有平行于自由表面的桥接纤维的内部裂纹的弹性分析。提出了一种桥接单向复合材料纤维拉出的不对称动力学模型,用于分析在施加非均匀应力的载荷条件下内部不对称裂纹的应力和位移分布以及由裂纹产生的裂纹面上的牵引力。桥接光纤拉出模型。因此,纤维破坏是由最大拉伸应力决定的,导致纤维断裂,因此裂纹扩展将以自相似的方式发生。该表述涉及黎曼-希尔伯特问题的发展。分别给出了给定两个运动载荷条件下单向复合材料非对称扩展裂纹的解析解。通过叠加定理利用这些解析解后,可以得到任意复杂问题的解。

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