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首页> 外文期刊>Polymer Testing >Parametric study of crushing parameters and failure patterns of pultruded composite tubes using cohesive elements and seam, Part I: Central delamination and triggering modelling
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Parametric study of crushing parameters and failure patterns of pultruded composite tubes using cohesive elements and seam, Part I: Central delamination and triggering modelling

机译:拉挤复合材料管的粘结参数和接缝的破碎参数和破坏模式的参数研究,第一部分:中央分层和触发模型

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Typically, most brittle composite tubes exhibit circumferential delamination, lamina bending, axial cracking and brittle fracture when subjected to static and dynamic loading conditions. In this work, a new innovative approach was adopted to model the above said failure modes using cohesive elements in an axial impact loading case. Circular and square cross sectional pultruded profiles made of glass-polyester were considered for the study. A numerical parametric study has been conducted to study the effect of the delamination on the failure patterns and the corresponding energy absorption using single layer and two layer shell elements. To predict the peak crushing load and the energy absorption, the importance of adequate numerical modelling of triggering is discussed. All numerical simulations were carried out using the commercially available finite element code ABAQUS V6.7-3 Explicit. Finally, the results of this comprehensive numerical investigation are compared with previously published experimental results [1]. Part II of this paper deals with the influence of multiple delaminations and modelling of axial cracks on the deformation patterns and the effect of initial geometric imperfections on the energy absorption.
机译:通常,大多数脆性复合管在静态和动态载荷条件下均表现出周向分层,薄片弯曲,轴向裂纹和脆性断裂。在这项工作中,采用了一种新的创新方法,在轴向冲击载荷的情况下,使用粘性元件对上述失效模式进行建模。研究中考虑了由玻璃聚酯制成的圆形和方形横截面拉挤型材。进行了数值参数研究,以研究分层对破坏模式的影响以及使用单层和两层壳单元的相应能量吸收。为了预测峰值破碎负荷和能量吸收,讨论了适当的触发数值模型的重要性。使用市售的有限元代码ABAQUS V6.7-3 Explicit进行所有数值模拟。最后,将该综合数值研究的结果与以前发表的实验结果进行了比较[1]。本文的第二部分讨论了多次分层和轴向裂纹建模对变形模式的影响以及初始几何缺陷对能量吸收的影响。

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