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The influence of the web-flange junction stiffness on the mechanical behaviour of thin-walled pultruded beams

机译:腹板-法兰连接刚度对薄壁拉挤梁力学性能的影响

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摘要

Composite thin walled members, produced by the manufacturing process of pultrusion, exhibit structural behaviour that is governed by their specific stiffness and strength properties. Although the basic knowledge about their constitutive behaviour has already been assessed in current technical literature, several relevant features are still being studied. They include the evaluation of the long term behaviour, the influence of the shear deformations, the buckling load as well as the influence of the web-flange junction stiffness. Due to the presence of unidirectional fibres along the length of the beam, the condition of a rigid connection between the flanges and web panel should be replaced by accounting for possible relative tor-sional rotations, which can influence the pre-buckling behaviour. In this paper, a one dimensional mechanical model with the purpose of detecting such an influence is presented. The model, which is based on many common assumptions (a linear kinematics conjugated with small strains and moderate rotations), is innovative in relation to the presence of a few additional degrees of freedom which allow to simulate the web/flange relative rotations, thus generalizing the classical assumptions concerning the generic cross-section which maintains it un-deformed. Many numerical examples obtained by using a finite element approximation with the aim of highlighting the model capabilities have been developed.
机译:通过拉挤成型制造工艺生产的复合薄壁构件,其结构性能受其特定的刚度和强度特性支配。尽管有关它们的本构行为的基本知识已经在当前的技术文献中进行了评估,但仍在研究几个相关的特征。它们包括对长期性能的评估,剪切变形的影响,屈曲载荷以及腹板-法兰连接刚度的影响。由于沿梁的长度存在单向纤维,因此应考虑可能的相对扭转旋转,以代替法兰和腹板之间的刚性连接条件,因为扭转旋转可能会影响预屈曲性能。本文提出了一种旨在检测这种影响的一维力学模型。该模型基于许多常见假设(线性运动学与小应变和适度旋转共轭),相对于存在一些额外的自由度(该自由度可以模拟腹板/法兰的相对旋转)进行了创新,因此可以推广关于通用横截面的经典假设使它保持未变形。已经开发了许多通过使用有限元逼近获得的数值示例,目的是突出模型的功能。

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