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Comportement mecanique des joints boulonnes en composites verre-polyester (French and English text).

机译:玻璃-聚酯复合材料中螺栓连接的机械性能(法语和英语)。

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Glass fibre-reinforced polyester composite materials are being extensively used for general-purpose applications. For highly loaded structures, bolted joints are generally the preferred assembly method. However, bolted joints are usually the weakest link in a structure and they must therefore be designed with care. Specifically, the joint geometry, reinforcement type and lay-up should be chosen on a rational basis, otherwise the assembly may fail prematurely. The present study is concerned with the study of these material parameters. The mechanical response of bolted assemblies is studied for a range of six glass fibre-reinforced polyester laminates with reinforcements and lay-ups that are typical for general-purpose applications. In order to assess how changes in joint width or in joint end distance affect the behaviour of the joint, tests were carried out on three coupon geometries.; In accordance with the standard test method ASTM D5961, a single-bolt double lap bolted joint configuration was used for the experimental characterisation. We investigated how the displacement measurement could best be made because currently there is a whole range of approaches in use and it is clear that the measured displacement quantity directly affects the stiffness values. A 3-D finite element model indicated that bolt deformation and fixture deformations affected the measured coupon displacement.; The bearing stiffness was reduced by 26% on average when the width was reduced from six to two times the hole diameter. For the assemblies with a width of two times the hole diameter (w/D = 2) the bearing stiffness increased clearly with the tensile modulus of the tested materials. Both the experimental and numerical bearing stiffness values were much lower than those predicted by joint flexibility formulas. Hence, our results indicate that these joint flexibility formulas should be adapted if they are intended to be used for design of general-purpose glass fibre-reinforced polyester structures with bolt-hole clearance.; The different material/geometry combinations led to very diverse failure modes and strengths, ranging from catastrophic low strength failures to progressive high strength failures. All the small coupons (w/D = 2; e/D = 3) failed catastrophically by tension. We observed that important characteristics of the bearing response such as damage stress, ultimate strength, failure mode and post-failure behaviour were related to reinforcement types and their stacking sequence. (Abstract shortened by UMI.)
机译:玻璃纤维增​​强的聚酯复合材料已广泛用于通用用途。对于高负载结构,螺栓连接通常是首选的组装方法。但是,螺栓连接通常是结构中最薄弱的环节,因此必须谨慎设计。具体来说,应合理选择接头的几何形状,钢筋类型和铺层,否则组装可能会过早失效。本研究与这些材料参数的研究有关。研究了六种玻璃纤维增​​强聚酯层压板的螺栓组件的机械响应,这些层压板具有用于一般用途的典型增强材料和铺层。为了评估接缝宽度或接缝末端距离的变化如何影响接缝的性能,对三种试样几何形状进行了测试。根据标准测试方法ASTM D5961,将单螺栓双搭接螺栓连接配置用于实验表征。我们调查了如何最好地进行位移测量,因为当前使用的是各种方法,并且很明显,所测量的位移量直接影响刚度值。 3-D有限元模型表明,螺栓变形和夹具变形会影响测得的试件位移。当宽度从孔直径的六倍减小到两倍时,轴承刚度平均降低了26%。对于宽度是孔直径(w / D = 2)两倍的组件,轴承刚度随被测材料的拉伸模量而明显增加。实验和数值轴承刚度值均远低于接头挠性公式所预测的值。因此,我们的结果表明,如果要将这些接头柔韧性公式用于设计具有螺栓孔间隙的通用玻璃纤维增​​强聚酯结构,则应对其进行修改。不同的材料/几何形状组合导致非常不同的破坏模式和强度,从灾难性的低强度破坏到渐进的高强度破坏。所有小试样(w / D = 2; e / D = 3)都因张力而灾难性地失败。我们观察到,轴承响应的重要特征,例如破坏应力,极限强度,破坏模式和破坏后的行为与钢筋类型及其堆叠顺序有关。 (摘要由UMI缩短。)

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