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Failure maps to assess bearing performances of glass composite laminates

机译:故障贴图评估玻璃复合层压板的轴承性能

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摘要

Aim of this article is the assessment of the bearing mechanical performances of pin-loaded glass laminates as function of their geometrical configuration. To this concern, 32 specimens having different hole diameter (D), laminate width (W), and hole center to laminate free edge distance (E) have been tested under bearing conditions. The maximum bearing stress and the stress-displacement curves were analyzed as function both of hole to laminate free edge distance E and hole diameter D. Moreover, an experimental 2D failure map was created by placing the experimental results (i.e., the kind of failure mechanism occurred for each geometrical configuration) in the plane E/D versus W/D ratios. In order to identify a simplified methodology able to design mechanically fastened joints in an easy and effective way, a simplified theoretical failure map on E/D and W/D axes was proposed. The theoretical model showed a good matching with the experimental results validating the proposed approach. In particular, the proposed simplified failure map highlighted that woven glass fiber composite laminates fastened joints should have E/D and W/D ratios higher than 1.6 and 2.1, respectively, in order to stimulate a progressive bearing failure mechanism and achieve the full laminate strength. Finally, another goal of this article was to assess failure mechanisms evolution by drawing a 3D plot (i.e., at varying E/D and W/D geometrical ratios) of the failure index evaluated for each failure mechanism according to the maximum stress criterion. POLYM. COMPOS., 40:1087-1096, 2019. (c) 2018 Society of Plastics Engineers
机译:本文的目的是评估销装载玻璃层压板的轴承机械性能,作为其几何构型的功能。为此,在轴承条件下测试了32个具有不同孔直径(d),层压宽度(e)的样本,层压宽度(e)和孔中心。分析了最大轴承应力和应力 - 位移曲线作为孔两个孔到层压边缘距离E和孔直径D.此外,通过放置实验结果来创建实验2D衰竭图(即,这种故障机构在平面E / D与W / D比率中发生每个几何配置)。为了识别能够以简单有效的方式设计机械紧固接头的简化方法,提出了E / D和W / D轴上的简化理论失效图。理论模型显示出良好的匹配与验证所提出的方法的实验结果。特别地,所提出的简化故障映射突出显示,编织玻璃纤维复合材料层压板紧固接头应分别具有高于1.6和2.1的E / D和W / D比,以便刺激渐进式轴承失效机构并实现全层压强度。最后,本文的另一个目标是通过根据最大应力标准绘制为每个故障机制评估的故障指数的3D绘图(即,变化的E / D和W / D几何比率)来评估失败机制演变。聚合物。 Compos。,40:1087-1096,2019。(c)2018塑料工程师协会

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  • 来源
    《Polymer Composites》 |2019年第3期|共10页
  • 作者单位

    Univ Messina Dept Elect Engn Ind Chem &

    Engn I-98166 Messina Italy;

    Univ Palermo Dept Ingn Civile Ambientale Aerosp Mat Viale Sci Edificio 6 I-90128 Palermo Italy;

    Univ Palermo Dept Ingn Civile Ambientale Aerosp Mat Viale Sci Edificio 6 I-90128 Palermo Italy;

    Univ Messina Dept Elect Engn Ind Chem &

    Engn I-98166 Messina Italy;

    Univ Palermo Dept Ingn Civile Ambientale Aerosp Mat Viale Sci Edificio 6 I-90128 Palermo Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 增强塑料、填充塑料;
  • 关键词

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