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Multi-scale analysis of the effect of loading conditions on monotonic and fatigue behavior of a glass fiber reinforced polyphenylene sulfide (PPS) composite

机译:加载条件对玻璃纤维增​​强聚苯硫醚(PPS)复合材料单调和疲劳行为影响的多尺度分析

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摘要

In this paper, two kinds of PPS/GF composite samples (PPS-0 degrees, PPS-90 degrees) were prepared with two different fiber main orientations related to the injection direction. A wide range of their properties were discussed. Using DMTA analysis, it was shown that the PPS/GF composite under study obeyed the time-temperature equivalence principle. Moreover, Perez model was verified and gave a good estimation of the viscoelastic properties of the PPS/GF. Monotonic and fatigue behaviors and fatigue life of PPS/GF were investigated. Fiber's orientation, applied amplitude and loading frequency effects were emphasized. Self-heating effect on fatigue strength was also analyzed. SEM fracture surface observations allowed analyzing, at the local scale, the main deformation mechanisms occurring during mechanical loading. No evident damage development was observed for both monotonic and fatigue loading. PPS matrix plasticity appeared to be the predominant deformation mechanism until a semi-ductile or semi-brittle final failure depending on the loading conditions and local microstructure.
机译:本文制备了两种PPS / GF复合样品(PPS-0度,PPS-90度),它们具有与注射方向相关的两种不同的纤维主取向。讨论了它们的各种性能。使用DMTA分析,表明所研究的PPS / GF复合材料符合时间-温度等效原理。此外,对Perez模型进行了验证,并很好地估计了PPS / GF的粘弹性。研究了PPS / GF的单调和疲劳行为以及疲劳寿命。强调了纤维的取向,施加的幅度和加载频率的影响。还分析了自热对疲劳强度的影响。 SEM断裂表面观察允许在局部范围内分析机械载荷过程中发生的主要变形机理。对于单调和疲劳载荷均未观察到明显的损伤发展。 PPS基质可塑性似乎是主要的变形机制,直到最终根据载荷条件和局部微观结构发生半韧性或半脆性最终破坏为止。

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  • 来源
    《Composites》 |2018年第7期|173-181|共9页
  • 作者单位

    Arts & Metiers ParisTech, PIMM UMR CNRS 8006, 151 Blvd Hop, F-75013 Paris, France;

    Valeo Therm Habitacle, Valeo Powertrain Thermal Syst, 8 Rue Louis Lormand, F-78321 La Varriere, France;

    Arts & Metiers ParisTech, PIMM UMR CNRS 8006, 151 Blvd Hop, F-75013 Paris, France;

    Arts & Metiers ParisTech, PIMM UMR CNRS 8006, 151 Blvd Hop, F-75013 Paris, France;

    Arts & Metiers ParisTech, PIMM UMR CNRS 8006, 151 Blvd Hop, F-75013 Paris, France;

    Arts & Metiers ParisTech, Dynfluid UMR CNRS 8006, 151 Blvd Hop, F-75013 Paris, France;

    Arts & Metiers ParisTech, PIMM UMR CNRS 8006, 151 Blvd Hop, F-75013 Paris, France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Poly-phenylene sulfide (PPS); Composite; Glass fiber; Fatigue behavior; Self-heating;

    机译:聚苯硫醚(PPS);复合材料;玻璃纤维;疲劳行为;自热;

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