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Fatigue behavior and cyclic damage of peek short fiber reinforced composites

机译:聚醚醚酮短纤维增强复合材料的疲劳行为和循环损伤

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摘要

Fatigue strength and failure mechanisms of short fiber reinforced (SFR) PEEK have been investigated in the past by several research groups. However some relevant aspects of the fatigue behavior of these materials, like cyclic creep and fatigue damage accumulation and modeling, have not been studied yet, in particular in presence of both fillers and short fibers as reinforcement. In the present research these aspects were considered by carrying out uni-axial fatigue tests in load control (cycle ratio R = 0) on neat PEEK and PEEK based composites reinforced either with short carbon fibers only or with addition of fillers (graphite and PTFE). For each material stress-life curves were obtained and compared. Fatigue fracture surfaces were analyzed to identify failure mechanisms in presence of different reinforcement types. The evolution of cyclic creep strain was also monitored as a function of the number of cycles, thus allowing investigation on the correlation between cyclic creep parameters and fatigue life. The evolution of cyclic damage with loading cycles was then compared by defining a damage parameter related to the specimen stiffness reduction observed during the tests. Progressive cyclic damage evolution of short fiber reinforced PEEK composites presented significantly different patterns depending on applied stress level and on the presence of different reinforcement typologies. In order to reproduce the different fatigue damage kinetics and stages of progressive damage accumulation observed experimentally, a cyclic damage model was finally developed and implemented into a finite element code by which a satisfactory agreement between numerical prediction and experimental data at different stress levels for each examined material.
机译:过去,几个研究小组已经对短纤维增强(SFR)PEEK的疲劳强度和破坏机理进行了研究。但是,尚未研究这些材料的疲劳行为的一些相关方面,例如循环蠕变和疲劳损伤的积累和建模,特别是在同时存在填料和短纤维作为增强材料的情况下。在本研究中,通过对纯PEEK和仅用短碳纤维或添加填料(石墨和PTFE)增强的PEEK和PEEK基复合材料进行负荷控制(循环比R = 0)的单轴疲劳试验来考虑这些方面。 。对于每种材料,均获得并比较了应力-寿命曲线。对疲劳断裂表面进行了分析,以确定存在不同类型钢筋时的破坏机理。循环蠕变应变的演变也作为循环次数的函数进行监控,因此可以研究循环蠕变参数与疲劳寿命之间的相关性。然后,通过定义与试验期间观察到的试样刚度降低相关的损伤参数,来比较循环损伤随载荷循环的演变。短纤维增强PEEK复合材料的渐进式循环损伤演化表现出明显不同的模式,具体取决于施加的应力水平和不同的增强类型。为了重现不同的疲劳损伤动力学和实验观察到的渐进损伤累积阶段,最终开发出了循环损伤模型并将其实施为有限元代码,通过该模型,在每个应力水平下,数值预测和实验数据之间的令人满意的一致性材料。

著录项

  • 来源
    《Composites 》 |2013年第1期| 397-406| 共10页
  • 作者单位

    Mechanical and Industrial Engineering Department, University of Brescia, Via Bronze 38, 25128 Brescia, Italy;

    Mechanical and Industrial Engineering Department, University of Brescia, Via Bronze 38, 25128 Brescia, Italy;

    Mechanical and Industrial Engineering Department, University of Brescia, Via Bronze 38, 25128 Brescia, Italy;

    Mechanical and Industrial Engineering Department, University of Brescia, Via Bronze 38, 25128 Brescia, Italy;

    Mechanical and Industrial Engineering Department, University of Brescia, Via Bronze 38, 25128 Brescia, Italy;

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

    A. Discontinuous reinforcement; B. Fatigue; C. Damage mechanics;

    机译:A.不连续加固;B.疲劳;C.损伤力学;

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