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Viscoelastic and viscoplastic behavior of a fully recycled carbon fiber-reinforced maleic anhydride grafted polypropylene modified polypropylene composite

机译:完全回收的碳纤维增强的马来酸酐接枝聚丙烯改性聚丙烯复合材料的粘弹性和粘塑性行为

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摘要

The effect of maleic anhydride grafted polypropylene (MAPP) coupling agents on properties of a new composite made of recycled carbon fibers and recycled polypropylene (rCF/[rPP + MAPP]) was studied experimentally. This new material presented significantly improved properties, compared to the previous generation, without the addition of MAPP (Giannadakis K, Szpieg M and Varna J. Mechanical performance of recycled carbon fibre/PP. Exp Mech 2010; published online.). This was mostly attributed to improvement of the fiber/matrix interface. The inelastic and time-dependent behavior of the MAPP modified composite material in tension was analyzed. A series of quasi-static tensile and creep tests were performed to identify the material model, which accounts for: (a) damage-related stiffness reduction, (b)development of stress and time-dependent irreversible strains described as viscoplasticity, (c) nonlinear viscoelastic behavior. The damage-related stiffness reduction was found to be less than 10%. Although damage-dependent stiffness was not the main source of nonlinearity, it was included in the inelastic material model. In creep tests, it was found that the time and stress dependence of viscoplastic strains follows a power law, which makes the determination of the parameters in the viscoplasticity model relatively simple. The viscoelastic response of the composite was found to be linear in the investigated stress domain. The material model was validated in constant stress rate tensile tests.
机译:实验研究了马来酸酐接枝聚丙烯(MAPP)偶联剂对由再生碳纤维和再生聚丙烯(rCF / [rPP + MAPP])制成的新型复合材料的性能的影响。与上一代产品相比,这种新材料具有显着改善的性能,但未添加MAPP(Giannadakis K,Szpieg M和Varna J.再生碳纤维/ PP的机械性能,Exp Mech 2010;在线发布)。这主要归因于光纤/矩阵界面的改进。分析了MAPP改性复合材料在张力下的非弹性和时变行为。进行了一系列准静态拉伸和蠕变测试,以确定材料模型,该模型解释了:(a)与损伤有关的刚度降低;(b)应力的发展以及与时间有关的不可逆应变,称为粘塑性;(c)非线性粘弹性行为。发现与损伤相关的刚度降低小于10%。尽管取决于损伤的刚度不是非线性的主要来源,但它已包含在非弹性材料模型中。在蠕变测试中,发现粘塑性应变的时间和应力依赖性遵循幂定律,这使得粘塑性模型中参数的确定相对简单。在研究的应力范围内,发现复合材料的粘弹性响应是线性的。在恒定应力率拉伸试验中验证了材料模型。

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