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Modeling of Falling Weight Impact Behavior of Hybrid Basalt/Flax Vinylester Composites

机译:杂交玄武岩/亚麻乙烯酯复合材料的抗重量影响行为的建模

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The present experimental investigation is aimed at modeling the falling weight impact properties of thermosetting composites produced using a partially bio-based vinylester resin with flax and basalt fibers and using them both in a hybrid configuration, therefore obtaining three different types of laminates, fabricated by hand lay-up and resin infusion. Cure processes were accelerated and controlled by applying heat and pressure in autoclave. After acquiring tensile and flexural data, falling weight impact tests were carried out at several energies of up to 40 J, so to induce penetration, but also to have information on the evolution and the different characteristics of damage produced. Modeling analysis was mainly based on the study of impact hysteresis cycles, which correlate the mode of energy absorption, whether quasi-elastic or producing irreversible damage and the rebound characteristics, in case the energy is not sufficient to produce penetration, from the patterns of force vs. displacement curves obtained during impact loading.
机译:本实验研究的目的是模拟热固性复合材料的落锤冲击性能使用具有亚麻和玄武岩纤维的局部生物基乙烯基酯树脂和使用它们两者在混合配置生产的,所以能够获得三种不同类型的层压材料,制造由手糊和树脂浸渍。固化工艺加速和通过在高压釜施加热和压力来控制。获取拉伸和弯曲数据之后,落锤冲击试验是在高达40焦耳的能量数进行的,所以,以诱导渗透,而且还具有对进化和损坏的产生的不同特性的信息。建模分析主要是基于影响滞后周期,这是否相关的能量吸收的模式,的研究准弹性或产生不可逆的损伤和回弹特性,以防能量是不足以产生渗透,从力的图案冲击载荷期间获得与位移曲线。

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