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EVALUATE THE MECHANICAL AND THERMAL BEHAVIOURAL DEFORMATION OFAUXETIC COMPOSITE NANO-CARBON FIBERS

机译:评价铝塑复合碳纤维的力学和热行为变形

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This study aims to identify the composition of the pyrolysis products obtained through pyrolysis in the structure of different auxetic designs. Two design specimens of auxetic nano-carbon fibers with different directional load were fabricated, solid carbon fibers and hexagonal auxetic carbon fibers. The deformation behavior is well-known and has been analyzed. 3D finite element (FE) models were used to investigate both structures. There was some impact on the specimens used, and the behavior of the strain and stress line was captured. The main purpose of the experiment was to define and test the auxetic structure's use in industries that require nano-carbon fiber material that has excessively good mechanical and thermal properties. In order to prevent the deterioration of the properties caused by this phenomenon, sizing of the yarns and bundles was carried out. Moreover, to form a sizing coating on the elementary fibers, DMA tests have been conducted, and both the thermal and mechanical properties investigated. In this case, the sizing agent must be in a sufficiently softened state. The compositions can improve nano-carbon vs the adhesion of the polymer matrix for auxetic nano-carbon fibers, which allows the use of such fibers for the reinforcement of plastics without extra processing.
机译:这项研究的目的是确定通过热解获得的热解产物在不同膨胀设计结构中的组成。分别制备了两种不同方向载荷的膨胀型纳米碳纤维设计标本,即实心碳纤维和六角形膨胀型碳纤维。变形行为是众所周知的并且已经被分析。 3D有限元(FE)模型用于研究两种结构。对所使用的样品产生了一些影响,并记录了应变和应力线的行为。该实验的主要目的是定义和测试膨胀结构在需要纳米碳纤维材料(其机械性能和热性能过高)的行业中的用途。为了防止由该现象引起的性能下降,对纱线和束进行了上浆。此外,为了在基本纤维上形成上浆涂层,已经进行了DMA测试,并研究了热性能和机械性能。在这种情况下,上浆剂必须处于足够软化的状态。所述组合物可以改善纳米碳,而不是用于膨胀纳米碳纤维的聚合物基质的粘合性,这允许将这种纤维用于增强塑料而无需额外的处理。

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