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Full factorial design analysis on mechanical properties of electron beam irradiated-flame retarded LDPE/EVA composites

机译:电子束照射阻燃LDPE / EVA复合材料力学性能的完整因子设计分析

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This research study aims to investigate the effect of three factors, namely alumina trihydrate (ATH), montmorillonite (MMT) and irradiation dosage on the mechanical properties (tensile strength and elongation at break) of flame-retarded LDPE-EVA composites. In this study, full factorial design analysis was used to examine the effects of factors and their combination interactions on mechanical properties. ATH is the most significant factor in affecting the tensile strength of LDPE-EVA blends due to the poor compatibility effect between ATH particles and LDPE-EVA matrix. However, MMT is the least significant factor on tensile strength of LDPE-EVA composites. ATH was the most significant in affecting the elongation at break of LDPE-EVA blends. This is because the increasing of ATH amount in LDPE-EVA matrix could restrict the mobolity of polymer chains in LDPE-EVA matrix. However, the factor of irradiation dosage was found to be insignificant in affecting the elongation at break of LDPE-EVA blends.
机译:该研究旨在探讨三种因素,即氧化铝三水合物(Ath),蒙脱石(MMT)和辐照剂量对阻燃的LDPE-EVA复合材料的机械性能(抗拉强度和断裂伸长率)的影响。在本研究中,用于检查因素的影响及其组合相互作用对机械性能的影响。由于ATH颗粒和LDPE-EVA基质之间的相容性效应差,ATH是影响LDPE-EVA混合物的拉伸强度的最重要因素。然而,MMT是LDPE-EVA复合材料的拉伸强度的最小值。 Ath是影响LDPE-EVA融合的伸长率最为显着的。这是因为LDPE-EVA基质中的ATH量的增加可以限制LDPE-EVA基质中聚合物链的动员。然而,发现辐照剂量因子在影响LDPE-EVA共混物中的伸长率方面是微不足道的。

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