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首页> 外文期刊>ACS applied materials & interfaces >Controllable Fabrication of Zinc Borate Hierarchical Nanostructure on Brucite Surface for Enhanced Mechanical Properties and Flame Retardant Behaviors
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Controllable Fabrication of Zinc Borate Hierarchical Nanostructure on Brucite Surface for Enhanced Mechanical Properties and Flame Retardant Behaviors

机译:可控制制备水镁石硼酸锌层级纳米结构,以增强机械性能和阻燃性能

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摘要

A novel and efficient halogen-free composite flame retardant (CFR) consisting of a brucite core and a fine zinc borate [Zn6O(OH)(BO3)3] hierarchical nanostructure shell was designed and synthesized via a facile nanoengineering route. It had been demonstrated that this unique hybrid structure possessed a high BET specific surface area (65 m~2/g) and could significantly enhance the interfacial interaction when mixing with ethylene-vinyl acetate (EVA). This improved the transfer of stress between CFR particles and EVA matrix and increased the viscosity of EVA/EVA blends, which was beneficial for droplet inhibition and char forming. The mechanical properties and flammability behaviors of the EVA/CFR blends had been compared with the EVA/physical mixture (PM, with the given proportion of brucite and Zn6O(OH)(BO3)3). The mechanical properties of EVA/CFR blends, especially the tensile strength (TS), presented a remarkable increase reaching at least a 20% increment. Meanwhile, with the same 45 wt % of fillers, the EVA/CFR formulation could achieve a limiting oxygen index (LOI) value of 33 (37.5 % higher than that of EVA/PM blends) and UL-94 V-0 rating. Moreover, the heat release rate (HRR), peak heat release rate (PHRR), total heat released (THR), smoke production rate (SPR) and mass loss rate (MLR) were considerably reduced, especially PHRR and SPR for EVA/CFR blends were reduced to 32%. According to this study, the design of fine structure might pave the way for the future development of halogen-free flame retardants combining both enhanced mechanical properties and excellent flame retardant behaviors.
机译:设计并合成了一种新颖有效的无卤复合阻燃剂(CFR),其由水镁石核和精细的硼酸锌[Zn6O(OH)(BO3)3]分层纳米结构壳组成,并通过一种简便的纳米工程路线进行合成。已经证明,这种独特的杂化结构具有高的BET比表面积(65m 2 / g),并且当与乙烯-乙酸乙烯酯(EVA)混合时可以显着增强界面相互作用。这改善了CFR颗粒与EVA基体之间的应力传递,并提高了EVA / EVA共混物的粘度,这对液滴的抑制和炭的形成是有益的。 EVA / CFR共混物的机械性能和可燃性已与EVA /物理混合物(PM,按给定比例的水镁石和Zn6O(OH)(BO3)3)进行了比较。 EVA / CFR共混物的机械性能,尤其是抗张强度(TS)表现出显着的提高,至少达到20%的增量。同时,使用相同的45 wt%填料,EVA / CFR配方可达到33的极限氧指数(LOI)值(比EVA / PM共混物高37.5%)和UL-94 V-0等级。此外,热释放率(HRR),峰值热释放率(PHRR),总热释放(THR),烟雾产生率(SPR)和质量损失率(MLR)大大降低,尤其是EVA / CFR的PHRR和SPR共混物减少到32%。根据这项研究,精细结构的设计可能为结合了增强的机械性能和出色的阻燃性能的无卤阻燃剂的未来发展铺平道路。

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