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Reinforcement of Castor Oil-Based Polyurethane with Surface Modification of Attapulgite

机译:凹凸棒表面改性对蓖麻油基聚氨酯的增强作用

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摘要

Polyurethane/attapulgite (PU/ATT) nanocomposites derived from castor oil were prepared by incorporation of 8 wt % ATT, acid-treated ATT, and KH560-treated ATT. The effects of three ATTs (ATT, acid-ATT, and KH560-ATT) on the comprehensive properties of PU/ATT nanocomposites were systematically investigated. The results showed that the incorporation of 8 wt % of three ATTs could produce an obvious reinforcement on the castor oil-based PU and that the silane modification treatment, rather than the acid treatment, has the more effective reinforcement effect. SEM images revealed the uniform dispersion of ATT in the PU matrix. DMA confirmed that the storage modulus and glass transition temperature (Tg) of PU/ATT nanocomposites were significantly increased after blending with different ATTs. For PU/KH560-ATT8 nanocomposites, the thermal stability of the PU was obviously enhanced by the addition of KH560-ATT. In particular, 8 wt % KH560-ATT loaded castor oil-based PU nanocomposites exhibit an obvious improvement in tensile strength (255%), Young’s modulus (200%), Tg (5.1 °C), the storage modulus at 25 °C (104%), and the initial decomposition temperature (7.7 °C). The prepared bio-based PU materials could be a potential candidate to replace petroleum-based PU products in practical applications.
机译:通过并入8 wt%的ATT,酸处理的ATT和KH560处理的ATT,可以制备得自蓖麻油的聚氨酯/凹凸棒石(PU / ATT)纳米复合材料。系统地研究了三种ATT(ATT,酸性ATT和KH560-ATT)对PU / ATT纳米复合材料综合性能的影响。结果表明,掺入8 wt%的三种ATT可以对蓖麻油基PU产生明显的增强作用,并且硅烷改性处理(而不是酸处理)具有更有效的增强作用。 SEM图像显示ATT在PU基质中的均匀分散。 DMA证实,与不同的ATT混合后,PU / ATT纳米复合材料的储能模量和玻璃化转变温度(Tg)显着提高。对于PU / KH560-ATT8纳米复合材料,加入KH560-ATT可以显着提高PU的热稳定性。特别是,负载8 wt%的KH560-ATT的蓖麻油基PU纳米复合材料在拉伸强度(255%),杨氏模量(200%),Tg(5.1°C)和在25°C( 104%)和初始分解温度(7.7°C)。所制备的生物基聚氨酯材料在实际应用中可能会替代石油基聚氨酯产品。

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