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Improved mechanical properties and hydrophobicity on wood flour reinforced composites: Incorporation of silica/montmorillonite nanoparticles in polymers

机译:改进木粉增强复合材料的机械性能和疏水性:在聚合物中掺入二氧化硅/蒙脱石纳米粒子

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Silica/montmorillonite hybrid nanoparticles were prepared to modify high-density polyethylene which was used to fabricate wood/polymer composites (WPC). Surface modification of hybrids with gamma-methacryloxypropyltrimethoxysilane (MPTS) increased water contact angles from 10.7 degrees to 88.1 degrees and decreased the content of hydroxyl groups (42% relative -OH content), indicating the successful grafting of MPTS. Compared with silica, the layered structure of montmorillonite (MMT) provided a better barrier (tortuous paths) for water penetration, and the incorporation of silica in hybrids provided more sites for MPTS grafting. Both of them resulted in the improvement on hydrophobicity for hybrids and WPCs. In the WPC system, some silicas in modified hybrids were not only dispersed in the polymer matrix but also penetrated into the cell wall of wood flours (WF) owing to the extruded process. The MMT in hybrids could mainly cover the WF surface. This distribution of hybrids could improve the WF mechanical strength and interfacial compatibility between the WF and polymer with the help of MPTS, resulting in enhanced mechanical properties of the composites. Compared with control (without nanoparticles), the tensile strength, impact strength, modulus of rupture and modulus of elasticity of the WPC with modified hybrids incorporation increased by 31%, 47%, 18%, and 28%, respectively.
机译:制备二氧化硅/蒙脱石杂交纳米粒子以改变用于制造木材/聚合物复合材料(WPC)的高密度聚乙烯。用γ-甲基丙烯酰氧基丙基三甲氧基硅烷(MPTS)的杂交种的表面改性从10.7度增加到88.1度并降低羟基(相对-OH含量42%)的含量,表明MPT的成功接枝。与二氧化硅相比,蒙脱石(MMT)的层状结构提供了用于水渗透的更好的屏障(曲折路径),并且二氧化硅在杂交种中的掺入提供了更多位点用于覆盆的MPTS接枝。它们都导致杂种和WPC的疏水性改善。在WPC系统中,改性杂交中的一些二氧化硅不仅分散在聚合物基质中,而且由于挤出的方法,也渗透到木粉(WF)的细胞壁中。杂种中的MMT主要覆盖WF表面。这种杂种的这种分布可以在MPT的帮助下改善WF和聚合物之间的WF机械强度和界面相容性,从而产生复合材料的力学性能。与对照(没有纳米颗粒)相比,WPC的抗拉强度,冲击强度,破裂模量和改性杂交种的弹性模量分别掺入了31%,47%,18%和28%。

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