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Mechanical properties, thermal and crystallization behavior of different surface-modified silica nanoparticle-filled PA66 composites

机译:不同表面改性的二氧化硅纳米颗粒填充的PA66复合材料的力学性能,热学和结晶行为

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In this study, two different surface-modified silica nanoparticles, amino-functionalized nanosilica (ATS) and methyl-functionalized nanosilica (HDS), were separately used as nanofillers to fabricate PA66-based nanocomposites by melt blending. The morphology and interface characteristics of the two nanofillers in the composite system and their influence on the mechanical properties, thermal decomposition behavior, and crystallization behavior of PA66 were investigated. The Avrami and Mo methods were applied to study the non-isothermal crystallization kinetics of the nanocomposites. The results revealed that different surface modifications of silica nanoparticles can produce different influences on the mechanical properties and thermal decomposition behavior of the final nanocomposites. The addition of ATS helps increase the strength and stiffness of PA66/ATS nanocomposites, and in the meantime enhances the thermal stability of PA66. The case of HDS is opposite to that of ATS; however, its incorporation can improve the toughness of the material. In addition, the results also indicate that ATS possesses strong heterogeneous nucleation capability, the introduction of which can accelerate the crystallization rate and increase the crystallization temperature, as well as the degree of crystallinity of PA66, while HDS displays an obvious blocking effect on the crystallization process of PA66.
机译:在这项研究中,两种不同的表面改性的二氧化硅纳米粒子,氨基官能化的纳米二氧化硅(ATS)和甲基官能化的纳米二氧化硅(HDS),分别用作纳米填料,通过熔融共混制备PA66基纳米复合材料。研究了两种纳米填料在复合体系中的形貌和界面特征及其对PA66力学性能,热分解行为和结晶行为的影响。采用Avrami和Mo方法研究了纳米复合材料的非等温结晶动力学。结果表明,二氧化硅纳米颗粒的不同表面改性可以对最终纳米复合材料的机械性能和热分解行为产生不同的影响。添加ATS有助于提高PA66 / ATS纳米复合材料的强度和刚度,同时增强PA66的热稳定性。 HDS的情况与ATS的情况相反;但是,其掺入可以提高材料的韧性。此外,结果还表明,ATS具有很强的异相成核能力,引入ATS可以加快结晶速度,提高结晶温度,以及PA66的结晶度,而HDS对结晶具有明显的阻滞作用。 PA66的过程。

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