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Structure and Properties of Cork-Silica Xerogel Nanocomposites: Influence of the Cork Content

机译:软木二氧化硅Xerogel纳米复合材料的结构与性质:软木含量的影响

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摘要

Environmentally friendly nanocomposites were synthesized from a silica precursor and cork under mild conditions and dried at atmospheric pressure. Because of the covalent bonding between the components, these CorSil nanocomposites are homogeneous, light (apparent density in the range 360-750 kg m(-3)), machinable, with the Shore D hardness up to 67 and compressive strength up to 22.6 MPa. These properties place them as good replacements for wood, other natural products, and thermoplastic polymers, with the advantage of being flame-retardant. The influence of the cork content and grain size on the structure, porosity, and mechanical properties of the nano composites was studied using infrared spectroscopy, sorption isotherms, compressive strength, and Shore D hardness measurements.
机译:在温和条件下从二氧化硅前体和软木合成环保纳米复合材料,并在大气压下干燥。 由于组分之间的共价键合,这些纤核纳米复合材料是均匀的,光(表观密度为360-750kg m(-3)),可加工,侧岸d硬度高达67,抗压强度高达22.6 mpa 。 这些性质将它们视为木材,其他天然产物和热塑性聚合物的良好替代品,其具有阻燃性的优点。 使用红外光谱,吸附等温线,抗压强度和肖氏D硬度测量研究了软木含量和粒度对纳米复合材料的结构,孔隙率和力学性能的影响。

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