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首页> 外文期刊>Polymers >Preparation and Characterization of Eco-Friendly Mg(OH) 2 /Lignin Hybrid Material and Its Use as a Functional Filler for Poly(Vinyl Chloride)
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Preparation and Characterization of Eco-Friendly Mg(OH) 2 /Lignin Hybrid Material and Its Use as a Functional Filler for Poly(Vinyl Chloride)

机译:生态友好型Mg(OH)2 /木质素杂化材料的制备和表征及其用作聚(氯乙烯)的功能填料

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A functional magnesium hydroxide/lignin hybrid system was prepared by grinding and mixing the pure precursors using a planetary ball mill. In addition, the thermal stability was assessed based on the total mass loss of the hybrid system within the temperature range of 30–1000 °C, which amounted to 38%. Moreover, the average particle size was at 4.9 μm as determined by the laser diffraction method. The effect of addition of the prepared and characterized Mg(OH) 2 /lignin hybrid filler at concentrations ranging from 2.5 wt % to 10 wt % on the processing as well as mechanical and thermal properties of composites on the matrix of the unplasticized PVC compound was also evaluated. The addition of a filler to the poly(vinyl chloride) matrix causes a significant improvement of its thermal stability, which is approximately three times higher compared to a polymer without a filler. Furthermore, the prepared composites are additionally characterized by advantageous mechanical properties, especially higher Young’s modulus. A 10% increase in the oxygen index of PVC composites upon addition of 10 wt % hybrid fillers has also been observed, which contributes to an extended range of their application under conditions that require notable fire resistance.
机译:通过使用行星球磨机研磨和混合纯前体来制备氢氧化镁/木质素杂交系统。此外,基于杂种系统的总质量损失在30-1000℃的温度范围内评估热稳定性,其达38%。此外,通过激光衍射法测定的平均粒度为4.9μm。加入制备的和表征的Mg(OH)2 / Lignin杂交填料在加工的浓度下的浓度以及未加塑化的PVC化合物基质上的复合材料的机械和热性能下的浓度为0.5wt%至10wt%也评估。向聚(氯乙烯)基质中加入填料导致其热稳定性的显着改善,与没有填料的聚合物相比,其热稳定性的显着提高。此外,制备的复合材料另外的特征在于有利的机械性能,尤其是杨氏模量更高。在加入10wt%杂交填料时,PVC复合材料的氧指数增加了10%的增加,这有助于在需要显着耐火性的条件下施加的延长范围。

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