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Effect of light-delignification on mechanical, hydrophobic, and thermal properties of high-strength molded fiber materials

机译:光脱铜化对高强度模塑纤维材料机械,疏水性和热性能的影响

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This study developed a high-strength molded fiber material (HMFM) using pulp fibers, which could be a good substitute for plastic and solid wood materials. The surface composition, microstructure and thermal properties of HMFM were investigated by XPS, SEM and DSC, respectively. The SEM observations showed that the obvious adhesive substances and agglomeration appeared among fibers, and the inter-fiber contact area and binding tightness increased after the light-delignification. The XPS examination showed that the oxygen-rich composition on the outer surface of HMFM were reduced, and the outer surface coverage of lignin increased from 70.05% to 90.15% after the light-delignification. The DSC observation showed that the thermal stability of HMFM decreased, the temperature for the maximum rate of mass loss decreased from 370?°C to 345.6?°C, and the enthalpy value required for decomposition was reduced from 110.8?J/g to 68.0?J/g after the light-delignification. The mechanical and hydrophobic properties of HMFM were obviously improved after the light-delignification. When the content of lignin decreased from 24.9% to 11.45%, the density of HMFM increased by 6.0%, the tensile strength increased by 22.0%, the bending strength increased by 23.9%, and the water contact angle increased from 64.3°–72.7° to 80.8°–84.3°.
机译:本研究开发了一种使用纸浆纤维的高强度模塑纤维材料(HMFM),这可能是塑料和实木材料的良好替代品。通过XPS,SEM和DSC研究HMFM的表面组成,微观结构和热性质。 SEM观察结果表明,在纤维中出现明显的粘合物质和附聚,并且在光脱铝后,纤维间接触面积和纤维间接触面积和结合紧张增加。 XPS检查表明,富含HMFM的外表面上的富氧组合物,木质素的外表面覆盖率在光脱铝后从70.05%增加到90.15%。 DSC观察结果表明,HMFM的热稳定性降低,最大质量损失率的温度从370℃降低至345.6?°C,分解所需的焓值从110.8?J / G至68.0降低亮相后的J / G。在光脱铝后,HMFM的机械和疏水性质明显改善。当木质素的含量从24.9%降至11.45%时,HMFM的密度增加了6.0%,拉伸强度增加22.0%,弯曲强度增加23.9%,水接触角增加到64.3°-72.7°到80.8°-84.3°。

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