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Thermal and structural characterization of superfine down powder

机译:超细羽绒粉的热和结构表征

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The thermal degradation of down fiber and down powder was studied using TG, DSC, TG-FTIR, and ATR-FTIR as a function of mass loss. For both down fiber and down powder, two evident mass loss stages were observed. Compared to down fiber, down powder had higher moisture and lower thermal stability. The oxygen in air weakened the mass loss of superfine down powder in the temperature range of 300-530 C, and accelerated the oxidation-reduction reaction between oxygen and powder when the temperature was over 530 C. The microstructures of down fiber and down powder were investigated on the analysis of DSC results. As the decrease in the average particle size of down powder, the absorbed energy of the destruction of crystallinity, rupture of crosslinks and thermal degradation of peptide bonds decreased, respectively. The gases evolved during thermal degradation of superfine down powder were inspected by in situ FTIR, and then the solid residues collected at different temperature were analyzed using ATR-FTIR. The color evaluation of superfine down powder hot-pressed at high temperature was discussed to confirm the best hot-processing condition.
机译:使用TG,DSC,TG-FTIR和ATR-FTIR研究了羽绒纤维和羽绒粉的热降解与质量损失的关系。对于羽绒纤维和羽绒粉,观察到两个明显的质量损失阶段。与羽绒纤维相比,羽绒粉具有较高的水分和较低的热稳定性。空气中的氧气在300-530 C的温度范围内减弱了超细羽绒粉的质量损失,并在温度超过530 C时加速了氧气与粉末之间的氧化还原反应。羽绒纤维和羽绒的微观结构为对DSC结果的分析进行了调查。随着羽绒粉平均粒径的减小,结晶度破坏,交联断裂和肽键热降解的吸收能分别降低。用原位FTIR检查超细羽绒粉热降解过程中产生的气体,然后使用ATR-FTIR分析在不同温度下收集的固体残留物。讨论了在高温下热压的超细羽绒粉的颜色评估,以确认最佳的热处理条件。

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