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Density-Adjustable Bio-Based Polysulfide Composite Prepared by Inverse Vulcanization and Bio-Based Fillers

机译:通过反硫化和生物基填料制备的密度可调节生物基聚硫化物复合材料

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摘要

Excess sulfur has become a global problem in petrochemical industry. Inexpensive and easily available cottonseed oil (CSO) is still underutilized. To resolve these issues, bio-based polysulfide composites were prepared via inverse vulcanization of sulfur and CSO. The density of polysulfide composites was adjusted by fillers. The results showed that Elm and cattail as the fillers had no effects on the thermal properties and chemical structures of polysulfide composites. However, the morphologies of polysulfide composites were significantly influenced by the fillers. Different types and amounts of fillers produced significantly different holes and folds in the composites. The fillers were embedded in polysulfide composites by physical filling. This study provides an alternative and promising approach for preparing affordable density-adjustable bio-based polysulfide composite.
机译:过量的硫磺已成为石化行业的全球性问题。廉价且易于可用的棉籽油(CSO)仍然未充分利用。为了解决这些问题,通过硫和CSO的逆硫化制备生物基多硫化物复合材料。通过填料调节多硫化物复合材料的密度。结果表明,Elm和Cattail作为填料对多硫化物复合材料的热性能和化学结构没有影响。然而,多硫化物复合材料的形态受填料的显着影响。不同类型和量的填料产生显着不同的孔和复合材料中的折叠。通过物理填充将填料嵌入多硫化物复合材料中。该研究提供了制备实惠的密度可调的生物基聚硫化物复合材料的替代和有希望的方法。

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