快速吸水响应性PVA/HEC多孔复合材料的制备及性能
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Preparation and properties of fast water absorption PVA/HEC porous composites
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    摘要:

    将酵母菌作为微生物发泡剂引入到聚乙烯醇(PVA)/羟乙基纤维素(HEC)复合材料中,结合循环冷冻-解冻法制备PVA/HEC多孔复合材料。测试不同实验条件PVA/HEC多孔复合材料的孔隙率、吸水性、保水性。通过FTIR和SEM表征样品的微观结构;采用热重分析仪(TG)、X射线衍射(XRD)仪、万能拉力试验机分析样品热稳定性、结晶性、力学性能。结果表明:酵母菌发泡PVA/HEC多孔复合材料孔呈大孔套小孔的椭圆状开孔结构,吸水响应速率快。保水性良好,24h后保水率降至最低。与未经酵母菌发泡的PVA/HEC复合材料相比,酵母菌发泡PVA/HEC多孔复合材料热稳定性和力学性能均有所提高,压缩强度和极限抗压应力分别是13.2、6.4MPa。

    Abstract:

    The yeast as microbial foaming agent was introduced into the composites of polyvinyl alcohol (PVA)/hydroxyethyl cellulose (HEC). The PVA/HEC porous composites were prepared by freeze/thaw process. The porosity, water absorption and water retention property of PVA/HEC porous composites were tested in different experimental conditions. The microstructure of the samples was characterized by FTIR and SEM. The thermal stability, crystallinity and mechanical properties of the samples were analyzed by thermal gravimetric analyzer (TG), XRD ray diffraction (X) and universal tensile testing machine, respectively. The results show that the pore of PVA/HEC porous composites foamed by yeast exhibit an elliptical open-cell structure that large cells are surrounded by small cells .It has fast water absorption response rate and good water retention. Its water retention rate fell to the lowest after 24h. Comparing with the PVA/HEC porous composites without yeast foamed, the PVA/HEC porous composites foamed by yeast, its properties thermal stability and mechanical properties are improved. The compression strength and the ultimate compressive stress is 13.2 MPa and 6.4Mpa, respectively.

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杨鱼.快速吸水响应性PVA/HEC多孔复合材料的制备及性能[J].精细化工,2017,34(5):0

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  • 收稿日期:2016-09-20
  • 最后修改日期:2016-11-29
  • 录用日期:2016-12-28
  • 在线发布日期: 2017-04-07
  • 出版日期: