中国塑料 ›› 2019, Vol. 33 ›› Issue (9): 33-40.DOI: 10.19491/j.issn.1001-9278.2019.09.006

• 材料与性能 • 上一篇    下一篇

超疏水PE-HD/麦秸秆纤维复合材料的制备及其性能

侯成敏,王梅,张效林*,李娜,卓光铭   

  1. 西安理工大学印刷包装与数字媒体学院
  • 收稿日期:2019-03-29 修回日期:2019-04-25 出版日期:2019-09-26 发布日期:2019-10-25
  • 基金资助:
    国家自然科学基金(51803167),陕西省自然科学基金(2016JQ2029),陕西省教育厅科研计划项目(18JK0586),陕西省科协人才托举计划(20160116),西安市建设科技研究项目(SJW2015-24)

Preparation and Properties of Superhydrophobic PE-HD/Wheat-straw Fiber Composite

HOU Chengmin, WANG Mei, ZHANG Xiaolin*, LI Na, ZHUO Guangming    

  1. School of Printing, Packaging Engineering and Digital Media Technology, Xi'an University of Technology
  • Received:2019-03-29 Revised:2019-04-25 Online:2019-09-26 Published:2019-10-25

摘要: 采用传统自由基聚合法制备出聚(苯乙烯无规丙烯酸无规甲基丙烯酸甲酯)[P(St-r-AA-r-MMA)]聚合物,用该聚合物溶液改性高密度聚乙烯(PE-HD)/麦秸秆纤维(WF)复合材料表面,制得水接触角(WCA)>150 °的超疏水表面。研究了木塑复合材料超疏水表面制备参数、力学性能及其吸水性能。结果表明,超疏水PE-HD/麦秸秆纤维复合材料的最佳制备条件为:单体摩尔比例nSt∶nMMA∶nAA=2∶1∶1、WF含量40 %(质量分数,下同)、聚合物浓度3 %、烘干时间15 h、烘干温度70 ℃;与未改性复合材料相比,在最佳改性条件下制备的超疏水PE-HD/WF复合材料表面WCA高达(156±2.9) °,提高了84 °,拉伸与弯曲强度分别提高了6.1 %和6.9 %,吸水率降低了1.70 %;将改性和未改性的PE-HD/WF复合材料放置5个月,WCA分别为(142±5.7) °和(54±6.2) ° 。

关键词: 高密度聚乙烯, 麦秸秆纤维, 木塑复合材料, 自由基聚合, 超疏水, 吸水率

Abstract: Poly(styrene-random-acrylic-random-methyl methacrylate)[P(St-r-AA-r-MMA)]was prepared by free-radical polymerization and then used to modify the surface of high-density polyethylene (PE-HD)/wheat-straw fiber (WF) composites through a solution method. As a result, a superhydrophobic surface with a water contact angle (WCA) > 150 ° was obtained. The preparation parameters of superhydrophobic surface, mechanical properties and water absorption of these wood-plastic composites were investigated. The optimum preparation parameters were determined as follows: the ratio of polymer monomer was nSt∶nMMA∶nAA=2∶1∶1, the WF content was 40 wt%, the polymer concentration was 3 %, the drying time was 15 h, and the drying temperature was 70 ℃. The results indicated that the surface of the composites prepared under the optimal modification conditions achieved a WCA of (156±2.9) ° , which increased by 84 ° compared to that of unmodified composites. Moreover, their tensile and flexural strength increased by 6.1 % and 6.9 %, respectively, and however their water absorption decreased by 1.70 %. After placed for 5 months, a WCA of (142±5.7) ° was gained for the modified PE-HD/WF composites but only a WCA of (54 ± 6.2) ° was obtained for the unmodified ones.

Key words: high-densitypolyethylenewheat-straw fiber, wood plastic composites, free-radical poly merization, superhydrophobic, water absorption

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