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通过共混包覆法与母粒法制备出纳米CaCO3/PP复合纤维,研究了2种工艺对复合纤维力学性能和分散性能的影响,分析了其力学性能的不匀率,并讨论了其增强机理.结果表明,在共混包覆法中,高速混合机所提供的高剪切力和聚合物的强黏附性使纳米CaCO3在PP中具有良好的分散性,由FTIP可知在纳米CaCO3与PP之间形成了C-O-Ca键,使纳米粒子与PP基体形成较强的结合力,进而提高了纤维的强度,且加工简易,有效地降低了生产成本,而母粒法效果较差.

The mechanical properties and dispersion behavior of nano-CaCO3/PP composite fibers prepared by blending and adhesion methods are investigated.The unevenness of mechanical properties is analyzed and the reinforced mechanism is discussed.The results show that nano-CaCO3 is well dispersed in PP matrix as result of high shear force and strong adhesion supplied by adhesion method.Moreover,FTIR test shows that the C-O-Ca bond is formed,which makes strong binding force formation between the nano-CaCO3 and PP matrix.The fiber has good mechanical properties and low cost,which masterbatch method can not achieve.

参考文献

[1] 龙盛如,黄锐,杨杰.纳米CaCO3/高分子复合材料的研究进展[J].合成树脂及塑料,2004(01):77-79,83.
[2] 郭振福,刘海平,袁光耀.纳米粒子增强PP纤维的研究[J].河北北方学院学报(自然科学版),2006(03):25-28,33.
[3] 严海彪,胡圣飞,郦华兴.加工工艺对PP/纳米CaCO3复合材料性能的影响[J].工程塑料应用,2004(01):25-27.
[4] 马沛岚,苑会林,李军.改性方法对PP/纳米CaCO3复合材料性能的影响[J].塑料工业,2004(03):30-32.
[5] 林志丹,章自寿,黄雪英,麦堪成.反应单体改性纳米CaCO3/PP母料的制备和性质研究[J].塑料工业,2006(03):30-33.
[6] J.Z. Liang .Evaluation of dispersion of nano-CaCO_3 particles in polypropylene matrix based on fractal method[J].Composites, Part A. Applied science and manufacturing,2007(6):1502-1506.
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