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Structure-property interface correlation of fly ash-isotactic polypropylene composites

机译:粉煤灰-全同立构聚丙烯复合材料的结构-性能界面相关性

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摘要

Composites of isotactic semicrystalline polypropylene (PP) reinforced with fly ash (FA) particles (particle size 5-60 mu m) were prepared by injection moulding at 210 A degrees C incorporating 20, 45 and 60% by weight of fly ash. Tensile tests were carried out at 25, 50 and 70 A degrees C. WAXRD, DSC and SEM studies were also undertaken. Modulus of elasticity of all composites at all temperatures was higher than that of the corresponding PP samples-the gain ranged between 10 and 60%. The strength of the composites had a mixed trend. At 25 A degrees C, the composites suffered significant loss in strength, as much as 47%, whereas, at 50 and 70 A degrees C, there was up to 15% gain in strength. Strain to failure of the composite samples ranged from as low as 6% at 25 A degrees C to over 50% at 70 A degrees C, coinciding with increase of Pukanszky parameter from 1.5 to 4.1. WAXRD and DSC tests confirm that FA is nucleator of beta-crystalline phase the amount of which increases to a maximum of 11% with increasing FA. SEM studies indicated that the polymer had a distinctly high lamellar ductility and showed interfacial interaction with FA in 20% FA composites at 50 and 70 A degrees C. The -OH group on the surface of FA appears responsible for the formation of interfacial interaction with PP chain. Notched Charpy tests showed a maximum gain of 58% impact energy for the composite with 45% FA, tested at 70 A degrees C over that of pure PP at 25 A degrees C.
机译:通过掺入20、45和60重量%的粉煤灰的210 A摄氏度的注塑成型,制备了用粉煤灰(FA)颗粒(粒径为5-60μm)增强的全同立构半结晶聚丙烯(PP)的复合材料。拉伸试验在25、50和70 A摄氏度下进行。还进行了WAXRD,DSC和SEM研究。在所有温度下,所有复合材料的弹性模量均高于相应的PP样品-增益介于10%至60%之间。复合材料的强度有不同的趋势。在25 A的温度下,复合材料的强度显着降低,高达47%,而在50和70 A的温度下,强度提高了15%。复合材料样品的破坏应变范围从25 A时的6%降至70 A时的50%以上,与Pukanszky参数从1.5增大到4.1一致。 WAXRD和DSC测试证实,FA是β晶相的成核剂,随着FA的增加,其含量最多增加11%。 SEM研究表明,该聚合物具有明显高的层状延展性,并在50和70 A的温度下显示出与20%FA复合材料中FA的界面相互作用。FA表面上的-OH基团似乎与PP形成界面相互作用链。缺口夏比试验表明,在70 A摄氏度下测试的复合材料具有45%FA的复合材料的最大冲击能量增益比在25 A摄氏度下的纯PP更高。

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