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In situ inorganic flame retardant modified hemp and its polypropylene composites

机译:原位无机阻燃改性大麻及其聚丙烯复合材料

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A hemp-reinforced polypropylene (PP) composite with excellent flame retarding and mechanical properties was prepared with the melt blending method. Hemp fiber (F) was first simply in situ modified with an inorganic salt solution, which was prepared by mixing 4.32% sodium hydrate (NaOH) and 6% calcium chloride (CaCl2) at room temperature for 0.5 h. The modified hemp (F1) was proved to be modified by the calcium salt through Fourier-transform infrared and scanning electron microscopy (SEM) measurements. The thermal stability, mechanical, and flame retarding properties of the composites were studied by thermogravimetric analysis, mechanical tests, and limiting oxygen index (LOI) measurements, respectively. The LOI of the composites with 50% of F1 and 15% poly(phosphoric acid amine) reached 25.5%, which was much higher than that of PP (18.5%). The tensile strength of the composite with 50% of F1 was 38% higher than that of PP (24 MPa). The composite interface between the F1 and PP matrix was investigated by SEM, and was shown to be significantly improved. This showed that in situ inorganic modification of hemp with a mixture of NaOH and CaCl2 is a promising method to improve both the flame retarding and mechanical properties of the biocomposite.
机译:通过熔融共混法制备了具有优异阻燃性和机械性能的大麻增强聚丙烯(PP)复合材料。首先用无机盐溶液对大麻纤维(F)进行简单的原位改性,方法是将4.32%的水合氢氧化钠(NaOH)和6%的氯化钙(CaCl 2 )在室温下放置0.5小时。通过傅立叶变换红外和扫描电子显微镜(SEM)测量,证明改性的大麻(F1)被钙盐改性。分别通过热重分析,机械测试和极限氧指数(LOI)测量来研究复合材料的热稳定性,机械性能和阻燃性能。含50%F1和15%聚磷酸胺的复合材料的LOI达到25.5%,远高于PP(18.5%)。 F1为50%的复合材料的拉伸强度比PP(24 MPa)高38%。 F1和PP基体之间的复合界面通过SEM进行了研究,并显示出明显的改善。这表明用NaOH和CaCl 2 的混合物对大麻进行原位无机改性是一种改善阻燃性和机械性能的有前途的方法生物复合材料的特性。

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