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首页> 外文期刊>Journal of Applied Polymer Science >Mechanical and barrier properties of carbon nanotube reinforced PCL-based composite films: Effect of gamma radiation
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Mechanical and barrier properties of carbon nanotube reinforced PCL-based composite films: Effect of gamma radiation

机译:碳纳米管增强的PCL基复合膜的机械和阻挡性能:γ辐射的影响

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Carbon nanotube (CNT) reinforced (0.05-0.5% by wt) polycaprolactone (PCL)-based composites were prepared by compression molding. Addition of 0.2% CNT caused a 131% improvement of tensile strength (TS) of PCL films. The tensile modulus (TM) and elongation at break (Eb) of PCL were also significantly improved with the addition of CNT. The water vapor permeability of PCL was 1.51 g·mm/m~2·day but 0.2% CNT containing PCL films showed 1.08 g·mm/m~2·day. Similarly, the oxygen transmission rate (OTR) of PCL films was found to decrease with the addition of CNT. But, carbon dioxide transmission rate (CO_2TR) of PCL film was improved due to incorporation of CNT. Effect of gamma radiation on PCL films and CNT reinforced PCL-based composites were also studied. The TS of the irradiated (10 kGy) PCL films gained to 75% higher than control sample. The TS of the 0.2% CNT reinforced composite film was reached to 41 MPa at 15 kGy dose. The barrier properties of non-irradiated and irradiated (10 kGy) PCL films and composites (0.2% CNT reinforced) were also measured. Both PCL films and composites showed lower values of WVP upon irradiation and indicated better water vapor barrier. The OTR and CO_2TR of the irradiated (10 kGy) PCL films and composites were decreased compared to their counterparts. Surface and interface morphologies of the composites were studied by scanning electron microscopy.
机译:通过压缩成型制备碳纳米管(CNT)增强(0.05-0.5重量%)的聚己内酯(PCL)基复合材料。添加0.2%CNT可使PCL膜的拉伸强度(TS)提高131%。添加CNT后,PCL的拉伸模量(TM)和断裂伸长率(Eb)也得到了显着改善。 PCL的水蒸气渗透率为1.51g·mm / m〜2·天,但是0.2%的含CNT的PCL膜显示为1.08g·mm / m〜2·天。类似地,发现PCL膜的氧气透过率(OTR)随着CNT的添加而降低。但是,由于引入了CNT,提高了PCL膜的二氧化碳透过率(CO_2TR)。还研究了γ射线对PCL薄膜和CNT增强的PCL基复合材料的影响。辐照过的(10 kGy)PCL膜的TS比对照样品高75%。在15 kGy剂量下,0.2%CNT增强复合膜的TS达到41 MPa。还测量了未辐照和辐照(10 kGy)的PCL薄膜和复合材料(0.2%CNT增强)的阻隔性能。 PCL薄膜和复合材料在辐照时均显示出较低的WVP值,并显示出更好的水蒸气阻隔性。 (10 kGy)辐照的PCL薄膜和复合材料的OTR和CO_2TR与对应的相比降低了。通过扫描电子显微镜研究了复合材料的表面和界面形态。

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