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Irradiation Modification of PVC/NBR Blend

机译:PVC / NBR共混物的辐照改性

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摘要

Electron beam initiated cross-linking on the 50/50 poly(vinyl chloride), PVC/acrylonitrile butadiene rubber, NBR blend was studied in the absence and presence of 4 phr trimethylolpropane triacrylate (TMPTA). The 50/50 NBR/PVC blend was prepared by mixing in a Brabender Plasticoder at 170°C. The blend was then irradiated by using a 3.0 MeV electron beam machine at doses ranging from 0 to 200 kGy in air and room temperature. The changes in gel fraction, tensile strength, hardness, impact strength, scanning electron micrographs and dynamic mechanical properties of the samples were investigated. The gel fraction results indicate that under the irradiation conditions employed, the PVC/NBR blend cross-linked by electron beam irradiation. The addition of TMPTA was found to be effective in the acceleration of the radiation-induced cross-linking. Gradual increases in mechanical properties with irradiation dose were observed before exhibiting a decline due to embrittlement as a consequence of excessive cross-linking at higher irradiation doses. The gradual changeover from ductile to brittle fracture due to the irradiation-induced cross-linking was evident from the SEM examination The increase in the storage modulus and Tg as well as the reduction in the damping peak with the increase in irradiation dose reveal that the enhancement in mechanical properties of NBR/PVC blends upon irradiation is due to the irradiation-induced cross-linking, as well as the improved interaction between NBR and PVC.
机译:在不存在和存在4 phr三羟甲基丙烷三丙烯酸酯(TMPTA)的情况下,研究了电子束引发的50/50聚(氯乙烯),PVC /丙烯腈丁二烯橡胶,NBR共混物的交联。 50/50 NBR / PVC共混物是通过在Brabender Plasticoder中于170°C混合而制备的。然后,使用3.0 MeV电子束机器以0至200 kGy的剂量在空气和室温下辐照共混物。研究了样品的凝胶分数,抗张强度,硬度,冲击强度,扫描电子显微图和动态力学性能的变化。凝胶分数结果表明在所采用的照射条件下,PVC / NBR共混物通过电子束照射而交联。发现添加TMPTA对加速辐射诱导的交联是有效的。观察到机械性能随辐照剂量逐渐增加,然后由于高辐照剂量下过度交联而由于脆化而表现出下降。由SEM观察到,辐照引起的交联使韧性断裂逐渐转变为脆性断裂。辐照剂量的增加表明,辐照后NBR / PVC混合物的机械性能增强是由于辐照引起的交联,以及NBR和PVC之间相互作用的改善。

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  • 来源
    《Polymer-Plastics Technology and Engineering》 |2011年第8期|p.833-838|共6页
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  • 作者单位

    Radiation Processing Technology Div., Malaysian Nuclear Agency (Nuclear Malaysia), Bangi, Kajang, Malaysia;

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