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Influence of irradiation crosslinking on the flame-retardant properties of polyolefin blends

机译:辐照交联对聚烯烃共混物阻燃性能的影响

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In the presence of flame retardants and other additives, halogen-free flame retardant (HFFR) shape-memory polymers were prepared using blends of ethylene vinyl acetate, ethylene propylene diene monomer, and low-density polyethylene. The HFFR compounds were irradiated using electron beam up to an absorbed dose of 150 kGy and characterized based on their mechanical, thermal, and electrical properties. Both the tensile strength (TS) and elongation at break (Eb) were found to increase as the levels of irradiation increased. This contrasted fact that, generally, Eb decreases as radiation doses increases because of polymer crosslinking capability. However, both TS and Eb decreased as the flame retardant content increased. The optimum mechanical properties were 13 MPa for TS and 200-350% for Eb. The versatile glass transition temperature greatly influenced the shape-memory impact. Nevertheless, the variable rubbery modulus had no significant influence. The limiting oxygen index was found to increase as the total flame retardant contents increased to values over the range of 30-35%. Hardness was about 92, and the retentions of TS and Eb after thermal aging at 136 degrees C for 168 h were between 93-112 and 75-93%, respectively. UL94 ratings of V-0 and a volume resistivity of 3.21 x 10(15) to 3.49 x 10(15) omega cm were obtained using these HFFR compounds. (c) 2019 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2019, 137, 48649.
机译:在阻燃剂和其他添加剂的存在下,使用乙烯乙烯酯,乙烯二烯单体和低密度聚乙烯的共混物制备无卤阻燃剂(HFFR)形状记忆聚合物。使用电子束照射HFFR化合物,其高达150kGy的吸收剂量,并基于其机械,热和电性能表征。随着辐射水平的增加,发现抗拉强度(Ts)和断裂(EB)的伸长率增加。这种对比的事实是,通常,由于聚合物交联能力增加,EB随着辐射剂量的增加而降低。然而,随着阻燃含量的增加,TS和EB均降低。最佳机械性能为Ts和200-350%的EB的13MPa。多功能玻璃过渡温度影响形状记忆撞击。然而,可变橡胶模量没有显着影响。发现限制氧指数随着总阻燃剂的总阻燃剂增加到30-35%的值而增加。硬度约为92,并且在136℃下热老化后的TS和EB的保留分别为168小时,分别在93-112和75-93%之间。使用这些HFFR化合物获得V-0的V-0的额定值和体积电阻率为3.21×10(15)至3.49×10(15)Ω。 (c)2019 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2019,137,48649。

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