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New Superefficiently Flame-Retardant Bioplastic Poly(lactic acid): Flammability, Thermal Decomposition Behavior, and Tensile Properties

机译:新的超长阻燃性生物塑料聚(乳酸):易燃性,热分解行为和拉伸性能

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摘要

In this study, a superefficiently flame-retardant bioplastic poly(lactic acid) was developed by incorporating gas–solid biphase flame-retardant N,N′-diallyl-P-phenylphosphonicdiamide (P-AA), into PLA matrix. The flame retardancy of PLA/P-AA was investigated by limiting oxygen index (LOI), vertical burning test (UL94), and cone calorimeter test. Surprisingly, it was noted that only 0.5 wt % loading of P-AA increased LOI value of PLA from 20.5 to 28.4 and passed UL 94 V-0 rating at 3.2 mm thickness. In order to understand the effect of P-AA on the thermal decomposition behavior of PLA, a comprehensive study was investigated in this paper, including (i) adopting modified Coats–Redfern method to study the thermal decomposition kinetics of PLA and PLA/P-AA systems, and (ii) characterizing the evolved gaseous products and the residues in the condensed phase by thermogravimetry linked Fourier transform infrared spectroscopy (TGA–FTIR) and variable temperature Fourier transform infrared spectroscopy (VT-FTIR) techniques, respectively. Moreover, tensile properties of PLA and PLA/P-AA were studied.
机译:在该研究中,通过将气体固体双相阻燃N,N'-二烯丙基-P-苯基膦羟胺(P-AA)掺入PLA基质中,通过将渗透性阻燃性的生物塑料聚(乳酸)进行。通过限制氧指数(LOI),垂直燃烧试验(UL94)和锥形量热计测试来研究PLA / P-AA的阻燃性。令人惊讶的是,注意到,仅0.5wt%的P-AA加载P-AA增加了PLA的LOI值,从20.5到28.4增加,并通过了3.2mm厚的UL 94 V-0等级。为了了解P-AA对PLA热分解行为的影响,本文研究了综合研究,包括(i)采用改性的涂层 - 铁路方法研究PLA和PLA / P-的热分解动力学AA系统,和(II)通过热重率连接的傅里叶变换红外光谱(TGA-FTIR)和可变温度傅里叶变换红外光谱(VT-FTIR)技术分别表征进化的气态产物和冷凝相中的残留物。此外,研究了PLA和PLA / P-AA的拉伸性质。

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