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首页> 外文期刊>RSC Advances >Impact of halogen-free flame retardant with varied phosphorus chemical surrounding on the properties of diglycidyl ether of bisphenol-A type epoxy resin: synthesis, fire behaviour, flame-retardant mechanism and mechanical properties
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Impact of halogen-free flame retardant with varied phosphorus chemical surrounding on the properties of diglycidyl ether of bisphenol-A type epoxy resin: synthesis, fire behaviour, flame-retardant mechanism and mechanical properties

机译:无卤素阻燃剂对不同磷的含量围绕双酚-A型环氧树脂的二缩水甘油醚性能的影响:合成,火灾行为,阻燃机理和机械性能

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摘要

This work aimed to investigate the effect of two types of phosphorus-containing flame retardants (P-FRs) with different chemical surroundings (phenylphosphonate-based (PO–Ph) and phenylphosphoric-based (PO–OPh)) on the flame-retardant efficiency for diglycidyl ester of bisphenol-A type epoxy (EP) resin. The two series of P-FRs which were named as FP x and FPO x ( x = 1, 2 and 3), respectively, showed reactivity with epoxy group that was examined by differential scanning calorimetry (DSC) and variable temperature FTIR spectroscopy (VT-FTIR). A comparative study between the FP x and FPO x ( x = 1, 2 and 3) containing flame-retardant epoxy was carried out via investigating their flammability, thermal stability and mechanical properties. The most significant difference in flame retardancy between them was that FP x ( x = 1, 2 and 3) endowed EP with a V-0 rating in UL 94 test at 5 wt% loading, while FPO x ( x = 1, 2 and 3) showed no rating at such loading. Importantly, it is found that there was almost 10 times difference in the flame-retardant efficiency for EP between FP x and FPO x , though they had similar chemically molecular structures. Moreover, TGA-FTIR and TGA-MS coupling techniques (TGA, thermogravimetric analysis; MS, mass spectroscopy) were employed to study the thermal decomposition of FP1 and FPO1 ; the impacts of FP1 and FPO1 on the thermal decomposition of EP were studied by TGA-FTIR as well. Furthermore, an online temperature detection experiment was designed to collect the temperatures by thermocouples and infrared thermometers in the UL 94 test. Based on the above results, the flame-retardant mechanisms of FP1 and FPO1 in EP are discussed. In addition, the impact of P-FRs on mechanical properties of EP was studied by means of tensile test and dynamic mechanical analysis.
机译:这项工作旨在探讨两种含磷阻燃剂(P-FRS)与不同的化学含量(基于苯基膦酸盐(PO-PH)和苯基磷基(PO-OPH))的影响用于双酚-A型环氧(EP)树脂的二缩水甘油酯。分别被命名为FP X和FPO X(X = 1,2和3)的两系列P-FRS显示与通过差示扫描量热法(DSC)和可变温度FTIR光谱(VT)检查的环氧基团的反应性(VT -ftir)。通过研究其可燃性,热稳定性和机械性能,进行含有阻燃环氧树脂的FP X和FPO X(X = 1,2和3)之间的比较研究。它们之间的阻燃性最显着的差异是FP X(x = 1,2和3),在5wt%loading的UL 94测试中具有V-0等级的EP,而FPO X(x = 1,2和3)在这种载荷下显示没有评级。重要的是,发现FP X和FPO x之间的EP阻燃效率几乎存在差异几乎是10倍的差异,尽管它们具有类似的化学分子结构。此外,采用TGA-FTIR和TGA-MS偶联技术(TGA,热重分析; MS,质谱)研究FP1和FPO1的热分解;通过TGA-FTIR研究了FP1和FPO1对EP热分解的影响。此外,设计在线温度检测实验,以通过UL 94测试中的热电偶和红外温度计收集温度。基于上述结果,讨论了FP1和FPO1在EP中的阻燃机制。此外,通过拉伸试验和动态力学分析研究了P-FRS对EP机械性能的影响。

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