首页> 外文期刊>Journal of Applied Polymer Science >Flame retarded epoxy resins by adding layered silicate in combination with the conventional protection-layer-building flame retardants melamine borate and ammonium polyphosphate
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Flame retarded epoxy resins by adding layered silicate in combination with the conventional protection-layer-building flame retardants melamine borate and ammonium polyphosphate

机译:通过添加层状硅酸盐与传统的保护层结构阻燃剂三聚氰胺硼酸盐和聚磷酸铵结合使用的阻燃环氧树脂

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摘要

The pyrolysis and flammability of phosphonium- modified layered silicate epoxy resin nanocomposites (EP/LS) were evaluated when LS was combined with two flame retardants, melamine borate (MB) and ammonium polyphosphate (APP), that also act via a surface protection layer. Thermogravimetry (TG), TG coupled with Fourier Transform Spectroscopy (TG-FTIR), oxygen index (LOI), UL 94 burning chamber (UL 94) and cone calorimeter were used. The glassy coating because of 10 wt % MB during combustion showed effects in the cone calorimeter test similar to nanodispersed LS, and somewhat better flame retardancy in flammability tests, such as LOI and UL 94. Adding APP to EP resulted in intumescent systems. The fire retardancy was particularly convincing when 15 wt % APP was used, especially for low external heat flux, and thus, also in flammability tests like LOI and UL 94. V0 classification is achieved when 15 wt % APP is used in EP. The flame retardancy efficiency of the protection layers formed does not increase linearly with the MB and APP concentrations used. The combination of LS with MB or APP shows antagonism; thus the performance of the combination of LS with MB or APP, respectively, was disappointing. No optimization of the carbonaceous-inorganic surface layer occurred for LS-MB. Combining LS with APP inhibited the intumescence, most probably through an increase in viscosity clearly above the value needed for intumescent behavior.
机译:当LS与两种也通过表面保护层起作用的阻燃剂三聚氰胺硼酸盐(MB)和聚磷酸铵(APP)结合使用时,可以评估phospho改性层状硅酸盐环氧树脂纳米复合材料(EP / LS)的热解和可燃性。使用热重法(TG),TG结合傅里叶变换光谱法(TG-FTIR),氧指数(LOI),UL 94燃烧室(UL 94)和锥形量热仪。由于在燃烧过程中MB含量为10 wt%,该玻璃状涂层在锥形量热仪测试中显示出与纳米分散LS相似的效果,并且在可燃性测试中(如LOI和UL 94)显示出更好的阻燃性。在EP中添加APP导致膨胀体系。当使用15 wt%APP时,阻燃性尤其令人信服,尤其是对于低外部热通量,因此,在LOI和UL 94等可燃性测试中也是如此。当在EP中使用15 wt%APP时,可实现V0分类。形成的保护层的阻燃效率不会随所使用的MB和APP浓度线性增加。 LS与MB或APP的结合表现出拮抗作用。因此,LS与MB或APP的组合的性能令人失望。对于LS-MB,没有对碳-无机表面层进行优化。将LS与APP组合使用可抑制膨胀,这很可能是通过粘度增加明显超过膨胀行为所需的值来实现的。

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