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Flame-Retardant Performance of Transparent and Tensile-Strength-Enhanced Epoxy Resins

机译:透明和拉伸强度增强环氧树脂的阻燃性能

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摘要

In this study, a flame-retardant additive with 9,10-dihydro-9-oxa-10-phosphaphenanthrene-10-oxide (DOPO) groups denoted DSD was successfully synthesized from DOPO, 4,4′-diaminodiphenyl sulfone (DDS), and salicylaldehyde. The chemical structure of DSD was characterized by FTIR–ATR, NMR, and elemental analysis. DSD was used as an amine curing agent, and the transparent, tensile strength-enhanced epoxy resins named EP–DSD were prepared via thermal curing reactions among the diglycidyl ether of bisphenol A (DGEBA), 4,4′-diaminodiphenylmethane (DDM), and DSD. The flame-retardancy of composites was studied by the limiting oxygen index (LOI) and UL-94 test. The LOI values of EP–DSD composites increased from 30.7% for a content of 3 wt % to 35.4% for a content of 9 wt %. When the content of DSD reached 6 wt %, a V-0 rating under the UL-94 vertical test was achieved. SEM photographs of char residues after the UL-94 test indicate that an intumescent and tight char layer with a porous structure inside was formed. The TGA results revealed that EP–DSD thermosets decomposed ahead of time. The graphitization degree of the residual chars was also investigated by laser Raman spectroscopy. The measurement of tensile strength at breaking point shows that the loading of DSD increases the tensile strength of epoxy thermosets. Py-GC/MS analysis shows the presence of phosphorus fragments released during EP–DSD thermal decomposition, which could act as free radical inhibitors in the gas phase. Owing to the promotion of the formation of intumescent and compact char residues in the condensed phase and nonflammable phosphorus fragments formed from the decomposition of DOPO groups, EP–DSD composites displayed obvious flame-retardancy.
机译:在这项研究中,成功​​地由DOPO,4,4'-二氨基二苯砜(DDS)合成了具有9,10-二氢-9-氧杂-10-磷杂菲-10-氧化物(DOPO)基团的阻燃添加剂,称为DSD。和水杨醛。 DSD的化学结构通过FTIR-ATR,NMR和元素分析进行​​了表征。 DSD用作胺固化剂,并通过双酚A(DGEBA),4,4'-二氨基二苯甲烷(DDM)的二缩水甘油醚之间的热固化反应制备了透明的,拉伸强度增强的环氧树脂EP-DSD。和DSD。通过极限氧指数(LOI)和UL-94试验研究了复合材料的阻燃性。 EP-DSD复合材料的LOI值从含量为3 wt%的30.7%增加到含量为9 wt%的35.4%。当DSD的含量达到6重量%时,在UL-94垂直测试下获得V-0等级。 UL-94试验后的炭残留物的SEM照片表明,形成了内部具有多孔结构的膨胀且紧密的炭层。 TGA结果表明,EP-DSD热固性材料会提前分解。还通过激光拉曼光谱研究残余炭的石墨化程度。断裂点拉伸强度的测量结果表明,DSD的加入增加了环氧树脂热固性材料的拉伸强度。 Py-GC / MS分析表明,EP-DSD热分解过程中释放出了磷碎片,这可能是气相中的自由基抑制剂。由于促进了在凝结相中膨胀和致密的焦炭残留物的形成,以及由DOPO基团的分解形成的不可燃磷碎片,EP-DSD复合材料显示出明显的阻燃性。

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