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Nonisothermal curing kinetics of solid resole by differential scanning calorimetry

机译:差示扫描量热法固化固体固化动力学

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摘要

In this work, solid resoles with different formaldehyde (F) to phenol (P) molar ratios and various contents of hexamethylenetetramine (HMTA, accelerator) and sodium hydroxide (NaOH, catalyst) were designed and characterized. Curing behavior was investigated by differential scanning calorimetry to provide useful insights for applications. Curing kinetics were analyzed by the Vyazovkin isoconversional method. The results demonstrate that the activation energy of the higher F/P molar ratio systems is lower in the initial stage but higher in the latter stage. The activation energy of the higher HMTA and NaOH system is higher in the initial stage but lower in the latter stage. The thermal stability of cured resoles was evaluated by thermogravimetric analysis. The higher F/P molar ratios or higher contents of HMTA and NaOH provide better thermal stability. This is because these synthetic conditions give higher crosslinking densities. This makes them better potential candidates for heat-resistant materials.
机译:在这项工作中,设计并表征了用不同甲醛(F)与苯酚(P)摩尔比和各种六亚甲基四胺(HMTA,促进剂)和氢氧化钠(NaOH,催化剂)的固体分析。通过差示扫描量热法研究了固化行为,为应用提供有用的见解。通过Vyazovkin异组方法分析固化动力学。结果表明,初始阶段的初始阶段的较高F / P摩尔比系统的激活能量较低,但后级较高。初始阶段的初始阶段的较高HMTA和NaOH系统的激活能量较高,但后级较低。通过热重分析评价固化分子的热稳定性。 HMTA和NaOH的较高的F / P摩尔比或更高内容物提供更好的热稳定性。这是因为这些合成条件给出了更高的交联密度。这使得它们更好的耐热材料候选人。

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