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Synthesis of phenolic resin modified with undecenyl aldehyde and properties of the cured resin

机译:十一碳烯醛改性的酚醛树脂的合成及固化树脂的性能

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The investigation is for improving the phenolic resin's peoperties, such as toughness , electricla insulation,a dn water-proof, was performed by lengthening the distance between two crosslinking nodes and lowering the concrntration of OH groups in a phenolic resin. In the concrete, a phenolic resin was modified with undecenyl aldehyde (UA) as follows: At first, phenol (P) was reacted with UA under different molar ratios and an acid condition, producing a UA modified phenolic oligomer (UA modified phenol) by addition reaction of both double bond and carbonly group of UA to phenolic nuclei. Next, formaldehde was reacted with free phenol and the oligomer mentioned abve, prooducing a UA modified novolac oligomer by co-condensation between them. The latter oligomer had higher average molecular weight than a conventional phenol formaldehyde novolac. Further, the investigation was made on the flowability and curing behavior of molding compounds which were prepared from both UA modified phenol and novolac, hexamethylenetetramine as a curing agent, and wood flour as a filler. The flowability of the compound from UA modified novolac I (molar ration UA/P=0.1/1) and that from UA modified novolac II (UA/P=0.2/1) were superior to that from the conventional novolac. Onset temperatures of curing reaction for the molding compounds from UA modified novolacs were similar to that from the conventional novolac. The properties of cured test pieces obtained buy transfer molding were found as follows: toughness, electrical insulation and water-proof of cured resins from UA modified novolac I and II were superior to those from the conventional novolac, and heat resistance of cured resin from UA modified novolac I-2 which had higher molecular weight than I or II was superior than that from the conventional novolac.
机译:该研究旨在通过延长两个交联节点之间的距离并降低酚醛树脂中OH基的含量来提高酚醛树脂的韧性,电绝缘性和防水性。在混凝土中,酚醛树脂用十一碳烯醛(UA)进行如下改性:首先,酚(P)在不同的摩尔比和酸性条件下与UA反应,通过以下方法生产UA改性的酚醛低聚物(UA改性的酚): UA的双键和碳基团与酚核的加成反应。接下来,使甲醛与游离酚和上述低聚物反应,通过它们之间的共缩合制备UA改性的酚醛清漆低聚物。后者的低聚物具有比常规酚醛酚醛清漆高的平均分子量。此外,对由UA改性酚和线型酚醛清漆,六亚甲基四胺作为固化剂,木粉作为填充剂制备的模塑料的流动性和固化性能进行了研究。 UA改性酚醛清漆I(摩尔比UA / P = 0.1 / 1)和UA改性酚醛清漆II(UA / P = 0.2 / 1)的流动性均优于常规酚醛清漆。 UA改性酚醛清漆中模塑料的固化反应开始温度与常规酚醛清漆中的相似。通过转移模塑获得的固化测试件的性能如下:UA改性酚醛清漆I和II固化树脂的韧性,电绝缘性和防水性优于常规酚醛清漆,并且UA固化树脂的耐热性分子量大于I或II的改性酚醛清漆I-2优于常规酚醛清漆。

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