硬脂酰氯改性三聚氰胺衍生物及其树脂化应用
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1.中科检测技术服务(广州)股份有限公司、中国科学院广州化学研究所、中国科学院大学;2.雪峰创新(北京)科技有限公司

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饰面用疏水密胺树脂的结构设计、合成技术开发(XFCY2021-JS-02);强韧化密胺树脂的制备及密胺硬泡材料的技术开发(XFCY2021-JS-03)


Stearyl chloride modified melamine derivatives and their resinification applications
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1.CAS Test Technical Service(Guangzhou)Co.,Ltd. Guangzhou Institute of Chemistry,Chinese Academy of Science、University of Chinese Academy of Sciences;2.Xue feng Innovation (Beijing) Technology Co., Ltd.

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Structure Design and Synthesis Technology Development of Hydrophobic and dense amine resins for Finishes (XFCY2021-JS-02);Preparation of Toughened Melamine Resin and Technical Development of Melamine Rigid Foam Materials (XFCY2021-JS-03)

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    摘要:

    采用硬脂酰氯对三聚氰胺进行酰胺化改性反应,得到十八烷基链修饰的三聚氰胺衍生物,进而将其与甲醛等进行加成、缩聚反应,制备硬脂酰化改性的密胺树脂,并分别应用于成膜及发泡材料的制备,期间对硬脂酰化三聚氰胺、其改性密胺树脂以及膜层与硬泡材料的结构与性能对比分析。结果表明:硬脂酰化三聚氰胺中因引入疏水烷基长链后,其接触角由0°升至136°以上;而在疏水改性密胺树脂的反应中,随着三聚氰胺的硬脂酰化程度的提高,疏水改性密胺树脂的水容忍点温度逐渐降低,树脂黏度逐渐增大,不溶性颗粒逐渐增多增大,且适当的通过硬脂酰氯对三聚氰胺的改性反应,所制备酰化密胺材料,无论是膜层材料还是硬泡材料,相对于常规密胺材料,力学性能未出现显著损失,如样块抗压强度可达到39.5MPa,硬泡材料弯曲强度可达345.8kPa,压缩强度可达315kPa,同时表现出十分突出的抗水和疏水效果,酰化密胺样块的吸水率由4.5%降低至1.1%,水接触角由68.5°提高至107.5°,耐玷污性能上有进一步的改善提升;酰化密胺硬泡材料的体积吸水率则由5.2%降低至2.0%。

    Abstract:

    Stearoyl chloride was used for amidation modification reaction of melamine to obtain the melamine derivative modified by octadecyl chain, which was then added and polycondensation reaction with formaldehyde to prepare stearoyl modified dense amine resin, which was respectively applied in the preparation of film formation and foaming materials. The structure and properties of stearoacylated melamine, its modified melamine resin, film and rigid cellular material were compared and analyzed. The results showed that the contact Angle of stearoacylated melamine increased from 0° to more than 136° due to the introduction of hydrophobic alkyl chain. And in the reaction of hydrophobic modified melamine resin, melamine as stearic acylation degree enhancement, the water of the hydrophobic modified melamine resin stand point temperature decreases gradually, resin viscosity increases gradually, insoluble particles increase gradually increased, and the appropriate by stearic acid chloride modified reaction of melamine, the preparation of acylation melamine material, coating materials and rigid cellular material, For example, the compressive strength of the sample can reach 39.5MPa, the bending strength of the rigid cellular material can reach 345.8kPa, and the compressive strength can reach 315kPa. At the same time, the water absorption of the acylated sample can be reduced from 4.5% to 1.1%. The water contact Angle was increased from 68.5° to 107.5°, and the stain resistance was further improved. The volumetric water absorption of the rigid cellular material was reduced from 5.2% to 2.0%.

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曹立久,张继尧,张新河,黄建,陈玉放,靳焘.硬脂酰氯改性三聚氰胺衍生物及其树脂化应用[J].精细化工,2023,40(4):

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  • 收稿日期:2022-09-19
  • 最后修改日期:2022-11-17
  • 录用日期:2022-11-23
  • 在线发布日期: 2023-06-12
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