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首页> 外文期刊>Journal of Materials Science >Phenyl ethynyl functional addition cure phenolic resins: Synthesis, characterisation and thermal properties
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Phenyl ethynyl functional addition cure phenolic resins: Synthesis, characterisation and thermal properties

机译:苯乙炔基官能加成固化酚醛树脂:合成,表征和热性能

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摘要

Phenyl ethynyl functional addition curable phenolic resins were synthesised by reacting a mixture of phenol and 3-(phenylethynyl) phenol (PEP) with formaldehyde in presence of an acid catalyst. Relatively narrow molar-mass distributed polymers were obtained in good yield. The presence of PEP led to reduced molar-mass and narrow distribution of the copolymers. The resin underwent thermal curing at around 250–275°C, much lower than the cure temperature of PEP. The thermal stability and anaerobic char residue of the cured resins increased with increase in ethynyl-content and these properties were more than those of resol resin. These addition cure phenolics provided an overall increase in char of about 70% vis-à-vis resol resin when compared on the basis of uncured resins.
机译:通过使苯酚和3-(苯基乙炔基)苯酚(PEP)的混合物与甲醛在酸催化剂存在下反应,合成了苯乙炔基官能加成可固化酚醛树脂。获得了较窄的摩尔质量分布的聚合物,收率很高。 PEP的存在导致降低的摩尔质量和狭窄的共聚物分布。树脂在约250–275°C的温度下进行热固化,远低于PEP的固化温度。固化树脂的热稳定性和厌氧残渣随着乙炔基含量的增加而增加,并且这些性能比可熔酚醛树脂更好。与未固化树脂相比,这些加成固化酚醛树脂相对于可熔酚醛树脂的炭含量总体提高了约70%。

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  • 来源
    《Journal of Materials Science》 |2001年第17期|4151-4157|共7页
  • 作者单位

    Propellant and Special Chemicals Group Vikram Sarabhai Space Centre;

    Propellant and Special Chemicals Group Vikram Sarabhai Space Centre;

    Propellant and Special Chemicals Group Vikram Sarabhai Space Centre;

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