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首页> 外文期刊>Journal of Applied Polymer Science >Study of epoxy and epoxy-cyanate networks thermal degradation to predict materials lifetime in use conditions
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Study of epoxy and epoxy-cyanate networks thermal degradation to predict materials lifetime in use conditions

机译:研究环氧和环氧氰酸酯网络的热降解,以预测使用条件下的材料寿命

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摘要

Composite materials are used more and more for aeronautical applications and they have to be as thermally stable as possible. The thermostability of carbon-fiber/epoxy-cyanate composites elaborated with an autoadhesive and autoextinguish prepreg were tested, Dynamical and isothermal aging tests were carried out to evaluate the composite thermal stability. Thermal degradation products were identified by chromatography/mass spectrometry analysis and the results obtained were compared with data known on the material network structure. The physicochemical network structure evolutions and the thermal aging data are correlated with the interlaminar shear strength (ILSS) mechanical results. For epoxy-cyanate composites, cracking appears after a longer time of aging than for epoxy composites. This new epoxy-cyanate material isothermal stability seems to be good and particularly good if it was postcured after processing. The comparison of chemical, mechanical, and crack formation results obtained by accelerated aging tests allowed us to determine models to predict long-term behavior. (C) 2000 John Wiley & Sons, Inc. [References: 18]
机译:复合材料越来越多地用于航空应用,并且它们必须尽可能地热稳定。测试了具有自粘和自熄性预浸料的碳纤维/环氧氰酸酯复合材料的热稳定性,并进行了动态和等温老化测试,以评估复合材料的热稳定性。通过色谱/质谱分析法鉴定热降解产物,并将获得的结果与材料网络结构上已知的数据进行比较。理化网络结构的演变和热老化数据与层间剪切强度(ILSS)力学结果相关。与环氧复合材料相比,环氧氰酸酯复合材料的老化时间更长,因此会出现龟裂。这种新的环氧氰酸酯材料的等温稳定性似乎很好,如果在加工后进行后固化,则特别好。通过加速老化测试获得的化学,机械和裂纹形成结果的比较,使我们能够确定预测长期行为的模型。 (C)2000 John Wiley&Sons,Inc. [参考:18]

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