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首页> 外文期刊>Journal of Applied Polymer Science >Cure kinetics of T700/BMI prepreg used for advanced thermoset composite
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Cure kinetics of T700/BMI prepreg used for advanced thermoset composite

机译:用于高级热固性复合材料的T700 / BMI预浸料的固化动力学

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摘要

A new isothermally based, cure kinetic model for the prepreg was presented using an industrially supplied prepreg rather than pure resin. The matrix resin was bismaleimide (BMI) resins, and the reinforcement was carbon fiber T700-12S. The BMI prepreg was measured from 170 to 220 degrees C by isothermal DSC. The isothermal cure reaction heat increases with the increment of cure temperature. The DSC data were analyzed by the proposed nth-order reaction model. An increase in reaction rate was observed at higher temperature in both neat and prepreg. After reaching the peak value, the reaction rate dropped off faster in prepreg, resulting in a lower average value of the ultimate heat of reaction. It was suggested the presence of carbon fiber had an effect on the cure kinetics as a heat sink. The carbon fibers imposed restrictions on the molecular mobility of the reactive species and did not change the cure mechanism. (c) 2005 Wiley Periodicals, Inc.
机译:使用工业提供的预浸料代替纯树脂,提出了一种新的基于等温的预浸料固化动力学模型。基质树脂是双马来酰亚胺(BMI)树脂,增强材料是碳纤维T700-12S。通过等温DSC在170至220摄氏度下测量BMI预浸料。等温固化反应热随着固化温度的升高而增加。通过提出的n阶反应模型分析DSC数据。在纯净和预浸料中,在较高温度下观察到反应速率的增加。在达到峰值后,预浸料中的反应速率下降得更快,导致最终反应热的平均值较低。有人提出,碳纤维的存在对作为散热器的固化动力学有影响。碳纤维限制了反应性物质的分子迁移,并且没有改变固化机理。 (c)2005年Wiley Periodicals,Inc.

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