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Processing Robustness for A Phenylethynyl Terminated Polyimide Composite

机译:苯乙炔基封端的聚酰亚胺复合材料的加工稳定性

摘要

The processability of a phenylethynyl terminated imide resin matrix (designated as PETI-5) composite is investigated. Unidirectional prepregs are made by coating an N-methylpyrrolidone solution of the amide acid oligomer (designated as PETAA-5/NMP) onto unsized IM7 fibers. Two batches of prepregs are used: one is made by NASA in-house, and the other is from an industrial source. The composite processing robustness is investigated with respect to the prepreg shelf life, the effect of B-staging conditions, and the optimal processing window. Prepreg rheology and open hole compression (OHC) strengths are found not to be affected by prolonged (i.e., up to 60 days) ambient storage. Rheological measurements indicate that the PETAA-5/NMP processability is only slightly affected over a wide range of B-stage temperatures from 250 deg C to 300 deg C. The OHC strength values are statistically indistinguishable among laminates consolidated using various B-staging conditions. An optimal processing window is established by means of the response surface methodology. IM7/PETAA-5/NMP prepreg is more sensitive to consolidation temperature than to pressure. A good consolidation is achievable at 371 deg C (700 deg F)/100 Psi, which yields an RT OHC strength of 62 Ksi. However, processability declines dramatically at temperatures below 350 deg C (662 deg F), as evidenced by the OHC strength values. The processability of the IM7/LARC(TM) PETI-5 prepreg was found to be robust.
机译:研究了苯基乙炔基封端的酰亚胺树脂基质(称为PETI-5)复合材料的加工性能。单向预浸料是通过将酰胺酸低聚物(称为PETAA-5 / NMP)的N-甲基吡咯烷酮溶液涂覆在未筛分的IM7纤维上而制成的。使用了两批预浸料:一是由NASA内部生产的,另一是工业来源的。关于预浸料的保质期,B阶段条件的影响以及最佳加工窗口,研究了复合加工的稳健性。发现预浸料的流变学和裸眼压缩强度(OHC)不受长时间(即最多60天)环境储存的影响。流变学测量表明,PETAA-5 / NMP的可加工性在250℃至300℃的B阶段温度范围内仅受到轻微影响。在使用各种B阶段条件加固的层压板中,OHC强度值在统计上是无法区分的。借助于响应面方法建立了最佳的处理窗口。 IM7 / PETAA-5 / NMP预浸料坯对固结温度比对压力更敏感。在371摄氏度(700华氏度)/ 100 Psi下可以实现良好的固结,从而产生62 Ksi的RT OHC强度。但是,如OHC强度值所示,在低于350摄氏度(662华氏度)的温度下,可加工性急剧下降。发现IM7 / LARC TM PETI-5预浸料的可加工性很强。

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    Hou Tan-Hung;

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  • 年度 2004
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