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Effects of thermal cycling on phenylethynyl-terminated PMDA-type asymmetric polyimide composites

机译:热循环对苯乙炔基封端PMDA型不对称聚酰亚胺聚酰亚胺复合材料的影响

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摘要

The effects of thermal cycling on a polymerized monomeric reactant (PMR) type polyimide (TriA X) reinforced with carbon fibers were investigated. Composite specimens were subjected to 2000 thermal cycles between -54 degrees C and 232 degrees C. At 400-cycle intervals, laminates were inspected for microcracks, and glass transition temperature (T-g) and short-beam shear (SBS) strength were measured. The composites did not exhibit microcracks after thermal cycling, although after 2000 thermal cycles, mechanical properties of the matrix declined slightly. The matrix degradation decreased the resistance to microcracking upon further loading. No effects of thermal oxidative aging were observed from thermal cycling, and thermally driven fatigue and creep were identified as the primary and secondary factors inducing mechanical degradation of the matrix. T-g of the composites exhibited no change after 2000 cycles, while the SBS strength decreased slightly (3-9%). The results highlight the potential for use of TriA X composites as long-term structural components in high-temperature service environments.
机译:研究了热循环在聚合的单体反应物(PMR)型聚酰亚胺(Tri X)加强碳纤维的聚酰亚胺(TriA X)的作用。在400周期间隔下,将复合样品进行-54℃和232℃之间的热循环。检查微裂纹的层压物,并测量玻璃化转变温度(T-G)和短束剪切(SBS)强度。复合材料在热循环后没有表现出微裂纹,尽管在2000年前热循环后,基质的机械性能略有下降。基质降解在进一步加载时降低了对微裂纹的抗性。没有从热循环中观察热氧化衰老的影响,并鉴定出热驱动的疲劳和蠕变作为诱导基质的机械降解的初级和次要因素。复合材料的T-G在2000次循环后没有变化,而SBS强度略微下降(3-9%)。结果突出了三X复合材料在高温服务环境中使用三X复合材料的可能性。

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