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Design of accelerated hygrothermal cycles on polymer matrix composites in the case of a supersonic aircraft

机译:超音速飞机上聚合物基复合材料加速湿热循环的设计

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摘要

The paper is related to a supersonic transportation application where polymer matrix composites utilized in primary structures are subjected to particular hygrothermal flight-cycles. In fact, the particular point in this study is the drying effect of supersonic flight at high temperature, around 130 ℃, on the durability of the material. This phenomenon constitutes an entirely new situation for these materials in contrast with a classical subsonic flight at low temperature. The supersonic aircraft is supposed to be subjected to a succession of supersonic flight-cycles followed by a periodic maintenance operation. The objective of the study is first to characterize the in-service material state during the supersonic flight cycles and after the maintenance operations. Then, the challenge is to define the material geometry and environmental conditions to meet the in-service material state in short time. Thus, different accelerated cycles adapted to the new situation of supersonic flights, i.e. focusing on the cyclical drying of the material, are proposed.
机译:本文涉及超音速运输应用,其中用于一级结构的聚合物基复合材料要经受特定的湿热飞行循环。实际上,这项研究的重点是在130℃左右的高温下超音速飞行对材料耐久性的干燥作用。与低温下的经典亚音速飞行相比,这种现象构成了这些材料的全新局面。假定超音速飞机要经历一系列超音速飞行周期,然后进行定期维护。该研究的目的是首先表征超音速飞行周期中以及维护操作后在役材料的状态。然后,挑战在于定义材料的几何形状和环境条件,以在短时间内满足使用中的材料状态。因此,提出了适应于超音速飞行的新情况的不同的加速循环,即着重于材料的周期性干燥。

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