首页> 外文会议>Congress of the International Council of the Aeronautical Sciences >INTERFACE DIFFUSION AND MORPHOLOGY OF AEROSPACE GRADE EPOXY CO-CURED WITH THERMOPLASTIC POLYMERS
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INTERFACE DIFFUSION AND MORPHOLOGY OF AEROSPACE GRADE EPOXY CO-CURED WITH THERMOPLASTIC POLYMERS

机译:具有热塑性聚合物的航空级环氧树脂的界面扩散与形态

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Interfaces formed during the co-curing of an aerospace grade epoxy resin in contact with PEI, PES, and PSU surfaces are examined in this work. The interface found in each scenario is characterized by optical microscopy, and low voltage Scanning Electron Microscopy (SEM) using Energy-Dispersive X-ray spectroscopy (EDX) where applicable. Atomic Force Microscopy (AFM) in tapping mode is also used for high resolution imaging of the interface. The spatial resolution and limitations for each microanalysis technique are defined, and results are interpreted accordingly. The morphology of each interface obtained is correlated with a thermodynamic approach based on the Hansen Solubility Parameter (HSP), which considers dispersion forces, polar forces, hydrogen bonding, and ionic forces between the two materials. The limitations of the HSP thermodynamic approach for this study are discussed. Significant interdiffusion of more than 50 μm is found with PES, PEI and PSU. Nevertheless, a phase separation mechanism was evidenced only for PEI and PSU, and could not be detected with PES. Larger interdiffusion was observed with PSU than PEI.
机译:在该工作中检查了在与PEI,PES和PSU表面接触的航空级环氧树脂的共同固化过程中形成的界面。在每个场景中发现的界面的特征在于光学显微镜,以及使用在适用的能量分散X射线光谱(EDX)的低压扫描电子显微镜(SEM)。攻丝模式中的原子力显微镜(AFM)也用于界面的高分辨率成像。定义了每种微显微分析技术的空间分辨率和限制,并相应地解释结果。所获得的每个界面的形态与基于汉森溶解度参数(HSP)的热力学方法相关,其考虑两种材料之间的分散力,极性力,氢键和离子力。讨论了本研究的HSP热力学方法的局限性。 PES,PEI和PSU发现了超过50μm的大于50微米的显着相互积分。然而,仅针对PEI和PSU来证明相分离机制,并且无法用PES检测。 PSU比PEI观察到较大的间隔。

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