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Study on the damage effects of electron and proton combined irradiation on T700/cyanate composites

机译:电子和质子联合辐照对T700 /氰酸酯复合材料的损伤作用研究

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摘要

The synergistic effects of electron and proton co-irradiation with an energy of 160 keV in ultrahigh vacuum environment on T700/cyanate composites was studied through examining the alteration of their interlayer shear strength (ILSS) and mass loss. The surface molecular structure and chemical composition of T700/cyanate composites before and after co-irradiation were studied by IR and XPS, respectively. The results indicate that under low co-irradiation fluence of less than 1.0 × 10~16 e(p)/cm~2, the cross-linking density of cyanate in the surface layer increased with fluence, resulting in increased ILSS of the composite. However a further increase in fluence caused the ILSS to decrease. Besides surface cross-linking, coirradiation in high vacuum broke the surface chemical bonds. As a result, the mass loss and formation of a carbon-rich layer at thesurface of T700/cyanate composites took place.
机译:通过考察层间剪切强度(ILSS)和质量损失的变化,研究了超高真空环境中电子和质子共辐照能量160 keV对T700 /氰酸酯复合材料的协同作用。通过IR和XPS分别研究了共辐照前后T700 /氰酸酯复合材料的表面分子结构和化学组成。结果表明,在小于1.0×10〜16 e(p)/ cm〜2的低共辐照通量下,表层中氰酸盐的交联密度随通量而增加,从而导致复合材料的ILSS升高。但是,注量的进一步增加导致ILSS降低。除表面交联外,高真空下的共辐射还破坏了表面化学键。结果,在T700 /氰酸酯复合材料的表面发生了质量损失并形成了富碳层。

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