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Preparation and Characterization of Colloidal Carbon Sphere/Rigid Polyurethane Foam Composites

机译:胶态碳球/硬质聚氨酯泡沫复合材料的制备与表征

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摘要

Sucrose decomposed under hydrothermal conditions, generating colloidal carbon spheres (CCSs) with a perfectly spherical morphology. X-ray diffraction indicated that the main component of the CCSs was disordered carbon, and massive hydroxyl groups existed on the surface, as confirmed by Fourier transform infrared spectroscopy. CCSs were first introduced into polyurethane foams (PUFs), and CCS-reinforced PUF (PUF/CCS) composites were synthesized. The introduction of CCSs did not increase the viscosity of polyol/CCS blends significantly. The good dispersion of CCSs and the compatibility between CCSs and polyurethane were confirmed by transmission electron microscopy measurements. The results of mechanical testing showed that PUF/CCS composites exhibited greatly improved mechanical properties in comparison with neat PUFs, and this could be ascribed to the finer cell structure of the PUF/CCS composites, which was inspected with scanning electron microscopy. Thermogravimetric analysis indicated that the effects of CCSs on the thermal stability of the foams were slight.
机译:蔗糖在水热条件下分解,生成具有完美球形形态的胶体碳球(CCSs)。 X射线衍射表明,CCSs的主要成分是无序碳,并且表面上存在大量羟基,这通过傅里叶变换红外光谱法得到证实。首先将CCS引入聚氨酯泡沫(PUF)中,然后合成CCS增强的PUF(PUF / CCS)复合材料。 CCS的引入并没有显着增加多元醇/ CCS共混物的粘度。通过透射电子显微镜测量证实了CCS的良好分散性以及CCS与聚氨酯之间的相容性。力学测试结果表明,与纯PUF相比,PUF / CCS复合材料的力学性能大大提高,这可以归因于PUF / CCS复合材料的细孔结构,并用扫描电子显微镜对其进行了检查。热重分析表明,CCS对泡沫的热稳定性的影响很小。

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