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The Fabrication of Al2O3/C morph-genetic ceramics by biotemplating from ramie fibers

机译:通过从苎麻纤维的生物预配制造Al 2 O 3 / C的变种遗传陶瓷

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Based on the purpose of functional modification of woodceramics, a new kind of Al2O3/C morph-genetic ceramic materials with the microstructure of ramie fibers was prepared by molding into a billet and carbothermal reduction under vacuum from ramie fibers/Al(OH)3 precursors, which were prepared by impregnating Al(OH)3 sol into the pores of ramie fibers biotemplates using ultrasonic vibration technology. The formation mechanisms, phase composition and microstructure of the materials were analyzed and characterized respectively by using thermogravimetric analysis (DSC-TG), scanning electron microscope (SEM), X-ray diffraction (XRD) and some other experimental technology. In addition, friction and wear properties of woodceramics and Al2O3/C morph-genetic ceramics were studied comparatively using self-made abrader. The results showed that Al2O3/C morph-genetic ceramic materials had the natural tracheid structure of ramie fibers. Due to the introduction of hard-phase Al2O3, the anti-wear properties of woodceramics were greatly enhanced. The process provided a new way of functional modification of woodceramics.
机译:基于伐木霉素功能改性的目的,通过模塑进入苎麻纤维微观结构的一种新型Al 2 O 3 / C形式遗传陶瓷材料从苎麻纤维/ al(OH) 3 前体中的坯料和肉热量减少,通过将Al(OH) 3-IM>溶胶浸渍到苎麻纤维生物浸渍的孔中制备采用超声波振动技术。通过使用热重分析(DSC-Tg),扫描电子显微镜(SEM),X射线衍射(XRD)和一些其他实验技术分别通过使用热重分析和表征材料的形成机制,相组合物和微观结构。此外,使用自制作的研磨机,研究了伐木蛋白和Al 2 O 3 / C形式遗传陶瓷的摩擦和磨损性能。结果表明,Al 2 O 3 / C的变形遗传陶瓷材料具有苎麻纤维的天然颅内结构。由于介绍了硬相Al 2 O 3 ,大大提高了伐木植物的抗磨性能。该过程提供了一种新的伍德明术功能改性方式。

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