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Preparation of novel carborane-containing boron carbide precursor and its derived ceramic hollow microsphere

机译:新型含碳硼碳化硼前驱体及其衍生陶瓷中空微球的制备

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? 2022 Elsevier Ltd and Techna Group S.r.l.High melting point and hardness of boron carbide make it extremely difficult to be directly prepared as hollow microsphere. However, precursor derived method is an effective approach to prepare ceramic materials with complex shape. Therefore, in this work a novel boron carbide precursor, poly1,7-bis(4-chlorophenyl)-m-carborane (P4CB), was synthesized. The ceramic yield of the precursor P4CB reached as high as 90.25 at 900 °C in nitrogen. Oxidation of P4CB in air was barely observed below 500 °C, and a passive oxidation was exhibited beyond 700 °C. The P4CB/PAN slurry was prepared and coated on a polyoxymethylene (POM) ball substrate. After air crosslinking, substrate decomposition and heat-treatment at 1100 °C in Ar atmosphere, boron carbide hollow microsphere with diameter of approximate 1.34 mm and average shell thickness of 30 μm was finally obtained. The novel precursor could be also utilized to fabricate boron carbide ceramics with different shapes due to its high ceramic yield.
机译:?2022 Elsevier Ltd 和 Techna Group S.r.l.碳化硼的高熔点和硬度使其极难直接制备为空心微球。然而,前驱体衍生法是制备形状复杂的陶瓷材料的有效方法。因此,本文合成了一种新型碳化硼前驱体聚[1,7-双(4-氯苯基)-间硼烷](P4CB)。前驱体P4CB在氮气中的陶瓷收率高达90.25%在900 °C。P4CB在500°C以下几乎未观察到空气中的氧化,超过700°C时出现被动氧化。 制备P4CB/PAN浆料并将其涂覆在聚甲醛(POM)球基材上。在1100 °C的氩气气氛下,经过空气交联、衬底分解和热处理后,最终得到了直径约1.34 mm、壳层平均厚度为30 μm的碳化硼空心微球。由于其高陶瓷收率,这种新型前驱体还可用于制造不同形状的碳化硼陶瓷。

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