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Processing and characterization of ZrB2-based ultra-high temperature monolithic and fibrous monolithic ceramics

机译:ZrB2基超高温整体和纤维整体陶瓷的加工与表征

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Zirconium diboride (ZrB2) based ultra-high temperature ceramics either unmodified or with SiC particulate additions of 10, 20, or 30 volume percent were prepared by conventional hot pressing. The ZrB2-SiC compositions had improved four-point bend strength compared to the ZrB2 prepared in our laboratory as well as other reported ZrB2 or ZrB2-SiC materials. Strength and toughness increased as the amount of SiC increased. Measured strengths ranged from similar to550 MPa for ZrB2 to over 1000 MPa for ZrB2-30% SiC. Likewise, toughness increased from 3.5 MPa to more than 5 MPa over the same composition range. The addition of SiC also improved oxidation resistance compared to pure ZrB2.Co-extrusion processing was used to produce ZrB2-based ultra-high temperature ceramics with a fibrous monolithic structure. Samples had dense ZrB2-30 vol% SiC cells approximately 100 Am in diameter surrounded by porous ZrB2 cell boundaries approximately 20 mum thick. ZrB2-based fibrous monoliths had four point bend strength of similar to450 MPa, about half of a conventional ZrB2-SiC ceramic with the cell composition. Preliminary analysis of fracture behavior found that ZrB2-based fibrous monoliths did not exhibit graceful failure because the difference in strength between the cell and cell boundary of the current materials was not sufficient. (C) 2004 Kluwer Academic Publishers.
机译:通过常规的热压制备未改性或SiC颗粒添加量为10、20或30体积%的基于二硼化锆(ZrB2)的超高温陶瓷。与在我们实验室中制备的ZrB2以及其他报道的ZrB2或ZrB2-SiC材料相比,ZrB2-SiC组合物具有改善的四点弯曲强度。强度和韧性随着SiC含量的增加而增加。测量的强度范围从ZrB2的大约550 MPa到ZrB2-30%的SiC的超过1000 MPa。同样,在相同的组成范围内,韧性从3.5 MPa增加到5 MPa以上。与纯ZrB2相比,SiC的添加还提高了抗氧化性。共挤出工艺用于生产具有纤维整体结构的ZrB2基超高温陶瓷。样品具有直径约100 Am的致密ZrB2-30体积%SiC电池,并被约20微米厚的多孔ZrB2电池边界包围。 ZrB2基纤维整料的四点弯曲强度接近450 MPa,约为具有孔组成的传统ZrB2-SiC陶瓷的一半。断裂行为的初步分析发现,基于ZrB2的纤维整体材料没有表现出良好的破坏性,因为当前材料的孔道和孔道边界之间的强度差异不足。 (C)2004 Kluwer学术出版社。

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