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Hierarchical porous ceramics via two-stage freeze casting of preceramic polymers

机译:通过双级冷冻铸件的分层多孔陶瓷铸造的预聚合物

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Freeze-cast porous ceramics are of interest due to a broad range of applications such as filters, bioscaffolds, and catalyst supports. However, achieving the desired mechanical strength while retaining sufficient functionality, such as permeability, has been challenging. In this work, hierarchical structures of bridged lamellar pores were created via two-stage freeze casting of a preceramic polymer to enhance compressive strength of the resulting SiOC. It has been shown that the bridge density can be controlled by changing the concentration of preceramic polymer in solution and compressive strength increased approximately threefold while permeability constants ranged from 9.63 x 10(-13) to 3.96 x 10(-12) m(2). (C) 2018 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
机译:由于诸如过滤器,生物胶质区和催化剂载体等广泛的应用,冻铸多孔陶瓷非常感兴趣。 然而,实现所需的机械强度,同时保持足够的功能,例如渗透性,这一直挑战。 在这项工作中,通过平常聚数聚合物的两级冷冻铸件产生桥梁孔的分层结构,以增强所得Sioc的抗压强度。 已经表明,可以通过改变溶液中的预凝固聚合物的浓度来控制桥密度,并且压缩强度增加大约三倍,而渗透常数范围为9.63×10(-13)至3.96×10(-12)m(2) 。 (c)2018 Acta Materialia Inc. elsevier有限公司出版。保留所有权利。

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