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首页> 外文期刊>Journal of Materials Science >The effect of polysiloxane on the properties of Al2O3-NbC composite material produced by pyrolysis process
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The effect of polysiloxane on the properties of Al2O3-NbC composite material produced by pyrolysis process

机译:聚硅氧烷对热解法制备的Al 2 O 3 -NbC复合材料性能的影响

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摘要

Recently, studies have been developed in order to obtain Al2O3-NbC composite materials. The reinforced materials have shown good potential to be used as cutting tool materials at high-speed cutting and high temperature as a substitute to WC-Co material. The main disadvantage to produce these alumina-reinforced materials is the necessity to use pressure assisted sintering or high sintering temperatures to produce dense bodies. Manufacturing of composite ceramic materials derived from polymer reactive filler has been intensively investigated. Polymer pyrolysis is a relatively new and very promising method for obtaining ceramic material in complex shapes and lower sintering temperatures. This work investigated a ceramic composite matrix based in SiCxOy and Al2O3 and reinforced with NbC obtained by means of the active fillers pyrolysis process. The results obtained in this work demonstrate that using a mixture of polysiloxanes produces a composite material with better properties when compared to others polymer materials.
机译:近年来,为获得Al 2 O 3 -NbC复合材料而进行了研究。增强材料已显示出良好的潜力,可在高速切削和高温下用作切削工具材料,以替代WC-Co材料。生产这些氧化铝增强材料的主要缺点是必须使用压力辅助烧结或较高的烧结温度来生产致密体。已经深入研究了由聚合物反应性填料衍生的复合陶瓷材料的制造。聚合物热解是一种用于获得形状复杂且烧结温度较低的陶瓷材料的相对较新且非常有前景的方法。这项工作研究了基于SiC x O y 和Al 2 O 3 并用NbC增强的陶瓷复合基质通过活性填料热解法获得。在这项工作中获得的结果表明,与其他聚合物材料相比,使用聚硅氧烷混合物可以生产出具有更好性能的复合材料。

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