首页> 外文会议>7th Conference amp; Exhibition of the European Ceramic Society Pt.2, Sep 9-13, 2001, Brugge, Belgium >Microstructures and Properties of In Situ Nonoxide-Boron Nitride (Nobn) Composites
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Microstructures and Properties of In Situ Nonoxide-Boron Nitride (Nobn) Composites

机译:原位非氧化物-氮化硼(Nobn)复合材料的微观结构和性能

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摘要

The microstructures and properties of in situ synthesized nonoxide-boron nitride (Nobn) composites include SiC-BN, Si_3N_4-BN, A1N-BN, SiAlON-BN and A1ON-BN composites were investigated. For in situ SiC-BN composites prepared by hot pressing, with the increase of BN content, Young's modulus decreased obviously, on the other hand, high level of bending strength demonstrated compared to that of BN composites prepared by conventional process. For pressureless sintered A1N-BN, A1ON and SiAlON in situ composites based on the nitridation of A1B_2, relatively high dense materials with relative density higher than 80 % were obtained when the BN content was less than about 20 vol%. An interesting phenomenon was that the residual pores in the composites were almost in closed type. These Nobn composites showed high strength and low Young's modulus. With the content increase of BN, the densification behavior became poor and the residual pores became open channels. It was suggested that the residual pores near BN formed with the in situ growth of BN flakes were originally in closed type. With the content increase of BN to higher than about 20 vol%, a percolation network of BN formed and resulted the residual pores in open type. The high strength of the in situ Nobn composites was explained by the fine and homogeneous microstructures and/or closed type pores in the composites.
机译:研究了SiC-BN,Si_3N_4-BN,AlN-BN,SiAlON-BN和AlON-BN复合材料的原位合成非氧化物-氮化硼(Nobn)复合材料的微观结构和性能。对于通过热压法制备的原位SiC-BN复合材料,随着BN含量的增加,杨氏模量明显下降,另一方面,与常规方法制备的BN复合材料相比,弯曲强度得到了证明。对于基于氮化AlB_2的无压烧结AlN-BN,AlN和SiAlON原位复合材料,当BN含量小于约20vol%时,可获得相对高密度的材料,其相对密度高于80%。一个有趣的现象是复合材料中的残留孔几乎为封闭型。这些Nobn复合材料显示出高强度和低杨氏模量。随着BN含量的增加,致密化行为变差,残留的孔道成为开放通道。有人认为,随着BN薄片的原位生长而形成的BN附近的残留孔最初是封闭的。随着BN含量增加到高于约20vol%,BN的渗滤网络形成并导致开放型残留孔。原位Nobn复合材料的高强度可以通过复合物中的细微且均匀的微观结构和/或封闭型孔来解释。

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