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首页> 外文期刊>Modern Applied Science >Combustion Synthesis of TiN-BN Nanostructured Composite Powder with the Use of Sodium Azide and Precursors of Titanium and Boron
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Combustion Synthesis of TiN-BN Nanostructured Composite Powder with the Use of Sodium Azide and Precursors of Titanium and Boron

机译:叠氮化钠和钛,硼前驱体燃烧合成TiN-BN纳米复合粉

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The composite powder of TiN-BN is of interest from the point of view of the use for sintering the TiN-BN composite ceramics, which compared with TiN ceramics would have less britlleness, better machinability and good tribological properties. Possibility of obtaining a composite powder of TiN-BN with the application of process of combustion synthesis (CS) or self-propagating high-temperature synthesis (SHS) from powder mixtures of sodium azide and halide salts KBF 4 , NH 4 BF 4 , (NH 4 ) 2 TiF 6 and Na 2 TiF 6 as precursors of titanium and boron was investigated. It was shown that these mixtures are capable of burning and obtaining agglomerated composite powders. TiN-BN powder with an admixture of KF is formed only in combustion of "KBF 4 -NaN 3 -Na 2 TiF 6 " system with the increased content of halide salt of boron KBF 4 . In all other cases, the synthesized product has other composition: TiN-BN-TiB, TiN-TiB, TiN, often with an admixture of salts KF, NaF, Na 3 TiF 6 as by-products. Agglomerated composite powders as TiN-BN and others consist of nano-sized (less than 100 nm) and ultra-dispersed (100-500 nm) particles. The size of the agglomerates is in the range from 10-30 microns to 100-200 microns.
机译:从烧结TiN-BN复合陶瓷的用途的观点来看,TiN-BN复合粉末是令人感兴趣的,与TiN陶瓷相比,其具有更低的脆性,更好的可加工性和良好的摩擦学性能。可以通过叠氮化钠和卤化物盐KBF 4,NH 4 BF 4,(N)的粉末混合物通过燃烧合成(CS)或自蔓延高温合成(SHS)的方法获得TiN-BN复合粉末研究了作为钛和硼前体的NH 4)2 TiF 6和Na 2 TiF 6。结果表明,这些混合物能够燃烧并获得附聚的复合粉末。仅在“ KBF 4 -NaN 3 -Na 2 TiF 6”系统燃烧中形成具有KF掺混物的TiN-BN粉末,其中硼KBF 4的卤盐含量增加。在所有其他情况下,合成的产品还具有其他成分:TiN-BN-TiB,TiN-TiB,TiN,通常与副产物盐KF,NaF,Na 3 TiF 6混合。 TiN-BN等凝聚的复合粉末由纳米级(小于100 nm)和超分散(100-500 nm)的颗粒组成。附聚物的尺寸在10-30微米至100-200微米的范围内。

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