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OXIDATION RESISTANCE OF SINTERED CHROMIUM NITRIDE COMPOSITE

机译:烧结铬氮化物复合材料的抗氧化性

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A hard material of chromium nitride can be used under 973 K in an atmosphere. Raw powder materials of CrN and Fe were mixed by ball milling. The raw powder materials were sintered by a hot press process at various temperatures for 3.6 ks with compressive stress of (15, 30, 45) MPa under an atmosphere of 0.1 MPa N_2. After estimating the properties of the sintered material, specimens were used for oxidation test. There is no Cr_2O_3 but (Cr, Fe)_2O_3 on the specimen surface after oxidizing the (Cr, Fe)N ceramic at 1073 K for around 960 ks under an atmosphere. However, there is not almost able to measure its increase of mass during oxidation. Vickers hardness of all specimens increased during oxidation. These facts indicate that the sintered bulk (Cr, Fe)N ceramic is able to use for machinery or engine parts at elevated temperature.
机译:氮化铬的硬质材料可以在大气中的973k下使用。通过球磨机混合CRN和Fe的原料粉末材料。通过在0.1MPa N_2的气氛下在各种温度下通过热压工艺烧结,在各种温度下通过热压工艺烧结3.6ks,在0.1MPa N_2的气氛下的压缩应力。在估计烧结材料的性质后,使用试样用于氧化试验。在氧化在1073k的1073k下约960ks,在样品表面上没有CR_2O_3但(Cr,Fe)_2O_3在大气下约960ks。但是,在氧化过程中,没有几乎能够测量其质量的增加。氧化过程中所有标本的维氏硬度增加。这些事实表明,烧结散装(Cr,Fe)N陶瓷能够在升高温度下用于机械或发动机部件。

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