STUDY OF THE INFLUENCE OF FLUX TYPE ON THE SYNTHESIS OF CAST COMPOSITE MATERIAL AMg2-TiC

Yuliya Sherina, A. Luc, A.O. Kachura, S. Shigin
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Abstract

The results are presented devoted to the study of the influence of flux type on the process of self-propagating high-temperature synthesis (SHS) of titanium carbide in aluminum flux, as well as on the structure and properties of the resulting composite material AMg2-TiC. During the research, the most promising halide salts for use as fluxes were analyzed and selected: Na3AlF6, Na2TiF6, K2TiF6, K1-3AlF4-6 (Nocolok ™ made in Germany). During the experimental synthesis, the most active signs of an exothermic reaction between titanium and carbon powders in the flux were recorded having a flux additive Na2TiF6. Then microstructural, micro X-ray spectral analysis and quantitative X-ray phase analyses were carried out, according to their results it was found out that the most homogeneous distribution in terms of material volume, the maximum content of a high dispersion of carbide phase close to the stoichiometric composition is also observed in samples obtained with the use of Na2TiF6 salt. The synthesized samples of the composite material were assessed according to physical and mechanical characteristics: hardness, porosity and electrical conductivity. It was found out that composite samples with an optimal structure are also characterized by a decrease in porosity by 1.33%, an increase in hardness by 94 MPa and a reduction of electrical conductivity by 0.3 MSm/m compared with samples obtained using other fluxes. According to the results of the studies carried out, Na2TiF6 flux is recommended for use to implement SHS composite AMg2-TiC material.
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助熔剂种类对铸造复合材料AMg2-TiC合成影响的研究
研究了助熔剂类型对铝助熔剂中自传播高温合成碳化钛过程的影响,以及对制备的复合材料AMg2-TiC的结构和性能的影响。在研究过程中,分析并选择了最有希望用作助熔剂的卤化物盐:Na3AlF6、Na2TiF6、K2TiF6、K1-3AlF4-6(德国Nocolok™)。在实验合成过程中,在添加了助熔剂Na2TiF6的助熔剂中,钛粉与碳粉之间的放热反应最活跃。然后进行了显微组织分析、微x射线光谱分析和定量x射线物相分析,根据分析结果发现,在使用Na2TiF6盐制备的样品中,材料体积分布最均匀,碳化物相含量最高,高度分散,接近化学计量组成。合成的复合材料样品根据物理和机械特性:硬度、孔隙率和电导率进行评估。结果表明,与使用其他助焊剂制备的复合材料相比,优化后的复合材料孔隙率降低1.33%,硬度提高94 MPa,电导率降低0.3 MSm/m。根据研究结果,推荐使用Na2TiF6助熔剂实现SHS复合AMg2-TiC材料。
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