Synthesis of Titanium-Based Composites by Pulsed Methods

IF 0.4 Q4 NANOSCIENCE & NANOTECHNOLOGY Nano Hybrids and Composites Pub Date : 2022-02-23 DOI:10.4028/p-r3v8k2
A. Kaygorodov, Sergey Vladimirovich Zayats
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Abstract

Ti-based composites with advanced properties were fabricated by the explosion of the wires and magnetic-pulsed compaction methods. After the wire explosion the “metal core – oxide (or nitride) shell” structure is formed. Magnetic-pulsed treatment of such poorly conductive powder leads to the destruction of the shells and to the appearance of an electrical conductivity. This conductivity is only 4-7 times higher than that of pure titanium. As a result of the dynamic compaction of 100-150 nm powder the hot-pressed Ti+9TiO2 composition appeared to have the best combination of mechanical properties: relative density – 95 %, microhardness - 4.2 GPa, reduced modulus of elasticity – 143 GPa, creep under constant load – 105 nm. The coefficients of thermal extension of three materials with different titanium oxide content: 6, 9 and 15 wt. % were measured. The nitride-containing composites were ~30% more porous and had low mechanical properties compared to Ti+TiO2 compacts.
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脉冲法制备钛基复合材料
采用爆丝法和磁脉冲压实法制备了性能优良的钛基复合材料。导线爆炸后形成“金属芯-氧化物(或氮化物)壳”结构。对这种导电性差的粉末进行磁脉冲处理会导致外壳的破坏,并产生导电性的外观。这种导电性仅比纯钛高4-7倍。对100 ~ 150 nm粉体进行动态压实后,热压Ti+9TiO2复合材料的力学性能达到最佳组合:相对密度为95%,显微硬度为4.2 GPa,还原弹性模量为143 GPa,恒载蠕变为105 nm。测定了氧化钛含量分别为6%、9%和15%的三种材料的热延伸系数。与Ti+TiO2复合材料相比,含氮复合材料多孔性提高了30%,力学性能较低。
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Nano Hybrids and Composites
Nano Hybrids and Composites NANOSCIENCE & NANOTECHNOLOGY-
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