Preparation method for synthetizing zirconium carbide nanometer powder by solid-phase reaction
A nano-powder and zirconium carbide technology is applied in the field of preparation of ultra-fine zirconium carbide nano-powder materials to achieve the effects of high degree of nanometerization, uniform distribution and high product purity
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Embodiment 1
[0019] Implementation Example 1: 30wt% Al-Zr-C
[0020] The ternary mixed powder of 30wt% Al-Zr-C was thoroughly mixed by ball milling and pressed into a cylindrical prefabricated compact with a diameter of 20×15mm and a relative density of 65±3%, and then the compact was placed in an induction chamber filled with Ar gas. In the water-cooled induction coil in the furnace, the SIT high-frequency induction power supply provides energy to ignite the overall reaction of the agglomerate. After being energized and heated for a few seconds, the overall agglomerate undergoes a violent exothermic combustion reaction. The entire reaction is completed quickly in an instant, and the product is Loose and expanded layered structure. The identification results of XRD test show that the thermal detonation synthesis product is composed of Al and ZrC. The observation result of FE-SEM shows that the average particle size of the synthesized ZrC particles is 80-150nm.
Embodiment 2
[0021] Implementation example 2: 10wt% ZrC-10wt% Al-Zr-C
[0022] The quaternary mixed powder of 10wt% ZrC-10wt% Al-Zr-C is fully mixed by ball milling and then pressed into a cylindrical prefabricated block with a diameter of 20×15mm and a relative density of 65±3%. React self-made powder with a particle size of about 20 μm, place the compact in a water-cooled induction coil in an induction furnace filled with Ar gas, provide energy through the SIT high-frequency induction power supply to ignite the overall reaction of the compact, and heat for a few seconds after power on Afterwards, the whole block undergoes a violent exothermic combustion reaction, and the whole reaction is completed in an instant, and the product is in a loose and expanded layered structure. The identification results of XRD test show that the thermal detonation synthesis product is composed of Al and ZrC. FE-SEM observation results show that the average particle size of the synthesized ZrC particles is ...
Embodiment 3
[0023] Implementation Example 3: 10wt% Zn-20wt% Al-Zr-C
[0024] The quaternary mixed powder of 10wt% Zn-20wt% Al-Zr-C is fully mixed by ball milling and then pressed into a cylindrical prefabricated block with a diameter of 20×15mm and a relative density of 65±3%. The ZrC powder is the original thermal explosion React self-made powder with a particle size of about 20 μm, place the compact in a water-cooled induction coil in an induction furnace filled with Ar gas, provide energy through the SIT high-frequency induction power supply to ignite the overall reaction of the compact, and heat for a few seconds after power on Afterwards, the whole block undergoes a violent exothermic combustion reaction, and the whole reaction is completed in an instant, and the product is in a loose and expanded layered structure. The identification results of XRD test show that the thermal detonation synthesis product is composed of Al and ZrC. Due to the high reaction temperature, the Zn phase i...
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