Method for preparing transition metal carbide powder strengthened by electric field and/or ultrasonic field
A transition metal and ultrasonic field technology, applied in the direction of electrolysis process, electrolysis components, etc., can solve the problems of reduction and oxygen removal of low-valent oxides and solid solutions of transition metals, high oxygen content of products, etc., and achieve enhanced carbonization kinetics The effect of high process and product quality and large heat capacity
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Embodiment 1
[0086] A method for preparing transition metal carbide powder by electric field strengthening, comprising the following steps:
[0087] Step 1. Preparation of high melting point transition metal-carbon sintered sheet
[0088] (1) Mix metal Nb and amorphous carbon powder according to a molar ratio of 1:1, add polyvinyl alcohol ethanol saturated solution accounting for 2wt% of the total mass percentage of metal Nb and amorphous carbon powder, and mix uniformly to obtain a mixture;
[0089] The metal Nb powder has a particle size of 1 μm, and the amorphous carbon powder has a particle size of 0.2 μm.
[0090] (2) Weighing 2 g of the mixture and molding it under 10 MPa pressure to obtain a cylindrical sheet, the diameter of the cylindrical sheet is 15 cm, and the thickness is 2-3 mm;
[0091] (3) Put the cylindrical sheet in a resistance furnace, and sinter it at 1000° C. for 3 hours under an Ar atmosphere to obtain a high melting point transition metal-carbon sintered sheet.
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Embodiment 2
[0101] A method for preparing transition metal carbide powder by ultrasonic field strengthening, the same as in Example 1, the difference is:
[0102] (1) In step 3, the high melting point transition metal-carbon sintered piece is connected to the stainless steel wire, the high melting point transition metal-carbon sintered piece is immersed in the molten salt system after pre-electrolysis, and the high melting point transition metal-carbon sintered A 20kHZ ultrasonic field was applied to the stainless steel wire of the sheet through an ultrasonic generator, and the carbonization reaction time was 8h. Compared with Comparative Example 1, ultrasonic vibration can accelerate the diffusion of carbon into the interior of niobium, and eliminate the influence of the natural oxide layer formed on the surface on the kinetics of the carbonization process. At the same time, it can refine the carbide product and obtain carbide powder with a particle size of less than 100nm.
[0103] Other...
Embodiment 3
[0106] A method of electro-ultrasonic coupling field strengthening for preparing transition metal carbide powder, the same as in Example 1, the difference lies in:
[0107] (1) While applying the electric field in step 3, use the KMD-K1 ultrasonic generator to apply an ultrasonic field with a frequency of 20kHZ on the stainless steel wire, and the carbonization reaction time is 4h;
[0108] Other implementations are the same.
[0109] The flow chart of the method for preparing NbC by electro-ultrasonic coupled field assisted carbonization is shown in Figure 4 .
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