Iron-based powder catalyst for synthesizing superfine particle diamond
A technology of iron-based powder and ultra-fine particles, which is applied in the field of iron-based powder catalysts for the synthesis of ultra-fine diamonds, which can solve the problems of high cost, achieve low prices, improve quality, and improve economic benefits
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Embodiment 1
[0020] In this embodiment, an iron-based powder catalyst for synthesizing ultrafine-grained diamonds comprises 25% by weight of Mn, 15% of Ni, and 10% of Zn, with the balance being Fe.
[0021] During preparation, the raw materials are prepared according to the formula, and the prepared raw materials are put into an argon-protected intermediate frequency furnace for melting and refining. The powdered alloy was prepared by high-pressure gas atomization process. The powdered alloy is sieved, and the powdered alloy with a particle size of 400 meshes is selected as a product. The screened powdered alloy is placed in a hydrogen reduction furnace for reduction. The catalyst alloy powder and graphite powder are evenly mixed in a certain proportion, and after high temperature treatment, the diamond is synthesized. The proportion of synthetic diamond particles with a particle size of ≤400 mesh accounts for about 82%, with high crystal integrity and good transparency.
Embodiment 2
[0023] The composition and preparation method of the catalytic alloy are basically the same as those in Example 1, except that the powdered alloy with a particle size of 500 meshes is selected as the product to synthesize diamond by sieving. The proportion of synthetic diamond particles with a particle size of ≤400 mesh accounts for about 85.3%, with high crystal integrity and good transparency.
Embodiment 3
[0025] Its preparation method is basically the same as Example 1, and the difference is that, by weight percentage, the catalyst alloy ingredients are: Mn30%, Ni10%, Zn8%, and the balance is Fe. Products Synthetic Diamond. The proportion of synthetic diamond particles with a particle size of ≤400 mesh accounts for about 87.6%, with high crystal integrity and good transparency.
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