Cobalt-nickel-iron-chromium-based hard alloy material and preparation method thereof
A hard alloy, iron-chromium technology, applied in the field of cobalt-nickel-iron-chromium-based hard alloy materials and their preparation, can solve problems such as unproposed solutions, achieve rich mineral deposits, improve fracture toughness, improve oxidation resistance and resistance corrosive effect
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Embodiment 1
[0037] In an optional embodiment, this embodiment provides a cobalt-nickel-iron-chromium-based hard alloy material, which is composed of the following alloy components in weight percentage: Co powder: 10%, Ni powder: 8%, Fe powder: 1 %, Cr 2 C 3 Powder: 1.15%, W powder: 1.1%, VC powder: 0.15%, NbC powder: 0.3%, TaC powder: 0.3%, WC powder: 78%, the average particle size of WC is 1.94um, the average particle size of Co powder 1.52um, the average particle size of Ni powder is 2.5um, the average particle size of Fe powder is 2.65um, Cr 2 C 3 The average particle size of the powder is 3.0um, the average particle size of the W powder is 1.0um, and the average particle size of the VC, NbC, TaC powder is 0.8um.
[0038] The preparation method of above-mentioned cobalt-nickel-iron-chromium-based hard alloy material comprises the following steps:
[0039] Step S1, each raw material is weighed according to the following mass percentage: Co powder: 10%, Ni powder: 8%, Fe powder: 1%, ...
Embodiment 2
[0046] In another optional embodiment, this embodiment provides a cobalt-nickel-iron-chromium-based hard alloy material, which is composed of the following alloy components in weight percentage: Co powder: 10%, Ni powder: 7%, Fe powder: 2%, Cr 2 C 3 Powder: 1.15%, W powder: 1.35%, VC powder: 0.1%, NbC powder: 0.35%, TaC powder: 0.25%, WC powder: 77.8%, the average particle size of WC is 1.94um, the average particle size of Co powder 1.52um, the average particle size of Ni powder is 2.5um, the average particle size of Fe powder is 2.65um, Cr 2 C 3 The average particle size of the powder is 3.0um, the average particle size of the W powder is 1.0um, and the average particle size of the VC, NbC, TaC powder is 0.8um.
[0047] The preparation method of above-mentioned cobalt-nickel-iron-chromium-based hard alloy material comprises the following steps:
[0048] Step S1, each raw material is weighed according to the following mass percentage: Co powder: 10%, Ni powder: 7%, Fe powd...
Embodiment 3
[0057] In an optional embodiment, this embodiment provides a cobalt-nickel-iron-chromium-based hard alloy material, which is composed of the following alloy components in weight percentage: Co powder: 10.5%, Ni powder: 7.5%, Fe powder: 2 %, Cr 2 C 3 Powder: 1.25%, W powder: 1%, VC powder: 0.15%, NbC powder: 0.3%, TaC powder: 0.3%, WC powder: 77%, the average particle size of WC is 1.94um, the average particle size of Co powder 1.52um, the average particle size of Ni powder is 2.5um, the average particle size of Fe powder is 2.65um, Cr 2 C 3 The average particle size of the powder is 3.0um, the average particle size of the W powder is 1.0um, and the average particle size of the VC, NbC, TaC powder is 0.8um.
[0058] The preparation method of above-mentioned cobalt-nickel-iron-chromium-based hard alloy material comprises the following steps:
[0059] Step S1, each raw material is weighed according to the following mass percentage: Co powder: 10.5%, Ni powder: 7.5%, Fe powder...
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