Multiple-boride-based superhard bimetal screw and preparation method thereof
A technology of boride and bimetal, which is applied in the field of multi-component boride-based superhard bimetal screw and its preparation, achieves the effects of simple and easy control of the process, high fracture toughness and extended service life
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Embodiment 1
[0042] In this embodiment, 40Cr steel is used as a mandrel, and a layer of Mo is coated on the surface of the mandrel by hot isostatic pressing sintering. 2 FeB 2 The base cermet layer, and then the screw is made by finishing. The raw material powders used in the preparation of cermets are pure Mo powder (5-10 μm), pure Cr powder (5-10 μm), pure Ni powder (5-10 μm), pure Fe powder (10-15 μm) and FeB powder (20-10 μm). 30 μm), the mixing ratio is 35% FeB, 45% Mo, 3% Ni, 2% Cr, 15% Fe. The concrete preparation method of this bimetallic screw rod is as follows:
[0043] 1. Put the mandrel into a special sheath, and fill the gap between the mandrel and the sheath with the mixed raw material powder;
[0044] 2. Put the package as a whole into the sealed container of the hot isostatic pressing equipment and vacuumize;
[0045] 3. The cermet green body is prepared by hot isostatic pressing sintering method, and argon is used as the pressurized medium. The process parameters of ho...
Embodiment 2
[0052] The preparation of the screw in this example is basically the same as in Example 1, the difference is that the mixing ratio of the raw material powder is changed to: 30% FeB, 50% Mo, 3% Ni, 2% Cr, 15% Fe, other experimental conditions same. The microhardness test was carried out on the cermet of the bimetallic screw prepared above, and the average hardness was 1137.5Hv (HRC73).
Embodiment 3
[0054] The preparation of the screw in this example is basically the same as in Example 1, the difference is that the mixing ratio of the raw material powder is changed to: 30% FeB, 45% Mo, 3% Ni, 2% Cr, 20% Fe, other experimental conditions same. The microhardness test was carried out on the cermet of the bimetallic screw prepared above, and the average hardness was 1110.1Hv (HRC72.4).
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