Bonding agent, cubic boron nitride polycrystalline composite material and preparation method of cubic boron nitride polycrystalline composite material
A cubic boron nitride and composite material technology, applied in the field of superhard materials, can solve the problems of poor thermal conductivity and wear resistance of polycrystalline cubic boron nitride, and achieve improved thermal conductivity, avoid soft spot effect, good hardness and The effect of toughness
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Embodiment 1
[0018] This embodiment provides a binder with an average particle diameter of 300 nm, consisting of the following components by mass: 6 parts of aluminum metal, 36 parts of silicon dioxide, 45 parts of molybdenum carbide, and 12 parts of titanium diboride and 11 parts of titanium nitride.
[0019] This embodiment provides a cubic boron nitride polycrystalline composite material, which includes the following raw materials in parts by mass: 63 parts of cubic boron nitride and 47 parts of the binder, wherein the average particle diameter of the cubic boron nitride is 10 μm.
[0020] This embodiment provides the preparation method of the cubic boron nitride polycrystalline composite material, which includes the following steps:
[0021] Mixing the binder and the cubic boron nitride uniformly to prepare a mixed material;
[0022] Under the condition of 60 MPa, press the mixed material into a green body to obtain a green body;
[0023] The green body was sintered at 4 GPa and 120...
Embodiment 2
[0025] This embodiment provides a binder with an average particle diameter of 267 nm, consisting of the following components by mass: 9 parts of aluminum metal, 55 parts of silicon dioxide, 23 parts of molybdenum carbide, and 12 parts of titanium diboride , 11 parts of titanium nitride and 1 part of graphene powder; wherein, the particle diameter of the graphene powder is 20-40 nm.
[0026] This embodiment provides a cubic boron nitride polycrystalline composite material, which includes the following raw materials in parts by mass: 82 parts of cubic boron nitride and 20 parts of the binder; wherein, the average particle diameter of the cubic boron nitride is 7 μm.
[0027] This embodiment provides the preparation method of the cubic boron nitride polycrystalline composite material, which includes the following steps:
[0028] Mixing the binder and the cubic boron nitride uniformly to prepare a mixed material;
[0029] Under the condition of 80 MPa, press the mixed material i...
Embodiment 3
[0032] This embodiment provides a binder with an average particle diameter of 200 nm, consisting of the following components by mass: 8 parts of aluminum metal, 48 parts of silicon dioxide, 36 parts of molybdenum carbide, and 13 parts of titanium diboride , 12 parts of titanium nitride and 2 parts of graphene powder; wherein, the particle diameter of the graphene powder is 20-40 nm.
[0033] This embodiment provides a cubic boron nitride polycrystalline composite material, which includes the following raw materials in parts by mass: 80 parts of cubic boron nitride and 20 parts of the binder; wherein, the average particle diameter of the cubic boron nitride is 3 μm.
[0034] This embodiment provides the preparation method of the cubic boron nitride polycrystalline composite material, which includes the following steps:
[0035] Mixing the binder and the cubic boron nitride uniformly to prepare a mixed material;
[0036] Under the condition of 100 MPa, press the mixed material...
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Abstract
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