Aluminium nitride-based multi-element nano-composite ceramic die material and preparation method thereof
A nano-composite and ceramic mold technology, applied in the field of ceramic mold materials, can solve the problems of nano-composite performance and price advantages that cannot be fully utilized in the mold field, and achieve improved mechanical properties and usability, good comprehensive mechanical properties, good The effect of overall performance
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Embodiment 1
[0024] An aluminum nitride-based multi-component nanocomposite ceramic mold material, the raw materials in parts by weight are: 60 parts of aluminum nitride, 10 parts of aluminum carbide, 15 parts of silicon boride, 2 parts of scandium oxide, 4 parts of neodymium oxide, chromium 2 parts, 1 part of tungsten, and 1 part of nickel; all the above-mentioned raw materials are made of nano-scale powder, wherein the particle size of aluminum nitride is 10-100 nanometers, and the particle size of aluminum carbide and silicon boride is 1-10 nanometers. Other particle sizes are 1-100 nanometers; the preparation method is based on aluminum nitride, adding aluminum carbide and silicon boride as a reinforcing phase, using scandium oxide and neodymium oxide as stabilizers, and using chromium, tungsten and nickel as The sintering aid is sintered by hot pressing; the specific preparation steps are as follows:
[0025] Step 1: taking all the above-mentioned raw materials according to parts by w...
Embodiment 2
[0033] An aluminum nitride-based multi-component nanocomposite ceramic mold material, the raw materials in parts by weight are: 70 parts of aluminum nitride, 15 parts of aluminum carbide, 20 parts of silicon boride, 4 parts of scandium oxide, 6 parts of neodymium oxide, and 3 parts of chromium , 2 parts of tungsten and 2 parts of nickel; all of the above raw materials are made of nano-scale powder, of which the particle size of aluminum nitride is 10-100 nanometers, the particle size of aluminum carbide and silicon boride is 1-10 nanometers, and the other The particle size is 1-100 nanometers; the preparation method is based on aluminum nitride, adding aluminum carbide and silicon boride as a reinforcing phase, using scandium oxide and neodymium oxide as stabilizers, and using chromium, tungsten and nickel as sintering aids The agent is formed by hot pressing and sintering; the specific preparation steps are as follows:
[0034] Step 1: taking all the above-mentioned raw mater...
Embodiment 3
[0042] An aluminum nitride-based multi-component nanocomposite ceramic mold material, the raw materials in parts by weight are: 80 parts of aluminum nitride, 20 parts of aluminum carbide, 25 parts of silicon boride, 6 parts of scandium oxide, 8 parts of neodymium oxide, and 4 parts of chromium , 3 parts of tungsten and 3 parts of nickel; all the above raw materials are made of nano-scale powder, wherein the particle size of aluminum nitride is 10-100 nanometers, the particle size of aluminum carbide and silicon boride is 1-10 nanometers, and the other The particle size is 1-100 nanometers; the preparation method is based on aluminum nitride, adding aluminum carbide and silicon boride as a reinforcing phase, using scandium oxide and neodymium oxide as stabilizers, and using chromium, tungsten and nickel as sintering aids The agent is formed by hot pressing and sintering; the specific preparation steps are as follows:
[0043] Step 1: taking all the above-mentioned raw materials...
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