Die alloy
A mold alloy and talc technology, which is applied in the field of mold alloys, can solve the problems of low manufacturing difficulty, short manufacturing cycle, and low cost of alloy materials, and achieve scientific and reasonable composition ratio, high wear resistance and strength, and reduce manufacturing costs. Effect
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Embodiment 1
[0019] A mold alloy including the following parts by weight:
[0020] 2 parts of chromium;
[0021] 10 parts of iron;
[0022] 12 parts of talc;
[0023] 6 parts of tungsten;
[0024] 12 parts of silicon;
[0025] 8 parts of calcium;
[0026] Niobium 2 parts.
[0027] The hardness of the die alloy is 260HB.
[0028] The impact resistance of the die alloy is 40J / cm2.
Embodiment 2
[0030] A mold alloy including the following parts by weight:
[0031] 3 parts of chromium;
[0032] 12 parts of iron;
[0033] 5 parts of talc;
[0034] 8 parts of tungsten;
[0035] 13 parts of silicon;
[0036] 9 parts of calcium;
[0037] Niobium 2.5 parts.
[0038] The hardness of the die alloy is 280HB.
[0039] The impact resistance of the die alloy is 45J / cm2.
Embodiment 3
[0041] A mold alloy including the following parts by weight:
[0042] 5 parts of chromium;
[0043] 15 parts of iron;
[0044] 18 parts of talc;
[0045] 10 parts of tungsten;
[0046] 15 parts of silicon;
[0047] 10 parts of calcium;
[0048] Niobium 3 parts.
[0049] The hardness of the die alloy is 300HB.
[0050] The impact resistance of the die alloy is 50J / cm2.
[0051] The invention has the advantages that the alloy composition ratio of the mold is scientific and reasonable, and the wear resistance and strength are high, the service life is greatly extended, the manufacturing cost is reduced, and the needs of enterprises are met.
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