Alloy die-casting process
A die-casting process and alloy technology, applied in the field of alloy die-casting process, can solve the problems of insufficient control of pressure, temperature and time, low qualified rate of finished products, rough products, etc. Effect
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Embodiment approach 1
[0020] The invention provides an alloy die-casting process, specifically comprising the following steps:
[0021] (1). Alloy smelting: Add the following materials into an electric furnace and heat them to 600°C for annealing. The composition of the materials is (in parts by weight):
[0022] 2.5 parts of carbon; 0.032 parts of vanadium; 2.2 parts of silicon; 0.065 parts of phosphorus; 0.015 parts of nitrogen; 0.015 parts of sulfur; 2.0 parts of magnesium; 0.05 parts of titanium; share;
[0023] (2). Electromagnetic stirring: move the alloy melt in step (1) into the holding furnace, apply an electromagnetic field to the alloy melt, make the alloy melt generate an induced eddy current, implement electromagnetic stirring, and keep the temperature in the holding furnace at 700 ℃;
[0024] (3). Mold closing and oxygen injection: the mold is closed to form a cavity and runner, inject oxygen into the injection chamber and cavity of the die-casting mold through the air injection hol...
Embodiment approach 2
[0029] The invention provides an alloy die-casting process, specifically comprising the following steps:
[0030] (1). Alloy smelting: Add the following materials into an electric furnace and heat them to 670°C for annealing. The composition of the materials is (in parts by weight): 2.85 parts of carbon; 0.042 parts of vanadium; 2.35 parts of silicon; 0.07 parts of phosphorus ; 0.018 parts of nitrogen; 0.0165 parts of sulfur; 2.5 parts of magnesium; 0.075 parts of titanium; 0.2 parts of manganese; 0.27 parts of bismuth; 0.5 parts of gadolinium;
[0031] (2). Electromagnetic stirring: move the alloy melt in step (1) into the holding furnace, apply an electromagnetic field to the alloy melt, make the alloy melt generate an induced eddy current, implement electromagnetic stirring, and keep the temperature in the holding furnace at 715 ℃;
[0032] (3). Mold closing and oxygen injection: the mold is closed to form a cavity and runner, inject oxygen into the injection chamber and c...
Embodiment approach 3
[0037] The invention provides an alloy die-casting process, specifically comprising the following steps:
[0038] (1). Alloy smelting: Add the following materials into an electric furnace and heat them to 750°C for annealing. The composition of the materials is (in parts by weight):
[0039] 3 parts carbon; 0.052 parts vanadium; 2.5 parts silicon; 0.075 parts phosphorus; 0.02 parts nitrogen; 0.018 parts sulfur; 3.0 parts magnesium; 0.1 parts titanium; 0.25 parts manganese; share;
[0040] (2). Electromagnetic stirring: move the alloy melt in step (1) into the holding furnace, apply an electromagnetic field to the alloy melt, make the alloy melt generate an induced eddy current, implement electromagnetic stirring, and keep the temperature in the holding furnace at 720 ℃;
[0041] (3). Mold closing and oxygen injection: the mold is closed to form a cavity and runner, inject oxygen into the injection chamber and cavity of the die-casting mold through the air injection hole, and...
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