Different quenching weight water-air alternative quenching process correction method
A technology of alternating space and weight, applied in the direction of quenching agents, manufacturing tools, heat treatment equipment, etc., can solve the problems of interfacial heat transfer coefficient changes and does not involve quenching, so as to reduce product performance fluctuations and avoid water quenching cracking.
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Embodiment 1
[0030] An alloy steel piece is quenched by water-air alternate quenching and cooling process. The quenching medium is water and air. The total water volume is 20t, and the process when the water temperature is 20°C is: the first water cooling 120s + air cooling 150s + the second water cooling 180s + air cooling 200s + the third water cooling 150s, and the process when the initial water temperature is 25°C is required.
[0031] First, calculate the total heat release of alloy steel parts based on the weight of the alloy steel part (5t) and the cooling range of the alloy steel part (850-300°C), and then calculate the total heat release of the alloy steel part according to the total amount of water involved in quenching and cooling (20t) and the water-air alternate quenching and cooling process The total water cooling time (the first water cooling 120s + the second water cooling 180s + the third water cooling 150s = 450s), the calculated water temperature rise rate per unit water ...
Embodiment 2
[0034] An alloy steel piece is quenched by water-air alternate quenching and cooling process, the quenching medium is polymer water-soluble medium and air, the weight of the alloy steel piece is 5t, the austenitization temperature is 850°C, and the average final cooling temperature of the alloy steel piece is 300°C. The total amount of water involved in quenching and cooling is 20t, and the process when the initial temperature of the water-soluble medium is 20°C is: the first water-soluble medium cooling for 450s + air cooling for 150s + the second water-soluble medium cooling for 500s, and the initial temperature of the water-soluble medium is required to be 25°C time craft.
[0035] First, calculate the total heat release of alloy steel parts based on the weight of the alloy steel part (5t) and the cooling range of the alloy steel part (850-300°C), and then calculate the total amount of water-soluble medium involved in quenching and cooling (20t) and water-air alternation Th...
Embodiment 3
[0038]An alloy steel piece is quenched by water-air alternate quenching and cooling process. The quenching medium is a polymer water-soluble medium and air. The weight of the alloy steel piece is 5t, the austenitization temperature is 850°C, and the final cooling temperature of the alloy steel piece is 300°C. The total amount of water involved in quenching and cooling is 20t, and the process when the temperature of the water-soluble medium is 20°C is: the first water-soluble medium cooling for 450s + air cooling for 150s + the second water-soluble medium cooling for 500s, when the initial temperature of the water-soluble medium is required to be 25°C craft.
[0039] First, calculate the total heat release of alloy steel parts based on the weight of the alloy steel part (5t) and the cooling range of the alloy steel part (850-300°C), and then calculate the total amount of water-soluble medium involved in quenching and cooling (20t) and water-air alternation The total water-solub...
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