Refined austenitic alloy for internal combustion engine valve and its production process
An austenitic and internal combustion engine technology, applied in the field of refined austenitic alloys for internal combustion engine valves and its production technology, can solve the problems of high preparation costs and other issues
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Embodiment 1
[0017] Example 1: An austenitic alloy for an internal combustion engine valve, its composition mass percentage is: C0.63, Si0.15, Mn11.33, P0.027, S0.013, Cr21.86, N0.58 , Nb1.13, Ni1.36, V0.87, the balance is Fe and unavoidable impurities. The production technology of described austenitic alloy:
[0018] (1) Vacuum induction furnace, bottom-blown argon refining: put the raw materials containing the above components into a vacuum induction furnace to melt, the temperature in the furnace is 1450~1470°C, use the bottom-blown argon refining process to remove oxide impurities, The vacuum reduces the gas pressure in the furnace, so that the content of oxygen, nitrogen and hydrogen in the alloy is significantly reduced;
[0019] (2) Continuous casting and rolling: the smelted alloy liquid enters the continuous casting tundish, and the nitrogen flow is turned on to heat the storage heat exchanger, forming a nitrogen flow for heating, preventing re-oxidation of the alloy liquid in th...
Embodiment 2
[0023] Embodiment 2: An austenitic alloy for an internal combustion engine valve, its composition mass percentage is: C0.57, Si0.15, Mn9.53, P0.018, S0.013, Cr20.16, N0.41 , Nb1.03, Ni1.06, V0.75, the balance is Fe and unavoidable impurities. The production technology of described austenitic alloy:
[0024] (1) Vacuum induction furnace, bottom-blown argon refining: put the raw materials containing the above components into a vacuum induction furnace to melt, the temperature in the furnace is 1450~1470°C, use the bottom-blown argon refining process to remove oxide impurities, The vacuum reduces the gas pressure in the furnace, so that the content of oxygen, nitrogen and hydrogen in the alloy is significantly reduced;
[0025] (2) Continuous casting and rolling: the smelted alloy liquid enters the continuous casting tundish, and the nitrogen flow is turned on to heat the storage heat exchanger, forming a nitrogen flow for heating, preventing re-oxidation of the alloy liquid in ...
Embodiment 3
[0029] Embodiment 3: An austenitic alloy used for an internal combustion engine valve, its composition mass percentage is: C0.6, Si0.15, Mn10.43, P0.023, S0.013, Cr21.01, N0.50 , Nb1.08, Ni1.21, V0.81, the balance is Fe and unavoidable impurities. The production technology of described austenitic alloy:
[0030] (1) Vacuum induction furnace, bottom-blown argon refining: put the raw materials containing the above components into a vacuum induction furnace to melt, the temperature in the furnace is 1450~1470°C, use the bottom-blown argon refining process to remove oxide impurities, The vacuum reduces the gas pressure in the furnace, so that the content of oxygen, nitrogen and hydrogen in the alloy is significantly reduced;
[0031] (2) Continuous casting and rolling: the smelted alloy liquid enters the continuous casting tundish, and the nitrogen flow is turned on to heat the storage heat exchanger, forming a nitrogen flow for heating, preventing re-oxidation of the alloy liqui...
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Abstract
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Application Information
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