A kind of alloy material flange and its forging process
A technology of alloy material and flange, applied in the field of alloy material flange and its forging process, can solve the problems of leakage expansion, production environment damage, fire and explosion, etc., and achieve the effect of eliminating shrinkage cavity and high mechanical performance
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Embodiment 1
[0029] This embodiment provides a flange made of alloy material. The chemical composition of the selected alloy blank is: 12.7% nickel, 25.3% chromium, 0.1% carbon, 0.17% silicon, 0.72% manganese, 0.0015% sulfur, 2.25% molybdenum, titanium 3.25%, aluminum 3%, copper 1.25%, phosphorus 0.015%, tungsten 0.9%, boron 0.018%, niobium 0.9%, rare earth elements 0.11%, the rest is Fe and impurities; the rare earth elements include ytterbium 12%, erbium 6% , dysprosium 19%, gadolinium 26%, cerium 8%, lanthanum 14% and thorium 15%.
[0030] This embodiment also provides a forging process of an alloy material flange, including the following specific steps:
[0031] Step (1): first use a chemical analysis instrument to chemically analyze the alloy billet to ensure that its chemical composition meets the composition requirements of the above alloy materials;
[0032] Step (2): After the analysis of step (1) is qualified, a 5000Kg alloy billet is selected, and electric furnace is used for s...
Embodiment 2
[0041] This embodiment provides a flange made of alloy material. The chemical composition of the selected alloy blank is: 12.9% nickel, 25.5% chromium, 0.12% carbon, 0.19% silicon, 0.79% manganese, 0.0035% sulfur, 2.35% molybdenum, titanium 3.45%, aluminum 3.25%, copper 1.85%, phosphorus 0.017%, tungsten 1.1%, boron 0.022%, niobium 1.1%, rare earth elements 0.13%, the rest is Fe and impurities; the rare earth elements include ytterbium 12%, erbium 11% , dysprosium 19%, gadolinium 16%, cerium 8%, lanthanum 18% and thorium 16%.
[0042] This embodiment also provides a forging process of an alloy material flange, including the following specific steps:
[0043] Step (1): first use a chemical analysis instrument to chemically analyze the alloy billet to ensure that its chemical composition meets the composition requirements of the above alloy materials;
[0044] Step (2): After the analysis of step (1) is qualified, the alloy billet below 4800Kg is selected, and the electric furn...
Embodiment 3
[0053] This embodiment provides a kind of alloy material flange, selects the weight percentage chemical composition of alloy billet to be: nickel 12.8%, chromium 25.4%, carbon 0.11%, silicon 0.18%, manganese 0.76%, sulfur 0.0025%, molybdenum 2.30%, titanium 3.35%, aluminum 3.15%, copper 1.55%, phosphorus 0.016%, tungsten 1.0%, boron 0.020%, niobium 1.0%, rare earth elements 0.12%, the rest is Fe and impurities; the rare earth elements include ytterbium 12%, erbium 8% , dysprosium 21%, gadolinium 16%, cerium 8%, lanthanum 13% and thorium 22%.
[0054] This embodiment also provides a forging process of an alloy material flange, including the following specific steps:
[0055] Step (1): first use a chemical analysis instrument to chemically analyze the alloy billet to ensure that its chemical composition meets the composition requirements of the above alloy materials;
[0056] Step (2): After the analysis in step (1) is qualified, select an alloy billet below 4600Kg, use an elec...
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Abstract
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