Corrosion-resisting alloy for immersion piece of hot-dip galvanized pan
A corrosion-resistant alloy and hot-dip galvanizing technology, applied in the field of metallurgical industry, can solve the problems of increased labor intensity, poor corrosion resistance, short service life, etc., to avoid pits and pitting corrosion, reduce production costs, and extend continuous time Effect
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example 1
[0012] Example 1: Melting in a 1-ton medium-frequency induction furnace, weighing the chemical composition according to the design of the present invention: C 0.10kg, Si 1.00kg, Mn 1.00kg, P 0.05kg, S 0.02kg, Cr175.00kg, Ni 90.00kg, Mo 20.00kg, the rest is Fe and trace impurities. After all the ingredients are melted in the furnace, samples can be taken to analyze the content of the ingredients, and the slag is deoxidized. If there is any deviation in the ingredients, it should be adjusted until it is qualified. The composition is qualified, the molten steel is deoxidized well, and the steel preparation can be made after the temperature meets the process requirements. The mechanical properties of the alloy at room temperature are σS (Mpa) ≥ 205, σb (Mpa) ≥ 485, δ5 (%) ≥ 30, and the hardness (HB) is 190-230.
[0013] According to the needs of users, the alloy of the present invention can be cast into pouring pipes by centrifugal casting, and can also be cast into static castin...
example 2
[0014] Example 2: Melting in a 1 ton medium frequency induction furnace, weighing the chemical composition according to the design of the present invention: C 0.40kg, Si 10.00kg, Mn 9.00kg, P 0.10kg, S 0.05kg, Cr 195.00kg, Ni 110.00kg, Mo 25.00kg, the rest is Fe and trace impurities. After all the ingredients are melted in the furnace, samples can be taken to analyze the content of the ingredients, and the slag is deoxidized. If there is any deviation in the ingredients, it should be adjusted until it is qualified. The composition is qualified, the molten steel is deoxidized well, and the steel preparation can be made after the temperature meets the process requirements. The mechanical properties of the alloy at room temperature are σs (Mpa) ≥ 205, σb (Mpa) ≥ 485, δ5 (%) ≥ 30, and the hardness (Hb) is 190-230.
[0015] According to the needs of users, the alloy of the present invention can be cast into pouring pipes by centrifugal casting, and can also be cast into static cas...
example 3
[0016] Example 3: Melting in a 1-ton medium-frequency induction furnace, weighing the chemical composition according to the design of the present invention: C 0.80kg, Si 15.00kg, Mn 15.00kg, P 0.28kg, S 0.28kg, Cr 220.00kg, Ni 130.00kg, Mo 30.00kg, the rest is Fe and trace impurities. After all the ingredients are melted in the furnace, samples can be taken to analyze the content of the ingredients, and the slag is deoxidized. If there is any deviation in the ingredients, it should be adjusted until it is qualified. The composition is qualified, the molten steel is deoxidized well, and the steel preparation can be made after the temperature meets the process requirements. The mechanical properties of the alloy at room temperature are σS (Mpa) ≥ 205, σb (Mpa) ≥ 485, δ5 (%) ≥ 30, and the hardness (HB) is 190-230.
[0017] According to the needs of users, the alloy of the present invention can be cast into pouring pipes by centrifugal casting, and can also be cast into static ca...
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