Nickel-free and lead-free free-cutting cupronickel and preparation method for same
A technology of free-cutting and white copper, which is applied in the preparation of the alloy, in the field of nickel-free lead-free white copper alloy, can solve the problems of lead-free nickel-free free-cutting white copper alloy that have not been reported, and achieve good preparation cost advantages and refine grains , The effect of low preparation cost
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[0039] In the preparation method of nickel-free and lead-free free-cutting cupronickel according to the present invention, the batching calculation needs to select alloy elements and their dosage according to the performance requirements of the cupronickel alloy and the properties of the alloy, carry out alloy composition design and batching calculation, and prepare the alloy charge.
[0040] The nickel-free and lead-free free-cutting cupronickel of the present invention is smelted and cooled to 1100-1200°C for casting. The alloy ingot is as figure 1 As shown, it has a silvery white luster.
[0041] Carry out cutting performance test analysis on alloy ingot, alloy sample analysis such as Figure 2-Figure 6 As shown, the results show that the alloy prepared by the method of the present invention has good cutting performance.
Embodiment 1
[0043]According to the test plan described in Table 1, first bake the added electrolytic copper in the melting furnace for 15-20 minutes; after adding borax as a covering agent, raise the temperature to 1250-1350 ° C; after the electrolytic copper is completely melted, add 10% Mn , 0.5% Si, where Mn and Si are added in the form of master alloys; smelting for 20-30 minutes, cooling down to 1250-1300°C, adding 1% "30%Ca+Mg", 0.03% Ce, where Ce is Cu -Ce is added in the form of master alloy; after stirring, add 0.5% pure aluminum; smelt for 10-15 minutes, add 8% pure zinc, keep warm for 5-10 minutes; cool down to 1100-1200°C for casting, ingot casting; alloy hot-rolling temperature The temperature is 850℃, the processing rate of hot rolling is 75%; the processing rate of cold rolling is 73%; the annealing rate is 750℃×2h.
[0044] Table 1 Example of the test program of the present invention (alloying elements and content %)
[0045]
Embodiment 2
[0047] According to the test plan described in Table 2, first bake the added electrolytic copper in the smelting furnace for 15-20 minutes; after adding borax as a covering agent, raise the temperature to 1250-1350 °C; 0.6% Si, where Mn and Si are added in the form of master alloy; smelt for 20-30 minutes, cool down to 1250-1300°C, add 1.2% "30%Ca+Mg", 0.05% Ce, where Ce is Cu- Ce is added in the form of master alloy; after stirring, add 0.5% pure aluminum; smelt for 10-15 minutes, add 10% pure zinc, keep warm for 5-10 minutes; cool down to 1100-1200°C for casting and ingot casting; alloy hot-rolling temperature is 850℃, hot rolling processing rate is 78%; cold rolling processing rate is 70%; annealing is 750℃×2h.
[0048] Table 2 Example of the test program of the present invention (alloying elements and content %)
[0049]
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