A kind of cu-ni-co-sn-p copper alloy and preparation method thereof
A cu-ni-co-sn-p, copper alloy technology, applied in the field of Cu-Ni-Co-Sn-P copper alloy and its preparation, can solve the problem that cannot satisfy the development of VLSI strength and multi-pin Demand, affecting the industrialization and application of alloys, and complex production processes, etc., to achieve the effects of reducing macro and micro segregation, high strength, and solving pores
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[0051] The preparation method of above-mentioned Cu-Ni-Co-Sn-P copper alloy specifically comprises the following steps:
[0052] (1) Melting and casting: alloys are prepared by smelting, degassing, removing inclusions, and electromagnetic stirring or mechanical stirring;
[0053] The melting temperature is 1200-1300°C, and the casting temperature is 1150-1250°C;
[0054] During the smelting process, the proportion of elements is precisely controlled, and the content of each element is tested online to supplement and adjust the proportion of alloy elements, and complete the entire casting process;
[0055] (2) Hot rolling: the hot rolling temperature is 800~950℃, and the hot rolling time is 4~8h;
[0056] (3) Spray treatment: the finishing temperature of hot rolling is kept above 700°C;
[0057] (4) Face milling: the milling amount of the upper knife is 0.4mm to 1mm, and the milling amount of the lower knife is 0.4mm to 1mm;
[0058] (5) Rough rolling: the reduction rate of ...
Embodiment 1
[0070] The alloy of the present invention adopts the following raw materials for smelting: electrolytic copper, pure nickel, pure tin, pure cobalt, and copper-phosphorus master alloy. The composition of the alloy is shown in Example 1 of Table 1.
[0071] (1) Melting and casting: (bright wire copper 30% + recycled copper 70%) + nickel + cobalt covering (calcined charcoal + electrode graphite powder) → melting + tin + 25% copper-phosphorus master alloy → slag removal → heating (1220°C )→degassing (10min)+75% copper-phosphorus master alloy+other trace elements (element Zr)→sampling analysis (temperature control at 1240±10°C)→composition adjustment→drawing (temperature control at 1215±10°C);
[0072] (2) Hot rolling: the hot rolling temperature is 900°C, and the holding time is 6h;
[0073] (3) Spray treatment: the finishing temperature of hot rolling is 710°C;
[0074] (4) Face milling: upper knife 0.5mm, lower knife 0.5mm;
[0075] (5) Rough rolling: the reduction rate is 60...
Embodiment 2
[0085] The alloy of the present invention adopts the following raw materials for smelting: electrolytic copper, pure nickel, pure tin, pure cobalt, and copper-phosphorus master alloy. The composition of the alloy is shown in Example 2 of Table 1.
[0086] (1) Melting and casting: (bright wire copper 30% + recycled copper 70%) + nickel + cobalt covering (calcined charcoal + electrode graphite powder) → melting + tin + 25% copper-phosphorus master alloy → slag removal → heating (1220°C )→degassing (10min)+75% copper-phosphorus master alloy+other trace elements (Mn)→sampling analysis (temperature control at 1250±10°C)→composition adjustment→drawing (temperature control at 1210±10°C);
[0087] (2) Hot rolling: the hot rolling temperature is 900°C, and the holding time is 6h;
[0088] (3) Spray treatment: the finishing temperature of hot rolling is 705°C;
[0089] (4) Face milling: upper knife 0.5mm, lower knife 0.5mm;
[0090] (5) Rough rolling: the reduction rate is 60%;
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