Method for improving surface quality of LED copper belt
A surface quality and copper strip technology, which is applied to workpiece surface treatment equipment, machine tools suitable for grinding workpiece planes, and machine tools designed for grinding workpiece rotating surfaces, can solve problems such as poor surface quality and many scratches , to achieve good control and reduce the effect of surface brush marks
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Embodiment 1
[0035] A method for improving the surface quality of LED copper strips in this embodiment specifically includes the following steps:
[0036] Step 1. Rough rolling of rough copper strip
[0037] Step 2. Primary annealing of rough copper strip
[0038] After rough rolling in step 1, the rough copper strip is annealed in a bell-type furnace. The specific process is: put the rough copper strip into the bell-type furnace, heat up to 350°C after 3.5 hours, and then keep it for 5.5 hours. After the heat preservation is over, the furnace is cooled to Take it out at room temperature.
[0039] Step 3, a cleaning of the rough copper strip
[0040] After step 2 is finished, put the rough copper strip into the cleaning line for cleaning, firstly carry out alkali cleaning, then carry out pickling, and finally use the brush roller to grind (here is the first cleaning of the rough copper strip, the thickness of the rough copper strip is still Subsequent multi-pass rolling is required, and...
Embodiment 2
[0055] Same as Example 1, the difference is that the specific annealing process of step 2 and step 5 in this example is as follows: put the rough copper strip into the bell furnace, heat up to 420°C after 4 hours, then keep it warm for 6 hours, and the heat preservation ends After the furnace cools to room temperature and takes it out. In this embodiment, when the rough copper strip is rolled, the rolls of the rolling mill are finely ground with a high-precision numerical control roll grinder to adjust the surface roughness of the rolls to 0.23 / um. The process film selected in this embodiment has a thickness of 12um PET film.
Embodiment 3
[0057] Same as Example 1, the difference is that the specific process of annealing in step 2 and step 5 in this example is: put the rough copper strip into the bell furnace, heat up to 450°C after 4.5 hours, then keep it warm for 6.5 hours, and the heat preservation ends After the furnace cools to room temperature and takes it out. In this embodiment, when the rough copper strip is rolled, the roll of the rolling mill adopts a high-precision numerical control roll grinder to finely grind the surface of the roll, so that the surface roughness of the roll is adjusted to 0.22Ra / um. The process film selected in this embodiment is PET film with a thickness of 11um.
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