Microalloy copper foil and machining method thereof

A processing method and microalloying technology, applied in the field of metal materials, can solve problems such as insufficient tensile strength, high cost of gold elements, and insufficient thinness of materials, etc., and achieve light weight, low cost of microalloying, and simple processing methods Effect

Active Publication Date: 2016-08-24
HUBEI JINGYI HIGH PRECISION COPPER PLASTICS & STRIPS CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0008] In order to solve the problems of insufficient tensile strength and elasticity, service conditions lower than 420°C, insufficient thinness of material and high cost of gold elements in the existing copper alloy production of copper strip and foil products for radiator water tanks, the present invention provides a high-strength , high resistance to softening, microalloyed copper foil for radiator water tank and its processing method

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0055] First carry out batching according to the weight percentage of 0.01Fe, 0.008Sn, 0.0035P, and the balance is Cu;

[0056] Then add cathode copper and covering agent to the melting furnace, heat up and melt the cathode copper, after the temperature reaches 1200°C, add iron, stir thoroughly after ten minutes, then add tin and stir fully, then add phosphor copper and fully stir; Sampling for spectral analysis. After the chemical composition of the copper water is qualified, it enters the holding furnace through the connecting pipe of the connected furnace for drawing and casting;

[0057] The casting lead is 12mm, pause for 2.2s, push back 0.5mm, and then pause for 2.2s; the casting speed is 2mm / s, the casting temperature is kept at 1210-1220°C; the cooling water inlet temperature is controlled at 15-30°C range, the outlet temperature of the cooling water is controlled within the range of 35-45°C;

[0058] The strip size obtained by horizontal continuous casting is 17 mm×3...

Embodiment 2

[0069] Firstly, according to 0.01Fe, 0.01Sn, 0.0055P, the balance is the weight percentage of Cu;

[0070] Then add cathode copper and covering agent to the melting furnace, heat up and melt the cathode copper, after the temperature reaches 1200°C, add iron, stir thoroughly after ten minutes, then add tin and stir fully, then add phosphor copper and fully stir; Sampling is done for spectral analysis. After the chemical composition of the copper water is qualified, it enters the holding furnace through the connected pipe of the connected furnace for drawing casting; the drawing casting adopts the procedure of pulling-stop-reverse push-stop, and the drawing distance is 14mm, and the reverse push is 0.6mm. mm, pause for 2.5s, the casting speed is 1.8mm / s, and the casting temperature is kept at 1210-1230°C; the cooling water inlet temperature is required to be controlled in the range of 15-30°C, and the cooling water outlet temperature is controlled at 35-45°C scope;

[0071] The...

Embodiment 3

[0082] First carry out batching according to the weight percentage of 0.012Fe, 0.012Sn, 0.0045P, and the balance is Cu;

[0083] Then add cathode copper and covering agent to the melting furnace, heat up and melt the cathode copper, and when the temperature reaches 1200°C, add iron, stir thoroughly after ten minutes, then add tin and stir fully, then add phosphor copper and stir fully; take samples for spectral analysis, copper After the chemical composition of the water is qualified, the above-mentioned molten copper water is finally put into the holding furnace through the connecting pipe of the connected furnace, and then drawn and cast; Push 0.8mm, pause for 3.5s, pull the casting speed at 2.5mm / s, and keep the casting temperature at 1210-1230°C; the cooling water inlet temperature is required to be controlled within the range of 15-30°C, and the cooling water outlet temperature is controlled at 35-45 ℃ range;

[0084] The strip size obtained by horizontal continuous cast...

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Abstract

The invention relates to a microalloy copper foil and a machining method thereof. The copper foil is Cu-Fe-Sn-P, and comprises, by weight, 0.010%-0.015% of Fe, 0.0080%-0.015% of Sn, 0.0035%-0.0085% of P and the balance Cu. According to the machining method of the microalloy copper foil, a horizontal continuous casting process is mainly adopted, then four times of cold rolling are conducted, and an annealing procedure is carried out between every two times of cold rolling. The microalloy copper foil is thin, the tensile strength and the softening resistance of the microalloy copper foil are improved, the electric conductivity and the hardness are high, the Fe alloying machining method is simple, and the microalloy cost is low. A radiator water tank made from the microalloy copper foil has the characteristics of small size, low weight, large radiating area, high radiating efficiency and the like, and the microalloy copper foil has practical application and popularization value.

Description

technical field [0001] The invention belongs to the field of metal materials and relates to a microalloy copper foil and a processing method thereof. Background technique [0002] Micro-alloy copper foil is a high-efficiency radiator material for manufacturing automobile water tanks. At present, there are TSn0.08-0.01 (T14405) and TSn0.12 (C14415) micro-alloy copper foil alloys for tube-type automobile water tank radiators on the market. , TSn0.1-0.3 (C14420) and TTe0.02-0.02 (C14530), the mainstream product is TSn0.08-0.01, the product is concentrated in 0.045-0.06mm, and the volume of the tube and belt radiator made of TSn0.08-0.0 Small size, light weight, large heat dissipation area, and high heat dissipation efficiency, but there are still problems such as insufficient light weight, insufficient elasticity after thinning, and insufficient softening resistance. [0003] The weight percentage of strip alloy elements Sn (0.10-0.16%), P (0.005%), Zn (0.02- 0.07%), Ni (0.2%...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C22C9/00C22F1/08
CPCC22C9/00C22F1/08
Inventor 李珣黄建斌黄全国李荣清王金亮冯立铭章焱辉
Owner HUBEI JINGYI HIGH PRECISION COPPER PLASTICS & STRIPS CO LTD
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