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A high-strength and high-conductivity copper alloy material

A copper alloy, high-strength technology, applied in the field of high-strength and high-conductivity copper alloy materials, can solve the problems of copper alloy technical difficulty, electrical conductivity decline, etc., to achieve grain refinement, prevent the formation of large-diameter copper alloy phases, and strengthen The effect of conductivity

Inactive Publication Date: 2017-11-03
河南江河机械有限责任公司 +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] The strength and conductivity of copper alloys are a pair of contradictions. No matter which method is used to increase the strength of copper alloys, the conductivity will decrease to a certain extent. Manufacturing high-strength and high-conductivity copper alloys has a great technical advantage. difficulty

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0026] A high-strength and high-conductivity copper alloy material, characterized in that the high-strength and high-conductivity copper alloy material is composed of the following components: Cr 0.8wt%, Be 0.08wt%, Ni 0.2wt%, Si 0.04wt%, Zn 0.1wt% , Ag 1.5wt%, and the balance is Cu.

Embodiment 2

[0028] A high-strength and high-conductivity copper alloy material, characterized in that the high-strength and high-conductivity copper alloy material is composed of the following components: Cr 0.6wt%, Be 0.07wt%, Ni 0.18wt%, Si 0.03wt%, Zn 0.09wt% , Ag 1.4wt%, and the balance is Cu.

Embodiment 3

[0030] A high-strength and high-conductivity copper alloy material, characterized in that the high-strength and high-conductivity copper alloy material is composed of the following components: Cr 0.7wt%, Be 0.06wt%, Ni 0.19wt%, Si 0.04wt%, Zn 0.08wt% , Ag 1.3wt%, and the balance is Cu.

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Abstract

The invention discloses a high-strength and high-conductivity copper alloy material. A high-strength and high-conductivity copper alloy comprises 0.6 wt%-0.8 wt% of Cr, 0.06 wt%-0.08 wt% of Be, 0.18 wt%-0.2 wt% of Ni, 0.03 wt%-0.04 wt% of Si, 0.08%-0.1 wt% of Zn, 1.3 wt%-1.5 wt% of Ag and the balance Cu. On component design, an alloy element is selected to be added in the copper alloy material, wherein the influence on the electric conduction capability of the copper alloy is very small when the content of the alloy element is small; on the premise that the electric conduction performance of a copper alloy base body is guaranteed, solution strengthening, age hardening and other factors of the copper alloy are comprehensively considered, and grain refinement of an alloy phase is facilitated; under the condition that it is guaranteed that the electric conduction performance of the copper alloy material is not reduced, the mechanical performance of the copper alloy is greatly improved, and the problem of the contradiction between the strength and electric conductivity of a high-strength and high-conductivity copper alloy base body is effectively solved; and meanwhile good high-temperature resisting performance is achieved, and heat stability is good.

Description

technical field [0001] The invention relates to the technical field of copper alloy processing, in particular to a high-strength and high-conductivity copper alloy material. Background technique [0002] Copper alloys with high strength and high conductivity are also called high-strength and high-conductivity copper alloys. The rapid development of high-strength and high-conductivity copper alloys in aerospace, high-speed trains, electronic information and other industries has opened up a broader application field for high-end copper alloy products. High-strength and high-conductivity copper alloys are widely used in integrated circuits, high-voltage switches and other fields due to their good comprehensive properties. At present, the application of high-strength and high-conductivity copper alloy materials is concentrated in many aspects such as high-speed train contact lines and lead frames for integrated circuits. End rings for nuclear power, guide rails for electromagne...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C22C9/00C22F1/08
CPCC22C9/00C22F1/08
Inventor 张琦杨国义高大伟孙宁韩方丁王丹冰侯蔚李耀磊顾非李轩刘玉卿翟鹏远杨占伟崔督林王际博高树林杨科军徐言涛
Owner 河南江河机械有限责任公司
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