IP Library Granted Patent US 9,902,005
Granted Patent B2
US 9,902,005 · App. 14/732,794 · Granted Feb 27, 2018

Low-boron-oxygen cutting line for one-way wire winding and manufacturing method thereof

Inventors: Xianqi Meng (Ningbo, CN); Linhui Wan (Ningbo, CN); Huogen Lin (Ningbo, CN); Fanglin Guo (Ningbo, CN); Xiaojun Chen (Ningbo, CN)
Assignee: NINGBO BODE HIGHTECH CO., LTD.
B23H7/08B22D11/004B22D21/025B23H7/24B23K7/005B32B15/00C22C9/00C22C9/04C22C18/02C22F1/08
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Quick Facts
Patent No.
US 9,902,005
App. No.
14/732,794
Granted
Feb 27, 2018
Kind
B2
Abstract

A low-boron-oxygen cutting line for one-way wire winding and a manufacturing method are provided. A core material comprises 55-65 wt % of copper, 0.001-0.03 wt % of boron, 0.05-1.0 wt % of other elements which are at least two of titanium, iron, silicon, nickel, manganese, aluminum, tin, phosphorus and rare earth, less than 0.5 wt % of inevitable impurity elements, and an allowance of zinc; and a surface comprises 35.0-45.0 wt % of copper, 0.001-3.0 wt % of oxygen, 0.0005-0.5 wt % of other elements, at least two of which are titanium, iron, silicon, nickel, manganese, aluminum, tin, phosphorus and rare earth, less than 0.5 wt % of inevitable impurity elements, and an allowance of zinc. The cutting line has improved mechanical properties and strengthened discharge properties, and can cut irregularly shaped materials or those hollowed in the middle.

Claims (23)

1. A low-boron-oxygen cutting line for one-way wire winding, comprising a core material and a metal surface layer covering the core material;

wherein the core material has an alloy composition of 55-65 wt % of copper, 0.001-0.03 wt % of boron, and 0.05-1.0 wt % of other elements, at least two of the other elements are selected from the group consisting of titanium, iron, silicon, nickel, manganese, aluminum, tin, phosphorus and rare earth, less than 0.5 wt % of inevitable impurity elements, and an allowance of zinc;

wherein the metal surface layer has an alloy composition of 35.0-45.0 wt % of copper, 0.001-3.0 wt % of oxygen, 0.0005-0.5 wt % of other elements, at least two of the other elements are selected from the group consisting of titanium, iron, silicon, nickel, manganese, aluminum, tin, phosphorus and rare earth, less than 0.5 wt % of inevitable impurity elements, and an allowance of zinc.

2. The low-boron-oxygen cutting line for one-way wire winding according to claim 1 , wherein the core material has an alloy composition of 55-60 wt % of copper, 0.001-0.01 wt % of boron, 0.05-0.5 wt % of other elements, at least two of which are iron, phosphorus and rare earth and less than 0.3 wt % of inevitable impurity elements;

wherein the sum of the contents of the copper, zinc and boron is less than 99.5 wt %; wherein zinc content is greater than 39.5 wt %;

wherein the metal surface layer has an alloy composition of 40.0-45.0 wt % of copper, 0.001-3.0 wt % of oxygen, 0.0005-0.25 wt % of other elements, at least two of which are iron, phosphorus and rare earth and less than 0.3 wt % of inevitable impurity elements, and an allowance of zinc.

3. The low-boron-oxygen cutting line for one-way wire winding according to claim 1 , wherein the core material has an alloy composition of 60-65 wt % of copper, 0.005-0.03 wt % of boron, 0.05-0.5 wt % of other elements, at least two of which are iron, phosphorus and rare earth and more than 0.3 wt % of inevitable impurity elements;

wherein the sum of the contents of the copper, zinc and boron is less than 99.5 wt %; wherein zinc content is greater than 34.5 wt %;

wherein the metal surface layer has an alloy composition of 35-40 wt % of copper, 0.10-3.0 wt % of oxygen, 0.0005-0.25 wt % of other elements, at least two of which are iron, phosphorus and rare earth and less than 0.3 wt % of inevitable impurity elements, and an allowance of zinc.

4. A manufacturing method of a low-boron-oxygen cutting line for one-way wire winding according to claim 1 , comprising:

weighing according to a formula;

continuously casting at a temperature of 950-1,150° C. to form a brass rod blank;

plastically machining, recrystallizing and annealing the brass rod blank to generate a core material of the cutting line;

covering the core material with a layer of zinc through chemical electroplating or mechanical manner to form a raw blank;

thermally machining the raw blank in an oxidizing atmosphere with an oxygen content of 10-90 wt % at an air pressure of 0.5-12.5 MPa and a temperature of 250-450° C.;

keeping the blank at the temperature of 250-450° C. for 2.0-15.0 h;

cooling the blank to 60° C. as the furnace cools down to produce the metal surface layer containing copper, zinc and oxygen in the surface and obtain a tough blank of the cutting line;

continuously annealing the rough blank of the cutting line to produce the low-born-oxygen cutting line for one-way wire winding.

5. The manufacturing method of a low-boron-oxygen cutting line for one-way wire winding according to claim 4 , wherein the thickness of the composite metal surface layer is greater than 5% of and less than 25% of the diameter of the low-boron-oxygen cutting line for one-way wire winding.

6. The manufacturing method of a low-boron-oxygen cutting line for one-way wire winding according to claim 4 , wherein the total conductivity of the low-boron-oxygen cutting line for one-way wire winding is greater than 18.5% IACS and less than or equal to 25.5% IACS.

7. A low-boron-oxygen cutting line for one-way wire winding, comprising a core material and a metal surface layer covering the core material;

wherein the core material has an alloy composition of 55-65 wt % of copper, 0.001-0.03 wt % of boron, and 0.05-1.0 wt % of other elements, at least two of the other elements are selected from the group consisting of titanium, silicon, nickel, and phosphorus, less than 0.5 wt % of inevitable impurity elements, and an allowance of zinc;

wherein the metal surface layer his an alloy composition of 35.0-45.0 wt % of copper, 0.001-3.0 wt % of oxygen, 0.0005-0.5 wt % of other elements, at least two of the other elements are selected from the group consisting of iron, silicon, and phosphorus, less than 0.5 wt % of inevitable impurity elements, and an allowance of zinc.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 12, 2025
From: NINGBO BODE HIGHTECH CO., LTD.
To: NINGBO BOWAY ALLOY HIGHTECH WIRE CO., LTD.
Reel/Frame 070489/0706 →
CHANGE OF NAME Recorded Jan 14, 2018
From: NINGBO POWERWAY MATERIALISE CO.,LTD.
To: NINGBO BODE HIGHTECH CO.,LTD.
Reel/Frame 045071/0501 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 8, 2015
From: MENG, XIANQI; WAN, LINHUI; LIN, HUOGEN; GUO, FANGLIN; CHEN, XIAOJUN
To: NINGBO POWERWAY MATERIALISE CO.,LTD.
Reel/Frame 035798/0985 →
Priority Claims (2)
CN 2015 1 0044102 · Jan 29, 2015 · national
CN 2015 1 0069132 · Feb 10, 2015 · national
Continuity (1)
Related Publication 20160221095A1 · Aug 4, 2016