Welding contact tip
A copper alloy composition of 1.0 to 5.0% Ni and 0.4 to 2.0% Si in welding contact tips addresses wear and tear issues while maintaining conductivity, significantly extending service life and reducing costs.
Patent Information
- Application Number
- JP2024083829
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-05-23
- Publication Date
- 2025-12-05
AI Technical Summary
Welding contact tips experience wear and tear due to high temperatures, leading to frequent replacements and increased manufacturing costs, especially with the advent of welding methods that switch welding current phases, and existing solutions like ceramic inserts and plating layers are costly.
A copper alloy composition of 1.0 to 5.0% Ni, 0.4 to 2.0% Si, with the balance being Cu and unavoidable impurities, balances wear resistance and electrical conductivity, reducing manufacturing costs and extending service life.
The copper alloy composition achieves a 6 to 8 times longer service life compared to conventional tips, maintaining electrical conductivity and reducing costs.
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Figure 2025177214000001_ABST
Abstract
Description
[Technical Field]
[0001] The present invention relates to a welding contact tip that serves to guide a welding wire and to supply a welding current to the welding wire. [Background technology]
[0002] A welding contact tip has a rod-shaped tip body made of a copper alloy with excellent conductivity and a wire insertion hole formed in the center thereof. The welding wire is guided through the wire insertion hole and is supplied with a welding current by contact with the inner wall surface of the wire insertion hole. The tip of the welding contact tip is exposed to high temperatures caused by the arc and is prone to wear due to contact with the welding wire, causing the hole diameter to expand, which can lead to a deterioration in weld quality. For this reason, the welding contact tip must be replaced at regular intervals, during which welding operations must be stopped.
[0003] Therefore, welding contact tips are strongly required to have excellent wear resistance and a long service life, and various innovations have been made to achieve this. For example, Patent Document 1 describes a welding contact tip in which a ceramic cylindrical body is fitted into the tip of the wire insertion hole to improve wear resistance. Also, Patent Document 2 describes a welding contact tip in which a nickel-boron plating film and a lubricant coating layer are formed on the surface, including the inner surface of the wire insertion hole, to improve wear resistance. However, both of these require special processing, which results in high manufacturing costs.
[0004] For this reason, as shown in Patent Document 3, efforts have been made to improve the material of the copper alloy that constitutes the welding contact tip. In Patent Document 3, the copper alloy contains 0.03 to 0.7% silver, and the welding contact tip is subjected to drawing or cold working to increase its hardness and conductivity. However, the use of expensive silver poses a problem of high manufacturing costs. Because welding contact tips are consumables, users cannot ignore the cost issue.
[0005] In recent years, welding methods that periodically switch the welding current between positive and negative phases have become mainstream, and in this case, the diameter of the tip of the wire insertion hole is more likely to increase. [Prior art documents] [Patent documents]
[0006] [Patent Document 1] Japanese Patent Application Publication No. 10-193122 [Patent Document 2] Japanese Patent Application Publication No. 2017-189816 [Patent Document 3] Japanese Patent Application Laid-Open No. 2009-90355 Summary of the Invention [Problem to be solved by the invention]
[0007] SUMMARY OF THE INVENTION An object of the present invention is to solve the above-mentioned problems of the prior art and to provide a welding contact tip having a service life that is dramatically improved over the prior art while suppressing manufacturing costs. [Means for solving the problem]
[0008] The welding contact tip of the present invention, which has been made to solve the above problems, is characterized in that the entire tip body is made of a copper alloy having a composition, in mass%, of 1.0 to 5.0% Ni, 0.4 to 2.0% Si, and the balance: Cu and unavoidable impurities.
[0009] The total amount of unavoidable impurities is preferably 0.3% or less, and it is particularly preferable that Ni is in the range of 2.0 to 4.0%, and Si is in the range of 0.8 to 1.5%. [Effects of the Invention]
[0010] By setting the Ni and Si contents within the above ranges, the welding contact tip of the present invention is able to achieve a good balance between electrical conductivity and wear resistance, thereby successfully reducing manufacturing costs and dramatically improving the service life compared to conventional contact tips. [Brief explanation of the drawings]
[0011] [Figure 1] FIG. 2 is a cross-sectional view of a welding contact tip according to an embodiment. DETAILED DESCRIPTION OF THE INVENTION
[0012] Hereinafter, embodiments of the present invention will be described in detail. 1 is a cross-sectional view showing an example of a welding contact tip, in which a welding wire insertion hole 11 is formed in the center of a cylindrical tip body 10, and a male thread portion 12 is formed at the rear end. The rear end of the insertion hole 11 forms a tapered wire introduction portion 13. The entire tip body 10 is made of a copper alloy having a composition of 1.0 to 5.0% Ni, 0.4 to 2.0% Si, and the balance: Cu and unavoidable impurities.
[0013] Ni is easily alloyed with copper and is harder than copper, so it is a component that contributes to improving wear resistance. Si also acts as a surfactant, promoting bonding between metals, and is harder than copper, so it is also a component that contributes to improving wear resistance. Therefore, the welding contact tip of the present invention, which is made of a copper alloy containing Ni and Si, can suppress breakage due to wear and extend its service life in welding with fast wire feed speeds or welding with high wear.
[0014] However, because Ni and Si have lower electrical conductivity than copper, increasing their content reduces the electrical conductivity of the welding contact tip, which increases the amount of heat generated, leading to seizure of the contact tip and reduced welding quality.Furthermore, because Si has lower heat resistance than copper, increasing its content may cause the welding contact tip to soften or melt at high temperatures.
[0015] Thus, Ni and Si are components that contribute to improving wear resistance, but they also inhibit electrical conductivity and heat resistance. As a result of repeated experiments, the inventors determined that a composition of 1.0-5.0% Ni, 0.4-2.0% Si, and the remainder Cu and unavoidable impurities is the most balanced composition for a welding contact tip.
[0016] That is, if Ni is less than 1.0%, hardness decreases, and if it exceeds 5.0%, hardness increases but electrical conductivity and heat resistance decrease. Similarly, if Si is less than 0.4%, hardness decreases, and if it exceeds 2.0%, electrical conductivity and heat resistance decrease. In particular, the range in the middle of the above range, Ni: 2.0 to 4.0%, Si: 0.8 to 1.5%, is the most preferable range.
[0017] Copper alloys contain trace amounts of unavoidable impurities, which inhibit electrical conductivity, so their total content should preferably be 0.3% or less. There are also copper alloys with increased hardness due to the addition of hard metals such as chromium and cobalt, but these all reduce electrical conductivity and increase costs, making them undesirable materials for welding contact tips.
[0018] The results of experiments conducted to confirm the performance of the present invention are shown below. Welding contact tips were fabricated from copper alloy wires with varying Ni and Si compositions as shown in Table 1. For comparison, conventionally used chromium copper contact tips and silver-containing copper contact tips as shown in Patent Document 3 were also prepared and set in an actual welding machine to perform arc welding in which the welding current was periodically switched between positive and negative phases, and data on service life was collected. The contents in Table 1 are in mass %, with the remainder consisting of copper and unavoidable impurities.
[0019] To measure the service life, stainless steel wire was used as the welding wire, and the service life of the chromium copper contact tip was used as the standard, with equivalent items marked as ◯, less than that marked as ×, and more than that marked as ◎. The service life of contact tips Nos. 2, 3, and 6, which are products of the present invention, was 6 to 8 times that of the standard product, demonstrating a significantly longer life than conventional products. It was confirmed that the service life of welding contact tips Nos. 2, 3, and 6 was 6 to 8 times that of the standard product when both non-plated wire and plated wire were used as the welding wire. The evaluation results are shown in Table 1.
[0020] [Table 1]
[0021] As shown in Table 1, welding contact tips Nos. 2, 3, and 6, which are products of the present invention, have excellent conductivity, are low cost, and have a significantly longer service life than conventional welding contact tips made of chromium copper.
[0022] Welding contact tip No. 1 had low Ni and Si content and was rated as x in all evaluation items except for conductivity. No. 4 had a low Si content, so its service life was the same as that of the standard product No. 8. No. 5 had too high a Si content, which reduced its heat resistance and conductivity. No. 7 had too high a Ni content, which reduced its conductivity. No. 9, a contact tip made of silver-containing copper, has performance equal to or better than the standard product, but is more expensive. Furthermore, No. 5 and No. 7 had high Ni and Si contents and were found to be prone to spatter adhesion.
[0023] As explained above, the welding contact tip of the present invention is able to achieve a good balance between electrical conductivity and wear resistance, and as a result, it is highly practical, with a service life that is dramatically improved to 6 to 8 times that of conventional products while keeping manufacturing costs down. [Explanation of symbols]
[0024] 10 Chip body 11 Welding wire insertion hole 12 Male thread 13 Wire entry point
Claims
1. A welding contact tip characterized in that the entire tip body is made of a copper alloy having a composition, in mass%, of Ni: 1.0 to 5.0%, Si: 0.4 to 2.0%, and the balance: Cu and unavoidable impurities.
2. 2. The welding contact tip according to claim 1, wherein the total amount of unavoidable impurities is 0.3% or less.
3. 2. The welding contact tip according to claim 1, wherein Ni is 2.0 to 4.0% and Si is 0.8 to 1.5%.
Citation Information
Patent Citations
Method for coating contact tip for arc welding with ceramic
JP1986217567A
Copper alloy material and method for producing the same, and electrode member of welding equipment
JP2008163439A
Copper alloy material for structural member of resistance welding machine
JP2010106332A
Steel alloy material and manufacturing method therefor
JP2015227481A
Contact tip for arc welding
JP1998193122A