JPS6361376B2 - - Google Patents

Info

Publication number
JPS6361376B2
JPS6361376B2 JP56061743A JP6174381A JPS6361376B2 JP S6361376 B2 JPS6361376 B2 JP S6361376B2 JP 56061743 A JP56061743 A JP 56061743A JP 6174381 A JP6174381 A JP 6174381A JP S6361376 B2 JPS6361376 B2 JP S6361376B2
Authority
JP
Japan
Prior art keywords
nickel
silver
powder
contact
resistance
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired
Application number
JP56061743A
Other languages
Japanese (ja)
Other versions
JPS57177947A (en
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed filed Critical
Priority to JP56061743A priority Critical patent/JPS57177947A/en
Publication of JPS57177947A publication Critical patent/JPS57177947A/en
Publication of JPS6361376B2 publication Critical patent/JPS6361376B2/ja
Granted legal-status Critical Current

Links

Landscapes

  • Contacts (AREA)

Description

【発明の詳細な説明】[Detailed description of the invention]

本発明は、電気接点材料に関するものである。 従来より電気接点材料としては、銀−金属酸化
物系、銀−ニツケル系、銀−タングステン系、銀
−グラフアイト系などが用いられている。特に、
銀−ニツケル系電気接点材料はニツケル自身が加
工性が良いためニツケル量を増加しても加工性を
損わない。また、接点性能も、比較的接触抵抗が
低く安定であり、耐消耗性にも優れているので、
数多く使用されている。ところが、銀−酸化物系
の材料にくらべると、耐溶着性が劣り、かつ、初
期溶着を起こしやすいために使用電流領域が限定
しまうという欠点がある。 本発明は上記事情に鑑み銀−ニツケル系電気接
点材料の耐溶着性を向上せしめることを目的とし
てなされたものである。また、本発明は、銀−ニ
ツケル系電気接点材料の長所である加工性の良
さ、低く安定した接触抵抗および優れた耐消耗性
を損うことなく、耐溶着性を向上せしめた電気接
点材料を提供することを目的とする。 本発明は、重量比で、ニツケル10〜40%、タン
グステン0.5〜5%および残部銀からなることを
特徴とする電気接点材料である。 タングステンは、非常に硬度が高く、銀となじ
みが悪い。そこで、この元素を銀−ニツケル合金
素材中に均一分散せしめてニツケルの凝集を防ぎ
接点性能を向上しようとしたものである。 ここで、ニツケルの重量%を10〜40%と限定し
たのは、10%未満では耐溶着性が十分でなく、40
%を越えるとニツケルが酸化して酸化ニツケルと
なり接触抵抗が増大するからである。またタング
ステンは、0.5〜5%の範囲で均等に銀−ニツケ
ル合金に作用し、耐溶着性を向上させる。しか
し、0.5%未満では電気接点開閉時のアーク熱に
よるニツケルの凝集を防ぐことができず、5%を
越えると加工性が悪くなり開閉時の消耗が著しく
なるので、タングステンの添加量を0.5〜5%に
限定した。 次に、本発明による電気接点材料の効果を明瞭
ならしめるため、その具体的な実施例と従来例に
ついて説明する。 実施例 1 粒径数+ミクロン程度の銀粉とニツケル粉とタ
ングステン粉とを重量比で72.5:25:2.5の割合
で混合した。この混合粉末を圧縮、焼結をくりか
えしたのち、、熱間押出、冷間伸線した。そして、
この線材をヘツダー加工により、頭径4mmの可
動接点と頭径5mmの固定接点を得た。 実施例 2 粒径百ミクロン程度の銀粉とニツケル粉とタン
グステン粉とを重量比で84:15:1の割合で混合
した。この混合粉末を実施例1と同様な方法で、
可動接点と固定接点を得た。 従来例 1 粒径数+ミクロンの銀粉とニツケル粉を重量比
で70:30の割合で混合した。この混合粉末を圧
縮、焼結をくりかえしたのち、熱間押出、冷間伸
線した。そして、この線材をヘツダー加工により
頭径4mmの可動接点と頭径5mmの固定接点を
得た。 従来例 2 粒径百ミクロン程度の銀粉とニツケル粉とを
90:10の割合で混合した。この混合粉末を従来例
1と同様の方法で、可動接点と固定接点を得た。 しかして、実施例1乃至2および従来例1乃至
2のリベツト型電気接点各9個を下記の試験条件
にて開閉試験を行い、耐溶着性と接触抵抗を調べ
たところ下表右欄のような結果を得た。 試験条件 電 圧 AC100V 50Hz 電 流 投入電流 40A 定常電流 5A 開閉頻度 20回/分 負 荷 抵 抗 開閉回数 溶着発生まで
The present invention relates to electrical contact materials. Conventionally, as electrical contact materials, silver-metal oxide type, silver-nickel type, silver-tungsten type, silver-graphite type, etc. have been used. especially,
In the silver-nickel electrical contact material, nickel itself has good workability, so even if the amount of nickel is increased, the workability is not impaired. In addition, the contact performance is stable with relatively low contact resistance, and has excellent wear resistance.
Used many times. However, compared to silver-oxide materials, they have the disadvantage that they have poorer welding resistance and are more likely to cause initial welding, which limits the usable current range. The present invention has been made in view of the above circumstances with the object of improving the welding resistance of silver-nickel electrical contact materials. Furthermore, the present invention provides an electrical contact material that has improved welding resistance without sacrificing the advantages of silver-nickel electrical contact materials such as good workability, low and stable contact resistance, and excellent wear resistance. The purpose is to provide. The present invention is an electrical contact material characterized by comprising, by weight, 10 to 40% nickel, 0.5 to 5% tungsten, and the balance silver. Tungsten has extremely high hardness and is not compatible with silver. Therefore, an attempt was made to uniformly disperse this element in a silver-nickel alloy material to prevent nickel agglomeration and improve contact performance. Here, we limited the weight percentage of nickel to 10 to 40% because if it is less than 10%, the welding resistance is insufficient.
%, nickel will oxidize and become nickel oxide, resulting in an increase in contact resistance. Furthermore, tungsten acts uniformly on the silver-nickel alloy in a range of 0.5 to 5% and improves welding resistance. However, if it is less than 0.5%, it will not be possible to prevent nickel from agglomerating due to arc heat when opening and closing electrical contacts, and if it exceeds 5%, workability will deteriorate and wear and tear during opening and closing will be significant. It was limited to 5%. Next, in order to clarify the effects of the electrical contact material according to the present invention, specific examples and conventional examples thereof will be described. Example 1 Silver powder, nickel powder, and tungsten powder each having a particle size of several microns were mixed in a weight ratio of 72.5:25:2.5. This mixed powder was repeatedly compressed and sintered, then hot extruded and cold wire drawn. and,
This wire was subjected to header processing to obtain a movable contact with a head diameter of 4 mm and a fixed contact with a head diameter of 5 mm. Example 2 Silver powder, nickel powder, and tungsten powder each having a particle size of about 100 microns were mixed in a weight ratio of 84:15:1. This mixed powder was prepared in the same manner as in Example 1.
A movable contact and a fixed contact were obtained. Conventional Example 1 Silver powder and nickel powder with a particle diameter of several microns were mixed at a weight ratio of 70:30. This mixed powder was repeatedly compressed and sintered, then hot extruded and cold wire drawn. Then, this wire was subjected to header processing to obtain a movable contact with a head diameter of 4 mm and a fixed contact with a head diameter of 5 mm. Conventional example 2 Silver powder and nickel powder with a particle size of about 100 microns are
Mixed at a ratio of 90:10. A movable contact and a fixed contact were obtained using this mixed powder in the same manner as in Conventional Example 1. Therefore, nine rivet-type electrical contacts of Examples 1 and 2 and Conventional Examples 1 and 2 were subjected to opening/closing tests under the following test conditions, and the welding resistance and contact resistance were investigated as shown in the right column of the table below. I got good results. Test conditions Voltage AC100V 50Hz Current Closing current 40A Steady current 5A Opening/closing frequency 20 times/min Load Resistance Number of opening/closing Until welding occurs

【表】 上記表の右欄の結果からあきらかなように、本
発明の電気接点材料でつくつた電気接点は、従来
の電気接点に比し溶着発生までの開閉回数よりは
るかに多く、耐溶着性にすぐれていることがわか
る。また、接触抵抗についても従来例とかわらず
低く安定していることがわかる。 以上の説明からあきらかなように、本発明の電
気接点材料は、従来の電気接料に比し耐溶着性に
すぐれた画期的な発明であるといえる。
[Table] As is clear from the results in the right column of the table above, the electrical contacts made using the electrical contact material of the present invention have a much greater number of openings and closings than conventional electrical contacts before welding occurs, and are more resistant to welding. It can be seen that it is excellent. Further, it can be seen that the contact resistance is also low and stable as in the conventional example. As is clear from the above description, the electrical contact material of the present invention can be said to be an epoch-making invention that has superior welding resistance compared to conventional electrical contacts.

Claims (1)

【特許請求の範囲】[Claims] 1 重量比で、ニツケル10〜40%、タングステン
0.5〜5%および残部銀からなることを特徴とす
る電気接点材料。
1 Weight ratio: 10 to 40% nickel, tungsten
An electrical contact material comprising 0.5 to 5% and the balance silver.
JP56061743A 1981-04-23 1981-04-23 Electrical contact material Granted JPS57177947A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP56061743A JPS57177947A (en) 1981-04-23 1981-04-23 Electrical contact material

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP56061743A JPS57177947A (en) 1981-04-23 1981-04-23 Electrical contact material

Publications (2)

Publication Number Publication Date
JPS57177947A JPS57177947A (en) 1982-11-01
JPS6361376B2 true JPS6361376B2 (en) 1988-11-29

Family

ID=13179957

Family Applications (1)

Application Number Title Priority Date Filing Date
JP56061743A Granted JPS57177947A (en) 1981-04-23 1981-04-23 Electrical contact material

Country Status (1)

Country Link
JP (1) JPS57177947A (en)

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS59153852A (en) * 1983-02-21 1984-09-01 Tanaka Kikinzoku Kogyo Kk Electrical contact material
JPS59159951A (en) * 1983-03-03 1984-09-10 Tanaka Kikinzoku Kogyo Kk Electrical contact material
JPS624846A (en) * 1985-06-28 1987-01-10 Sumitomo Electric Ind Ltd Silver-nickel electrical contact point material

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5249916A (en) * 1975-10-18 1977-04-21 Mitsubishi Marorii Yakin Kogyo Kk Material for electric contact consisting of ag-metal oxides
JPS55138045A (en) * 1979-04-13 1980-10-28 Matsushita Electric Works Ltd Electric contact material
JPS563643A (en) * 1979-06-22 1981-01-14 Matsushita Electric Works Ltd Electrical contact material
JPS5616641A (en) * 1979-07-21 1981-02-17 Matsushita Electric Works Ltd Electric contact material

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5249916A (en) * 1975-10-18 1977-04-21 Mitsubishi Marorii Yakin Kogyo Kk Material for electric contact consisting of ag-metal oxides
JPS55138045A (en) * 1979-04-13 1980-10-28 Matsushita Electric Works Ltd Electric contact material
JPS563643A (en) * 1979-06-22 1981-01-14 Matsushita Electric Works Ltd Electrical contact material
JPS5616641A (en) * 1979-07-21 1981-02-17 Matsushita Electric Works Ltd Electric contact material

Also Published As

Publication number Publication date
JPS57177947A (en) 1982-11-01

Similar Documents

Publication Publication Date Title
JPS6361376B2 (en)
JPH0146571B2 (en)
JPH0138859B2 (en)
JPS6411698B2 (en)
JPS5938344A (en) Electrical contact material
JPS6411699B2 (en)
JPH0361738B2 (en)
JPH0118975B2 (en)
JPS5896835A (en) Electric contact material
JPS58126607A (en) Electric contact material
JPH0127137B2 (en)
JPH029096B2 (en)
JPH0237417B2 (en)
JPS59197539A (en) Electric contact material for sealing
JPS5914212A (en) Electric contact material
JPS6350413B2 (en)
JPH025806B2 (en)
JPH0123535B2 (en)
JPS58210137A (en) Electrical contact material
JPS58207348A (en) Electrical contact material for sealing
JPS5935306A (en) Electric contact material
JPH0147535B2 (en)
JPH0340096B2 (en)
JPH0368497B2 (en)
JPH0147536B2 (en)