JPS5941429A - Electric contact material - Google Patents
Electric contact materialInfo
- Publication number
- JPS5941429A JPS5941429A JP57153203A JP15320382A JPS5941429A JP S5941429 A JPS5941429 A JP S5941429A JP 57153203 A JP57153203 A JP 57153203A JP 15320382 A JP15320382 A JP 15320382A JP S5941429 A JPS5941429 A JP S5941429A
- Authority
- JP
- Japan
- Prior art keywords
- carbide
- nitride
- boride
- group
- silver
- 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.)
- Pending
Links
Landscapes
- Manufacture Of Switches (AREA)
- Contacts (AREA)
Abstract
Description
【発明の詳細な説明】
(技術分野)
この発明は電気接点材料特にアーク特性に優れた電気接
点材料に関する。DETAILED DESCRIPTION OF THE INVENTION (Technical Field) The present invention relates to an electrical contact material, particularly an electrical contact material having excellent arc properties.
(背景技術) 従来鍜−酸化カドミウム系、銀−酸化スズ系。(Background technology) Conventional molds include cadmium oxide, silver and tin oxide.
や銀−ニッケル系固溶体は、電磁接触機、リレー等各種
電気機器の接点に供され、その特徴も銀−酸化カドミウ
ム系又は銀−酸化スズ系は性能上溶着消耗共に少なく、
銀−ニッケル系は性能上消耗が少なくかつ製作上加工性
に優れた材料として知られている。Silver-nickel solid solutions are used for contacts in various electrical devices such as electromagnetic contactors and relays, and silver-cadmium oxide or silver-tin oxide systems have low welding wear and tear in terms of performance.
The silver-nickel system is known as a material with low wear and tear and excellent workability in manufacturing.
ところがこれらの接点材料を短絡時の電磁力によりアー
クを走らせグリッドで分割し、限流するタイプのブレー
カの接点に用いるとアークの走行性に欠けるために短絡
遮断性能に劣る。すなわちこの様な電気機器の接点では
アークが発生してグリッドに入るまでの時間の長短を左
右する走行性が要求されるのである。However, when these contact materials are used in the contacts of a type of breaker that limits the current by running an arc using electromagnetic force during a short circuit and dividing it with a grid, the short circuit breaking performance is poor due to the lack of arc running properties. In other words, the contacts of such electrical equipment are required to have good running performance, which determines the length of time it takes for an arc to enter the grid.
(発明の開示)
この発明は以上の事実を背景にしてなされたものでアー
クが接点間にとどまる時間の短かいいわゆるアーク膠着
時間の短い接点材料を提供するものである。(Disclosure of the Invention) The present invention was made against the background of the above-mentioned facts, and it is an object of the present invention to provide a contact material having a short so-called arc sticking time, in which the time that an arc remains between the contacts is short.
以下この発明を詳説する。この発明は鎖中に払族もしく
は11A族に属する金属元素の炭化物、8化物又は炭化
物が分散して構成された電気接点材料である。ここでI
A族、■A族の元素の炭化物。This invention will be explained in detail below. The present invention is an electrical contact material in which carbide, octide, or carbide of a metal element belonging to Group 11 or Group 11A is dispersed in the chain. Here I
Group A, ■ Carbide of Group A elements.
窒化物、硼化物には炭化バリウム、炭化ベリリュム、
111]化リチウム、窒化カルシウム、硼化ストロンチ
ウム、窒化マグネシウム、5III化バリウム、窒化リ
チウムなど種々の化合物が用いられる。これらの炭化物
、窒化物、硼化物が鎖中に分散されて含まれるとアーク
膠着時間が短縮される反面耐溶着性、耐消耗性の向上は
みられない。分散量は0.1〜5重量%が適当で好まし
くは0.5〜3.0重量%である。Nitride and boride include barium carbide, beryllium carbide,
Various compounds such as lithium 111], calcium nitride, strontium boride, magnesium nitride, barium 5III, and lithium nitride are used. When these carbides, nitrides, and borides are dispersed and included in the chain, the arc sticking time is shortened, but no improvement in welding resistance or abrasion resistance is observed. The amount of dispersion is suitably 0.1 to 5% by weight, preferably 0.5 to 3.0% by weight.
上記の如く銀と工A、もしくはlA族に属する元素の炭
化物、窒化物又は硼化物とから構成された電気接点材料
のアーク膠着時間の短縮を内容とするアーク特性を保持
して耐溶着性、耐消耗性を向上させるのに上記成分の構
成にさらにニッケルを添加することが有効である。すな
わち鎖中に上記の如き炭化物、窒化物又は硼化物とニッ
ケルが共存するとアーク特性、耐溶着性、耐消耗性が詔
しなべて向上する。この場合、ニッケルの量は2〜20
重量%が適当である。つまり2重量%未満では耐消耗性
、耐溶着性の改善効果が得られず、20重量%を越える
と電導性が低下して耐溶着性に影響を与えるからである
。ニッケルと共存する上記炭化物、窒化物、硼化物につ
いては0.1〜5重量%が適当で第1の発明と同様の傾
向を示す。As mentioned above, an electrical contact material composed of silver and a carbide, nitride, or boride of an element belonging to Group A or Group IA maintains arc properties, including shortening of arc sticking time, and is resistant to welding. In order to improve wear resistance, it is effective to further add nickel to the composition of the above components. That is, when nickel coexists with carbides, nitrides, or borides as described above in the chain, arc characteristics, welding resistance, and abrasion resistance are all improved. In this case, the amount of nickel is 2-20
Weight % is appropriate. That is, if it is less than 2% by weight, no effect of improving wear resistance or welding resistance can be obtained, and if it exceeds 20% by weight, the electrical conductivity decreases and the welding resistance is affected. The carbides, nitrides, and borides coexisting with nickel are suitably contained in an amount of 0.1 to 5% by weight, showing the same tendency as in the first invention.
すなわち0.1重量%未満ではアーク膠着時間の短縮に
効果が認められず、5重量%を越えるとニッケルによっ
て向上した耐溶着性、耐消耗性を阻害するからである。That is, if it is less than 0.1% by weight, no effect on shortening the arc sticking time will be observed, and if it exceeds 5% by weight, the welding resistance and wear resistance improved by nickel will be inhibited.
これらの電気接点材料はその構成物質を混合して高圧成
形で一定の形状に塊化し、これを高温焼結し、さらに熱
間押出、圧延を経て得られる。These electrical contact materials are obtained by mixing their constituent substances, agglomerating them into a certain shape by high-pressure molding, sintering the agglomerates at high temperatures, and then hot extruding and rolling.
以下、この発明の実施例を構成成分ごとの性能で表記し
、比較例どしてあ1デた銀−ニッケル系接点材料と比較
し、この発明の効果を証する。Examples of the present invention will be described below in terms of performance for each constituent component, and will be compared with a comparative example of a silver-nickel contact material to demonstrate the effects of the present invention.
なあ、いずれの実施例についても製作条件は共通で次の
とありである。Incidentally, the following manufacturing conditions are common to all embodiments.
銀は250メツシユ以下の電解銀粉を用いた。As for silver, electrolytic silver powder of 250 mesh or less was used.
炭化物、硼化物、窒化物は100〜200メツシユの粉
末を用いた。Powders of 100 to 200 mesh were used for carbides, borides, and nitrides.
ニッケルは350メツシユ以下のカーポニールニッケル
粉末を用いた。As the nickel, carponyl nickel powder with a mesh size of 350 mesh or less was used.
そして、これらの構成物質を■型混合機で十分に混合し
、4トろ−の高圧で塊状化し、800℃で2時間の焼結
を施し、熱間押出、圧延、打抜工程を経て試料とした。Then, these constituent materials were thoroughly mixed in a type mixer, agglomerated under high pressure of 4 torrents, sintered at 800℃ for 2 hours, and then subjected to hot extrusion, rolling, and punching processes to form a sample. And so.
なあ、圧延では1mmの厚みまで薄くした。By the way, the thickness was reduced to 1mm by rolling.
なお、各性能の試験条件について説明を加えるとアーク
特性の良否の判断をアーク膠着時間で行った。これは限
流型ブレーカの接点に供し、短絡試験を行ってアーク膠
着時間を測定してなされるものである。さらに詳しくは
、ここでアーク膠着時間とは短絡遮断性能の指標であっ
て、試験片をブレーカの接点材料として用い接点を形成
し、短絡とともに生ずるアーク電圧の変化をとらえた。In addition, to explain the test conditions for each performance, the quality of the arc characteristics was judged based on the arc sticking time. This is done by applying it to the contacts of a current-limiting breaker, performing a short circuit test, and measuring the arc sticking time. More specifically, the arc sticking time is an index of short-circuit breaking performance, and a contact was formed using a test piece as a breaker contact material, and changes in arc voltage that occur with a short-circuit were captured.
ここでアークこう着時間を具体的に説明すると接点間に
生じたアークが変動せずに停滞する時間であって、発生
したアークに伴なって電磁力が生じ、この電磁力により
アークが移動する時間で従って短絡遮断性能はアークこ
う着時間の短縮によって、 改良を意味するものであ
る。To explain specifically the arc stagnation time, it is the time during which the arc generated between the contacts stagnates without fluctuation, and electromagnetic force is generated along with the generated arc, and this electromagnetic force causes the arc to move. Therefore, the short-circuit breaking performance is improved by shortening the arc sticking time.
なお短絡電流は5.2 K Aである。Note that the short circuit current is 5.2 KA.
耐溶着性、耐消耗性の良否はこの種の試験で代表的なA
STM試験方法(B182−49)に基づいて行った。The quality of welding resistance and abrasion resistance is determined by A, which is typical in this type of test.
It was conducted based on the STM test method (B182-49).
具体的条件は次のとおりに設定した。The specific conditions were set as follows.
負 荷二交流単相で100V 40A接点形状:φ
−5mm、フラット(固定接点)。Load 100V 40A with two AC single phase Contact shape: φ
-5mm, flat (fixed contact).
φ−5閣、12R(可動接点) 開閉回数:5万回、接触力200 P。φ-5 cabinet, 12R (movable contact) Number of opening and closing times: 50,000 times, contact force 200P.
解離力340ノ
試験数:3個
なお次表における消耗量は平均値で示し、溶着回数L3
個に生じた溶着回数の合計で示した。接点材料としての
優劣は消耗量溶着回数いずれも減少によって判別される
。Disassociation force 340 Test number: 3 The consumption amount in the following table is shown as an average value, and the number of welding L3
It is expressed as the total number of welds that occurred in each individual. The superiority or inferiority of a material as a contact material is judged by the decrease in wear and number of welding.
ここで()は重置%を示す。 Here, () indicates overlapping percentage.
以上の測定結果から証される点はIA族に属するリチウ
ム、■A族に属するバリウムのベリリュウム、ストロン
チウム、マグネシウム等の窒化物、炭化物又は硼化物は
アーク膠着時間の短縮に効果的であって、さらにニッケ
ルが共存すると耐溶着性、耐消耗性の改善に効果的であ
る。The above measurement results prove that nitrides, carbides, or borides of lithium belonging to Group IA, barium beryllium, strontium, magnesium, etc. belonging to Group A are effective in shortening the arc sticking time. Furthermore, the coexistence of nickel is effective in improving welding resistance and abrasion resistance.
特許出願人 松下電工株式会社 代理人弁理士 竹 元 敏 丸 (ばか2名)patent applicant Matsushita Electric Works Co., Ltd. Representative Patent Attorney Toshimaru Takemoto (2 idiots)
Claims (2)
の炭化物、硼化物又は窒化物が分散して構成されたこと
を特徴とする電気接点材料。(1) An electrical contact material characterized in that a carbide, boride, or nitride of a metal element belonging to Group IA or Group A is dispersed in the chain.
の炭化物、硼化物又は窒化物が分散された上にさらにニ
ッケルが分散されたことを特徴とする電気接点材料。(2) An electrical contact material characterized in that a carbide, boride or nitride of a metal element belonging to Group IA or Group I[A] is dispersed in the chain, and nickel is further dispersed therein.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP57153203A JPS5941429A (en) | 1982-08-31 | 1982-08-31 | Electric contact material |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP57153203A JPS5941429A (en) | 1982-08-31 | 1982-08-31 | Electric contact material |
Publications (1)
Publication Number | Publication Date |
---|---|
JPS5941429A true JPS5941429A (en) | 1984-03-07 |
Family
ID=15557292
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
JP57153203A Pending JPS5941429A (en) | 1982-08-31 | 1982-08-31 | Electric contact material |
Country Status (1)
Country | Link |
---|---|
JP (1) | JPS5941429A (en) |
Cited By (6)
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---|---|---|---|---|
US9636492B2 (en) | 2005-07-06 | 2017-05-02 | Icu Medical, Inc. | Medical connector with translating rigid internal valve member and narrowed passage |
US9933094B2 (en) | 2011-09-09 | 2018-04-03 | Icu Medical, Inc. | Medical connectors with fluid-resistant mating interfaces |
US10105492B2 (en) | 2003-12-30 | 2018-10-23 | Icu Medical, Inc. | Medical connector with internal valve member movable within male luer projection |
US10398887B2 (en) | 2007-05-16 | 2019-09-03 | Icu Medical, Inc. | Medical connector |
US10716928B2 (en) | 2008-12-19 | 2020-07-21 | Icu Medical, Inc. | Medical connector with closeable luer connector |
US11266793B2 (en) | 2015-04-24 | 2022-03-08 | Aghetto S.R.L. | Syringe with high safety in use |
-
1982
- 1982-08-31 JP JP57153203A patent/JPS5941429A/en active Pending
Cited By (17)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US11266785B2 (en) | 2003-12-30 | 2022-03-08 | Icu Medical, Inc. | Medical connector with internal valve member movable within male projection |
US10105492B2 (en) | 2003-12-30 | 2018-10-23 | Icu Medical, Inc. | Medical connector with internal valve member movable within male luer projection |
US9974939B2 (en) | 2005-07-06 | 2018-05-22 | Icu Medical, Inc. | Medical connector |
US9974940B2 (en) | 2005-07-06 | 2018-05-22 | Icu Medical, Inc. | Medical connector |
US10842982B2 (en) | 2005-07-06 | 2020-11-24 | Icu Medical, Inc. | Medical connector |
US9636492B2 (en) | 2005-07-06 | 2017-05-02 | Icu Medical, Inc. | Medical connector with translating rigid internal valve member and narrowed passage |
US11786715B2 (en) | 2007-05-16 | 2023-10-17 | Icu Medical, Inc. | Medical connector |
US10398887B2 (en) | 2007-05-16 | 2019-09-03 | Icu Medical, Inc. | Medical connector |
US11478624B2 (en) | 2008-12-19 | 2022-10-25 | Icu Medical, Inc. | Medical connector with closeable luer connector |
US10716928B2 (en) | 2008-12-19 | 2020-07-21 | Icu Medical, Inc. | Medical connector with closeable luer connector |
US11168818B2 (en) | 2011-09-09 | 2021-11-09 | Icu Medical, Inc. | Axially engaging medical connector system that inhibits fluid penetration between mating surfaces |
US10697570B2 (en) | 2011-09-09 | 2020-06-30 | Icu Medical, Inc. | Axially engaging medical connector system with diminished fluid remnants |
US10156306B2 (en) | 2011-09-09 | 2018-12-18 | Icu Medical, Inc. | Axially engaging medical connector system with fluid-resistant mating interfaces |
US9933094B2 (en) | 2011-09-09 | 2018-04-03 | Icu Medical, Inc. | Medical connectors with fluid-resistant mating interfaces |
US11808389B2 (en) | 2011-09-09 | 2023-11-07 | Icu Medical, Inc. | Medical connectors with luer-incompatible connection portions |
USD1042817S1 (en) | 2011-09-09 | 2024-09-17 | Icu Medical, Inc. | Medical connector |
US11266793B2 (en) | 2015-04-24 | 2022-03-08 | Aghetto S.R.L. | Syringe with high safety in use |
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