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大電流通過電極及銅端子,產生足夠的電阻熱傳導到銅端子上,利用這個熱量以及加壓力進行壓接。是利用電阻熱能保證首先剝離導線(漆包線)的鍍層,然后依靠端子的夾力來確保結合強度的熱壓工藝手段。這里需要強調的是,熱壓接并不是焊接,而是熱壓接這一概念。
A large current passes through the electrode and the copper terminal, generating enough electrical resistance heat conduction to the copper terminal, and using this heat and pressure to conduct compression.Is the use of resistance heat to ensure that the first stripping wire (enameled wire) coating, and then rely on the terminal clamping force to ensure the bonding strength of the hot-pressing process.It should be emphasized that hot pressing is not welding, but the concept of hot pressing.
1、最初的熱量將電磁線(漆包線)的漆皮氣化;
2、進一步的加熱,漆皮氣化后,為銅線和銅線連接在一起提供條件;
3、最后,進一步的加熱和施加壓力,潔凈后的銅線互相熱量傳遞擴散。不僅僅是銅線連接在 一起,銅線還和端子也連接在一起。
4、在通電斷開后,壓力需要繼續保持,避免銅線連接松開。
5、通過此種熔接方法形成的連接,拉力強大和耐用,并且幾乎“零空氣電阻”的連接。
1. The initial heat gasifies the patent leather of the electromagnetic wire (enameled wire);
2. Further heating and gasification of the patent leather will provide conditions for the connection of copper wire and copper wire;
3. Finally, further heating and pressure are applied, and the cleaned copper wires transfer heat to and from each other.Not only are the copper wires connected, but the copper wires are also connected to the terminals.
4. After power disconnection, the pressure should be maintained to prevent the copper wire connection from loosening.
5. The connection formed by this welding method is strong and durable, and has almost "zero air resistance".
1. 生產效率:快,不用刮漆皮,一次只需幾秒至二十秒就可以完成;
2. 漆皮氣化:干凈,銅線清晰可見,無壓斷線情況;
3. 三相線電阻偏差:<0.5%;
4. 銅端子厚度偏差:焊接后在0.1mm內;
5. 拉力實驗:無漆包線拉脫情況,必須拉斷,單根拉力值較大,總拉力趨于一致;
6. 縫隙分析:橫向剖切端子,可見漆包線之間幾乎無縫隙,漆包線和銅端子之間幾乎無縫隙;縱向剖切端子,漆包線無松散;
7. 全數導通實驗:可以通過電阻測試儀驗證端子與每根漆包線間均為導通,電阻值較一致;
8. 銅管(端子)無焊裂,無炸裂,漆包線氣化無起火;漆皮焦化面積相對較小。
焊接操作視頻,請查看本網站“焊接視頻頁面”:http://www.btfsc.cn/page.html?id=159

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