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Reduction of AgSnO2 contact resistance by changing the brazing method and corresponding improvement of an 18.5kW contactor

机译:通过改变钎焊法和18.5kW接触器的相应改进来减少AGSNO 2 接触电阻

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The replacement phase of AgCdO by Cd free material, especially AgSnO in contactors manufactured in Europe, can now be considered complete. However, AgSnO still has not replaced AgCdO in contactors for avionics due to their specific switching requirements of low currents because higher and more unstable contact resistances are observed during service life of these devices. This can cause significant concerns in low current applications with the risks of transmission failures of electrical information of control and measures. The strong influence of contact force on the contact resistance has already been presented (Holm 2013). To further improve the performance, this study focuses on the influence of surface finishing methods needed depending of the assembly processes used. To produce the assembled contacts of an 18.5kW contactor, induction brazing was replaced in this study by resistance brazing and with total suppression of finishing treatments. First, the two production processes and the visual appearance of parts produced by these two processes are presented. The study then focuses on the influence of the suppression of surface finishing treatments of the parts produced by resistance brazing. To validate this suppression, a natural aging of 2 years was performed and contactor poles were tested to measure the possible gain on contact resistance in low-level switching depending of the contact force. The temperature rise at new and during AC1 and AC3 service life of contactors are compared, as well as the low-level behavior at 10VDC, 20mA. In conclusion, the advantages and constraints of the process change are presented, as well as the perspectives offered, especially for avionics and space devices.
机译:CD自由材料的AGCDO的替代阶段,特别是欧洲制造的接触器中的AGSNO,现在可以考虑完成。然而,由于其特定的低电流切换要求,AGSNO仍未更换在航空电子接触器中的AGCDO,因为在这些设备的使用寿命期间观察到更高和更不稳定的接触电阻,因此由于它们的使用寿命较高和更不稳定的接触电阻。这可能导致低电流应用中的显着担忧,其具有控制和措施电气信息的传输故障风险。接触力对接触电阻的强烈影响已经呈现(Holm 2013)。为了进一步提高性能,本研究重点介绍了根据所用组装过程所需的表面精加工方法的影响。为了生产18.5kW接触器的组装触点,通过抵抗钎焊和整体抑制精加工治疗,在该研究中取代了感应钎焊。首先,提出了这两个过程生产的两种生产过程和视觉外观。然后,该研究专注于抑制电阻钎焊的零件表面精加工处理的影响。为了验证这种抑制,进行了2年的自然老化,并测试了接触器杆以根据接触力来测量低电平切换中接触电阻的可能增益。比较了接触器的新的和AC3和AC3使用寿命期间的温度升高,以及10VDC,20mA的低级行为。总之,提出了过程变化的优点和约束,以及提供的视角,特别是对于航空电子和空间设备。

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