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Specifics of Pulsed Arc Welding Power Supply Performance Based On A Transistor Switch

机译:基于晶体管开关的脉冲电弧焊接电源性能的细节

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Specifics of designing a pulsed arc welding power supply device are presented in the paper. Electronic components for managing large current was analyzed. Strengths and shortcomings of power supply circuits based on thyristor, bipolar transistor and MOSFET are outlined. As a base unit for pulsed arc welding was chosen MOSFET transistor, which is easy to manage. Measures to protect a transistor are given. As for the transistor control device is a microcontroller Arduino which has a low cost and adequate performance of the work. Bead transfer principle is to change the voltage on the arc in the formation of beads on the wire end. Microcontroller controls transistor when the arc voltage reaches the threshold voltage. Thus there is a separation and transfer of beads without splashing. Control strategies tested on a real device and presented. The error in the operation of the device is less than 25 us, it can be used controlling drop transfer at high frequencies (up to 1300 Hz).
机译:纸张中提出了设计脉冲电弧焊接电源装置的具体细节。分析了用于管理大电流的电子元件。基于晶闸管,双极晶体管和MOSFET的电源电路的优势和缺点。作为脉冲电弧焊接的基座单元被选择MOSFET晶体管,易于管理。给出了保护晶体管的措施。至于晶体管控制装置是微控制器Arduino,其具有低成本和足够的工作性能。珠子传递原理是在线端部上形成珠子的电弧上的电压。微控制器控制晶体管当电弧电压达到阈值电压时。因此,珠子的分离和转移而不会溅起。在真实设备上测试的控制策略并呈现。设备操作中的错误小于25,可以使用在高频(最多1300Hz)下控制下降传输。

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