WO2023004866A1 - 一种超声电弧辅助焊接装置 - Google Patents

一种超声电弧辅助焊接装置 Download PDF

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Publication number
WO2023004866A1
WO2023004866A1 PCT/CN2021/111091 CN2021111091W WO2023004866A1 WO 2023004866 A1 WO2023004866 A1 WO 2023004866A1 CN 2021111091 W CN2021111091 W CN 2021111091W WO 2023004866 A1 WO2023004866 A1 WO 2023004866A1
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panel
voltage
power supply
current
front panel
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PCT/CN2021/111091
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English (en)
French (fr)
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陶诚
匡中华
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广东铭利达科技有限公司
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Publication of WO2023004866A1 publication Critical patent/WO2023004866A1/zh

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23KSOLDERING OR UNSOLDERING; WELDING; CLADDING OR PLATING BY SOLDERING OR WELDING; CUTTING BY APPLYING HEAT LOCALLY, e.g. FLAME CUTTING; WORKING BY LASER BEAM
    • B23K28/00Welding or cutting not covered by any of the preceding groups, e.g. electrolytic welding
    • B23K28/02Combined welding or cutting procedures or apparatus

Definitions

  • the invention relates to the field of welding technology, in particular to an ultrasonic arc assisted welding device.
  • Welding is a manufacturing process and technology for joining metals or other thermoplastic materials such as plastics by heating, high temperature or high pressure. People often use welding devices to process metals or other materials. Among them, there are existing technologies in ultrasonic and arc hybrid welding. However, the existing ultrasonic arc-assisted welding devices have the following defects: the rapid attenuation of ultrasound in the gas medium, which also weakens the arc space sound radiation ability to a certain extent, and reduces the welding effect of the ultrasonic arc-assisted welding device.
  • the object of the present invention is to provide an ultrasonic arc assisted welding device to solve the rapid attenuation of ultrasound in the gas medium proposed in the above background technology, which also weakens the arc space sound radiation ability to a certain extent and reduces the ultrasonic arc assisted welding device.
  • the problem of the welding effect of the welding device is to provide an ultrasonic arc assisted welding device to solve the rapid attenuation of ultrasound in the gas medium proposed in the above background technology, which also weakens the arc space sound radiation ability to a certain extent and reduces the ultrasonic arc assisted welding device.
  • an ultrasonic arc assisted welding device including a device body, an ultrasonic excitation power supply, a series resonant circuit, an AC contactor and a voltage relay are fixedly installed inside the device body, the One end of the front bottom of the device body is fixedly installed with a high-frequency power supply front panel, and the bottom of the front of the device body is fixed with a DC voltage-regulating current front panel on one side of the high-frequency power supply front panel.
  • a frequency panel is fixedly installed at one end of the bottom of one side of the panel, and a peak voltage panel at the top of the frequency panel is fixed at one end of the top of the front panel of the high-frequency power supply, and the top of the front panel of the high-frequency power supply is A peak current panel located on one side of the peak voltage panel is fixedly installed, a voltage panel and a current panel are fixedly installed at both ends of the DC voltage regulation current front panel side respectively, and one end of the front top of the device body is fixedly installed with a The main air switch of the automatic control device on the top of the front panel of the high-frequency power supply, the top of the front of the device body is fixedly installed with eight front panel air switches on one side of the main air switch of the automatic control device.
  • the bottom of one side of the front panel of the high-frequency power supply is sequentially installed with a frequency adjustment knob, a pulse width adjustment knob and a high-frequency power switch on the side of the peak voltage panel from left to right,
  • the frequency panel is electrically connected to the frequency adjustment knob
  • the peak voltage panel and the peak current panel are both electrically connected to the pulse width adjustment knob
  • both the frequency adjustment knob and the pulse width adjustment knob are electrically connected to the high frequency power switch .
  • indicator lights are fixedly installed at both ends of the connection between the DC voltage regulating current front panel and the voltage panel, and the connection between the DC voltage regulating current front panel and the current panel
  • a voltage adjustment knob and a current adjustment knob are respectively installed at both ends of one side
  • a DC voltage adjustment switch is fixedly installed at the bottom of one side of the DC voltage regulation current front panel.
  • the voltage panel is electrically connected to the voltage adjustment knob
  • the current panel is electrically connected to the current adjustment knob
  • the two indicator lights, the voltage adjustment knob and the current adjustment knob are all connected to the The DC voltage regulating switch is electrically connected.
  • the AC contactor, voltage relay, high-frequency power supply front panel, DC voltage regulation current front panel and series resonant circuit are all electrically connected to the ultrasonic excitation power supply, and the eight described Both the air switch on the front panel and the ultrasonic excitation power supply are electrically connected to the main air switch of the automatic control device.
  • one side of the device body is provided with several first heat dissipation holes, and the corners of the device body away from the first heat dissipation holes are provided with second heat dissipation holes.
  • a detection input terminal aviation plug and a detection output terminal aviation plug are arranged between the second cooling holes, and the detection input terminal aviation plug and the detection output terminal aviation plug are both electrically connected to the voltage relay.
  • the beneficial effect of the present invention is: the high-frequency electrical signal output by the ultrasonic excitation power supply is output to the workpiece to be welded by using the series resonant circuit, and the excitation electrical signal is not lost or distorted, and the ultrasonic arc assist is improved.
  • the welding effect of the welding device is realized through the voltage relay and the AC contactor to realize the connection and disconnection of the ultrasonic excitation power supply with the welding arc start and arc extinguishing, and automatic welding is realized.
  • Fig. 1 is a perspective view of the present invention
  • Fig. 2 is the front view of the present invention
  • Fig. 3 is the back view of the present invention.
  • Fig. 4 is a structural representation of the present invention.
  • Fig. 5 is a flowchart of the present invention.
  • the device body 2. The first heat dissipation hole; 3. The front panel of the high-frequency power supply; 4. The front panel of the DC voltage regulation current; 5. The peak voltage panel; 6. The frequency panel; 7. The frequency adjustment knob ;8. Pulse width adjustment knob; 9. High-frequency power switch; 10. Peak current panel; 11. Air main switch of automatic control device; 12. Front panel air switch; 13. Voltage panel; 14. DC voltage regulator switch; 15. Current panel; 16. Current adjustment knob; 17. Voltage adjustment knob; 18. Indicator light; 19. Aviation plug at detection output end; 20. Aviation plug at detection input end; 21. Second cooling hole; 22. Ultrasonic excitation power supply ; 23, series resonant circuit; 24, AC contactor; 25, voltage relay.
  • the present invention provides an ultrasonic arc assisted welding device, including a device body 1, an ultrasonic excitation power supply 22, a series resonant circuit 23, an AC contactor 24 and a voltage relay 25 are fixedly installed inside the device body 1
  • a high-frequency power supply front panel 3 is fixedly installed at one end of the front bottom of the device body 1, and a DC voltage-regulating current front panel 4 on one side of the high-frequency power supply front panel 3 is fixedly installed at the bottom of the front of the device body 1.
  • a frequency panel 6 is fixedly installed at the bottom end of one side of the power front panel 3, and a peak voltage panel 5 at the top of the frequency panel 6 is fixedly installed at one end of the top side of the high-frequency power front panel 3, and the high-frequency power front panel 3
  • the peak current panel 10 on one side of the peak voltage panel 5 is fixedly installed on the top of one side
  • the voltage panel 13 and the current panel 15 are fixedly installed on the two ends of the DC voltage regulation current front panel 4 side respectively, and the front top of the device body 1
  • One end of the front panel 3 of the high-frequency power supply is fixedly installed with the main air switch 11 of the automatic control device, and the top of the front of the device body 1 is fixed with eight air switches of the front panel located on the side of the main air switch 11 of the automatic control device.
  • the bottom of one side of the high-frequency power supply front panel 3 is sequentially installed with a frequency adjustment knob 7, a pulse width adjustment knob 8 and a high-frequency power switch 9 on one side of the peak voltage panel 5 from left to right, and the frequency panel 6 and
  • the frequency adjustment knob 7 is electrically connected
  • the peak voltage panel 5 and the peak current panel 10 are both electrically connected to the pulse width adjustment knob 8
  • the frequency adjustment knob 7 and the pulse width adjustment knob 8 are both electrically connected to the high frequency power switch 9 to work
  • the personnel turn on the high-frequency power switch 9, the frequency adjustment knob 7 and the pulse width adjustment knob 8 are started, the staff adjusts the value on the frequency panel 6 by rotating the frequency adjustment knob 7, and the staff adjusts the peak voltage panel 5 by rotating the pulse width adjustment knob 8 and the value on the peak current panel 10.
  • indicator lights 18 are fixedly installed at both ends of the side where the DC voltage regulating current front panel 4 is connected to the voltage panel 13, and the two ends of the side where the DC voltage regulating current front panel 4 is connected to the current panel 15 are respectively
  • a voltage adjustment knob 17 and a current adjustment knob 16 are installed, and a DC voltage adjustment switch 14 is fixedly installed on the bottom of one side of the DC voltage regulation current front panel 4, and the staff controls the current value on the current panel 15 by rotating the current adjustment knob 16, The staff adjusts the voltage value on the voltage panel 13 by rotating the voltage adjustment knob 17 .
  • the voltage panel 13 is electrically connected to the voltage adjustment knob 17, the current panel 15 is electrically connected to the current adjustment knob 16, and the two indicator lights 18, the voltage adjustment knob 17 and the current adjustment knob 16 are all electrically connected to the DC voltage regulating switch 14.
  • the staff turns on the DC voltage regulating switch 14, the voltage adjustment knob 17 and the current adjustment knob 16 are started, and the two indicator lights 18 indicate operation and failure respectively. The fault light comes on.
  • the AC contactor 24, the voltage relay 25, the high-frequency power supply front panel 3, the DC voltage regulation current front panel 4 and the series resonant circuit 23 are all electrically connected to the ultrasonic excitation power supply 22, and the eight front panel air switches 12 and the ultrasonic excitation power supply 22 are electrically connected with the main air switch 11 of the automatic control device, and the staff adjusts the high-frequency power supply front panel 3 and the DC voltage regulation current front panel 4 so that the signal generated by the ultrasonic excitation power supply 22 acts on the arc, and ensure that the ultrasonic signal is not lost and distorted during the coupling process.
  • one side of the device body 1 is provided with a plurality of first heat dissipation holes 2, and the corner of the device body 1 away from the first heat dissipation holes 2 is provided with a second heat dissipation hole 21, and one of the four second heat dissipation holes 21
  • the holes 21 increase the heat dissipation effect of the device body 1.
  • the staff By setting the aviation plug 20 at the detection input end and the aviation plug 19 at the detection output end, the staff detects the voltage at both ends of the welding, and realizes that the voltage relay 25 controls the conduction of the ultrasonic excitation power supply 22.
  • the staff sets The fixed value of the constant voltage relay 25, when the voltage in the welding circuit rises to the set value or greater than the set value, the voltage relay 25 will act, and the moving contact will be closed or the moving contact will be disconnected to achieve the purpose of control.
  • a kind of ultrasonic arc assisted welding device of the present invention the worker connects the aviation plug 20 of the detection input end and the aviation plug 19 of the detection output end to the positive and negative electrodes of the welding machine respectively through wires, and the detection end and the output end are in a parallel state , when the connection of the output terminal is completed, the connection of the detection terminal is realized, the device body 1 is connected to the 220V AC power supply port, the power is turned on, the staff turns on the high-frequency power switch 9, the frequency adjustment knob 7 and the pulse width adjustment knob 8 are started, and preheating After 5-6 seconds, the staff turns on the DC voltage regulator switch 14, the voltage adjustment knob 17 and the current adjustment knob 16 are started, and the two indicator lights 18 are respectively the operation indicator light and the fault indicator light, and the operation indicator light is on when the device body 1 is in good condition , the device body 1 has a fault protection, the fault indicator light is on, the staff controls the current value on the current panel 15 to reach the minimum value by rotating the current adjustment knob 16, and the
  • the staff adjusts the value on the frequency panel 6 by rotating the frequency adjustment knob 7, the staff adjusts the values on the peak voltage panel 5 and peak current panel 10 by rotating the pulse width adjustment knob 8, and the staff selects the voltage and ultrasonic frequency , turn on and off the corresponding air switch 12 on the front panel, and the eight air switches 12 on the front panel are respectively marked as A, B, C, 1, 2, 3, 4, 5.
  • the staff turns on the air master of the automatic control device Switch 11 starts welding, and closes the automatic control device air master switch 11, front panel air switch 12, DC voltage regulator switch 14 and high-frequency power switch 9 successively after welding is received.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Arc Welding Control (AREA)
  • Lining Or Joining Of Plastics Or The Like (AREA)

Abstract

本发明公开了一种超声电弧辅助焊接装置,包括装置本体,装置本体的内部固定安装有超声激励电源、串联谐振电路、交流接触器和电压继电器,装置本体正面底部的一端固定安装有高频电源前置面板,装置本体正面的底部固定安装有位于高频电源前置面板一侧的直流调压电流前置面板,高频电源前置面板一侧底部的一端固定安装有频率面板,本发明一种超声电弧辅助焊接装置,将超声激励电源输出的高频率电信号利用串联谐振电路输出到待焊工件上面,并保证激励电信号不损失、不失真,提高超声电弧辅助焊接装置的焊接效果,通过电压继电器、交流接触器来实现随着焊接起弧和熄弧实现超声激励电源的接通与断开,实现自动焊接。

Description

一种超声电弧辅助焊接装置 技术领域
本发明涉及焊接技术领域,具体为一种超声电弧辅助焊接装置。
背景技术
焊接是一种以加热、高温或者高压的方式接合金属或其他热塑性材料如塑料的制造工艺及技术,人们常常使用焊接装置对金属或者其他材料进行加工,其中在超声波与电弧复合焊方面已有技术,然而,现有的超声电弧辅助焊接装置存在以下缺陷:超声在气体介质中的快速衰减,这在一定程度上也弱化了电弧空间声辐射能力,降低了超声电弧辅助焊接装置的焊接效果。
发明内容
本发明的目的在于提供一种超声电弧辅助焊接装置,以解决上述背景技术中提出的超声在气体介质中的快速衰减,这在一定程度上也弱化了电弧空间声辐射能力,降低了超声电弧辅助焊接装置的焊接效果的问题。
为实现上述目的,本发明提供如下技术方案:一种超声电弧辅助焊接装置,包括装置本体,所述装置本体的内部固定安装有超声激励电源、串联谐振电路、交流接触器和电压继电器,所述装置本体正面底部的一端固定安装有高频电源前置面板,所述装置本体正面的底部固定安装有位于高频电源前置面板一侧的直流调压电流前置面板,所述高频电源前置面板一侧底部的一端固定安装有频率面板,所述高频电源前置面板一侧顶部的一端固定安装有位于频率面板顶部的峰值电压面板,所述高频电源前置面板一侧的顶部固定安装有位于峰值电压面板一侧的峰值电流面板,所述直流调压电流前置面板一侧的两端分别固定安装有电压面板和电流面板,所述装置本体正面顶部的一端固定安装有位于高频电源前置面板顶部的自动控制装置空气总开关,所述装置本体正面的顶部固定安装有位于自动控制装置空气总开关一侧的八个前置面板空气开关。
作为本发明的一种优选技术方案,所述高频电源前置面板一侧的底部从左到右依次安装有位于峰值电压面板一侧的频率调节旋钮、脉宽调节旋钮和高频电源开关,所述频率面板与频率调节旋钮电性连接,所述峰值电压面板和峰值电流面板均与脉宽调节旋钮电性连接,所述频率调节旋钮和脉宽调节旋钮均与高频电源开关电性连接。
作为本发明的一种优选技术方案,所述直流调压电流前置面板与电压面板连接处一侧的两端均固定安装有指示灯,所述直流调压电流前置面板与电流面板连接处一侧的两端分别安装有电压调节旋钮和电流调节旋钮,所述直流调压电流前置面板一侧的底部固定安装有直流调压开关。
作为本发明的一种优选技术方案,所述电压面板与电压调节旋钮电性连接,所述电流面板与电流调节旋钮电性连接,两个所述指示灯、电压调节旋钮和电流调节旋钮均与直流调压开关电性连接。
作为本发明的一种优选技术方案,所述交流接触器、电压继电器、高频电源前置面板、直流调压电流前置面板和串联谐振电路均与超声激励电源电性连接,八个所述前置面板空气开关和超声激励电源均与自动控制装置空气总开关电性连接。
作为本发明的一种优选技术方案,所述装置本体的一侧开设有若干个第一散热孔,所述装置本体远离第一散热孔一侧的边角均开设有第二散热孔,四个所述第二散热孔之间设有检测输入端航空插头和检测输出端航空插头,所述检测输入端航空插头和检测输出端航空插头均与电压继电器电性连接。
与现有技术相比,本发明的有益效果是:将超声激励电源输出的高频率电信号利用串联谐振电路输出到待焊工件上面,并保证激励电信号不损失、不失真,提高超声电弧辅助焊接装置的焊接效果,通过电压继电器、交流接触器来实现随着焊接起弧和熄弧实现超声激励电源的接通与断开,实现自动焊接。
附图说明
图1为本发明的立体图;
图2为本发明的主视图;
图3为本发明的后视图;
图4为本发明的结构示意图;
图5为本发明的流程图。
图中:1、装置本体;2、第一散热孔;3、高频电源前置面板;4、直流调压电流前置面板;5、峰值电压面板;6、频率面板;7、频率调节旋钮;8、脉宽调节旋钮;9、高频电源开关;10、峰值电流面板;11、自动控制装置空气总开关;12、前置面板空气开关;13、电压面板;14、直流调压开关;15、电流面板;16、电流调节旋钮;17、电压调节旋钮;18、指示灯;19、检测输出端航空插头;20、检测输入端航空插头;21、第二散热孔;22、超声激励电源;23、串联谐振电路;24、交流接触器;25、电压继电器。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述。
请参阅图1-5,本发明提供了一种超声电弧辅助焊接装置,包括装置本体1,装置本体1的内部固定安装有超声激励电源22、串联谐振电路23、交流接触器24和电压继电器25,装置本体1正面底部的一端固定安装有高频电源前置面板3,装置本体1正面的底部固定安装有位于高频电源前置面板3一侧的直流调压电流前置面板4,高频电源前置面板3一侧底部的一端固定安装有频率面板6,高频电源前置面板3一侧顶部的一端固定安装有位于频率面板6顶部的峰值电压面板5,高频电源前置面板3一侧的顶部固定安装有位于峰值电压面板5一侧的峰值电流面板10,直流调压电流前置面板4一侧的两端分别固定安装有电压面板13和电流面板15,装置本体1正面顶部的一端固定安 装有位于高频电源前置面板3顶部的自动控制装置空气总开关11,装置本体1正面的顶部固定安装有位于自动控制装置空气总开关11一侧的八个前置面板空气开关12,将超声激励电源22输出的高频率电信号利用串联谐振电路23输出到待焊工件上面,并保证激励电信号不损失、不失真,通过电压继电器25、交流接触器24来实现随着焊接起弧和熄弧实现超声激励电源22的接通与断开。
优选的,高频电源前置面板3一侧的底部从左到右依次安装有位于峰值电压面板5一侧的频率调节旋钮7、脉宽调节旋钮8和高频电源开关9,频率面板6与频率调节旋钮7电性连接,峰值电压面板5和峰值电流面板10均与脉宽调节旋钮8电性连接,频率调节旋钮7和脉宽调节旋钮8均与高频电源开关9电性连接,工作人员打开高频电源开关9,频率调节旋钮7和脉宽调节旋钮8启动,工作人员通过旋转频率调节旋钮7调节频率面板6上的数值,工作人员通过旋转脉宽调节旋钮8调节峰值电压面板5和峰值电流面板10上的数值。
优选的,直流调压电流前置面板4与电压面板13连接处一侧的两端均固定安装有指示灯18,直流调压电流前置面板4与电流面板15连接处一侧的两端分别安装有电压调节旋钮17和电流调节旋钮16,直流调压电流前置面板4一侧的底部固定安装有直流调压开关14,工作人员通过旋转电流调节旋钮16控制电流面板15上的电流数值,工作人员通过旋转电压调节旋钮17调节电压面板13上的电压数值。
优选的,电压面板13与电压调节旋钮17电性连接,电流面板15与电流调节旋钮16电性连接,两个指示灯18、电压调节旋钮17和电流调节旋钮16均与直流调压开关14电性连接,工作人员打开直流调压开关14,电压调节旋钮17、电流调节旋钮16启动,两个指示灯18分别为运行和故障,装置本体1完好时运行灯亮起,装置本体1发生故障护,故障灯亮起。
优选的,交流接触器24、电压继电器25、高频电源前置面板3、直流调压电流前置面板4和串联谐振电路23均与超声激励电源22电性连接,八个前置面板空气开关12和超声激励电源22均与自动控制装置空气总开关11电性连接,工作人员通过调节高频电源前置面板3和直流调压电流前置面板4使得超声激励电源22产生的信号顺利作用于电弧,并保证在耦合过程中超声信号不损失和失真。
优选的,装置本体1的一侧开设有若干个第一散热孔2,装置本体1远离第一散热孔2一侧的边角均开设有第二散热孔21,四个第二散热孔21之间设有检测输入端航空插头20和检测输出端航空插头19,检测输入端航空插头20和检测输出端航空插头19均与电压继电器25电性连接,通过开设第一散热孔2和第二散热孔21增加装置本体1的散热效果,通过设置检测输入端航空插头20和检测输出端航空插头19,工作人员检测焊接两端的电压,实现电压继电器25控制超声激励电源22的导通,工作人员设定电压继电器25的定值,当焊接电路中电压升至整定值或大于整定值时,电压继电器25就动作,动合触点闭合或者动断触点断开达到控制的目的。
具体使用时,本发明一种超声电弧辅助焊接装置,工作人员将检测输入端航空插头20和检测输出端航空插头19通过导线分别与焊机的正负电极连接,检测端与输出端呈并联状态,当完成输出端连接后,检测端即实现连接,将装置本体1接入220V交流电供电端口,通电,工作人员打开高频电源开关9,频率调节旋钮7和脉宽调节旋钮8启动,预热5-6秒后,工作人员打开直流调压开关14,电压调节旋钮17、电流调节旋钮16启动,两个指示灯18分别为运行指示灯和故障指示灯,装置本体1完好时运行指示灯亮起,装置本体1发生故障护,故障指示灯亮起,工作人员通过旋转电流调节旋钮16控制电流面板15上的电流数值达到最小值,工作人员通过旋转电压调节旋钮17调节电压面板13上的电压数值达到最小值,工作人员通过旋转频率调节旋钮 7调节频率面板6上的数值,工作人员通过旋转脉宽调节旋钮8调节峰值电压面板5和峰值电流面板10上的数值,工作人员选定电压及超声频率,打开和关闭对应的前置面板空气开关12,八个前置面板空气开关12分别标号为A、B、C、1、2、3、4、5,调节后工作人员打开自动控制装置空气总开关11,开始焊接,焊接接收后依次关闭自动控制装置空气总开关11、前置面板空气开关12、直流调压开关14和高频电源开关9。

Claims (6)

  1. 一种超声电弧辅助焊接装置,包括装置本体(1),其特征在于:所述装置本体(1)的内部固定安装有超声激励电源(22)、串联谐振电路(23)、交流接触器(24)和电压继电器(25),所述装置本体(1)正面底部的一端固定安装有高频电源前置面板(3),所述装置本体(1)正面的底部固定安装有位于高频电源前置面板(3)一侧的直流调压电流前置面板(4),所述高频电源前置面板(3)一侧底部的一端固定安装有频率面板(6),所述高频电源前置面板(3)一侧顶部的一端固定安装有位于频率面板(6)顶部的峰值电压面板(5),所述高频电源前置面板(3)一侧的顶部固定安装有位于峰值电压面板(5)一侧的峰值电流面板(10),所述直流调压电流前置面板(4)一侧的两端分别固定安装有电压面板(13)和电流面板(15),所述装置本体(1)正面顶部的一端固定安装有位于高频电源前置面板(3)顶部的自动控制装置空气总开关(11),所述装置本体(1)正面的顶部固定安装有位于自动控制装置空气总开关(11)一侧的八个前置面板空气开关(12)。
  2. 根据权利要求1所述的一种超声电弧辅助焊接装置,其特征在于:所述高频电源前置面板(3)一侧的底部从左到右依次安装有位于峰值电压面板(5)一侧的频率调节旋钮(7)、脉宽调节旋钮(8)和高频电源开关(9),所述频率面板(6)与频率调节旋钮(7)电性连接,所述峰值电压面板(5)和峰值电流面板(10)均与脉宽调节旋钮(8)电性连接,所述频率调节旋钮(7)和脉宽调节旋钮(8)均与高频电源开关(9)电性连接。
  3. 根据权利要求1所述的一种超声电弧辅助焊接装置,其特征在于:所述直流调压电流前置面板(4)与电压面板(13)连接处一侧的两端均固定安装有指示灯(18),所述直流调压电流前置面板(4)与电流面板(15)连接处一侧的两端分别安装有电压调节旋钮(17)和电流调节旋钮(16),所述直流调压电流前置面板(4)一侧的底部固定安装有直流调压开关(14)。
  4. 根据权利要求3所述的一种超声电弧辅助焊接装置,其特征在于:所 述电压面板(13)与电压调节旋钮(17)电性连接,所述电流面板(15)与电流调节旋钮(16)电性连接,两个所述指示灯(18)、电压调节旋钮(17)和电流调节旋钮(16)均与直流调压开关(14)电性连接。
  5. 根据权利要求1所述的一种超声电弧辅助焊接装置,其特征在于:所述交流接触器(24)、电压继电器(25)、高频电源前置面板(3)、直流调压电流前置面板(4)和串联谐振电路(23)均与超声激励电源(22)电性连接,八个所述前置面板空气开关(12)和超声激励电源(22)均与自动控制装置空气总开关(11)电性连接。
  6. 根据权利要求1所述的一种超声电弧辅助焊接装置,其特征在于:所述装置本体(1)的一侧开设有若干个第一散热孔(2),所述装置本体(1)远离第一散热孔(2)一侧的边角均开设有第二散热孔(21),四个所述第二散热孔(21)之间设有检测输入端航空插头(20)和检测输出端航空插头(19),所述检测输入端航空插头(20)和检测输出端航空插头(19)均与电压继电器(25)电性连接。
PCT/CN2021/111091 2021-07-28 2021-08-06 一种超声电弧辅助焊接装置 WO2023004866A1 (zh)

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