提出了一种全新的脉冲熔化极气体保护焊(GMAW)方法,并研制出新型超音频复合脉冲GMAW电源,即在传统脉冲GMAW电流基础上复合叠加频率为20~80 k Hz、电流幅值为0~100 A、占空比为0%~100%的连续可调的超音频脉冲电流。设计了并联结构的主电...提出了一种全新的脉冲熔化极气体保护焊(GMAW)方法,并研制出新型超音频复合脉冲GMAW电源,即在传统脉冲GMAW电流基础上复合叠加频率为20~80 k Hz、电流幅值为0~100 A、占空比为0%~100%的连续可调的超音频脉冲电流。设计了并联结构的主电路拓扑及MCU+DSP双处理器数字化控制系统,通过软件编程实现了电流给定信号与PWM信号的同步输出及不同逻辑组合,可实现不同工作模式的焊接电流波形输出。对电源输出电流波形的测试结果表明:本文所设计的超音频复合脉冲GMAW电源输出电流波形满足不同工作模式的设计目标,超音频脉冲电流频率在80 k Hz时,仍保持较快的电流上升沿与下降沿变化速率。初步进行了铝合金平板堆焊试验,焊缝成形良好。展开更多
A stable three-channel dual-wavelength fiber ring laser is proposed and experimentally demonstrated. The dig- ital mieromirror-deviee (DMD) processor can select and reeirculate any dual waveband from the gain spectr...A stable three-channel dual-wavelength fiber ring laser is proposed and experimentally demonstrated. The dig- ital mieromirror-deviee (DMD) processor can select and reeirculate any dual waveband from the gain spectrum of the erbium-doped fiber at each channel. The uniform and stable dual-wavelength oscillation is obtained by a highly nonlinear photonic crystal fiber, which causes two degenerate the four-wave-mixing processes. By loading different reproducibility diffraction gratings on the optoelectronic DMD processor, the laser can be operated stably in a three-channel dual-wavelength scheme at room temperature. The power fluctuation of each laser channel is less than -0.02 dB.展开更多
文摘提出了一种全新的脉冲熔化极气体保护焊(GMAW)方法,并研制出新型超音频复合脉冲GMAW电源,即在传统脉冲GMAW电流基础上复合叠加频率为20~80 k Hz、电流幅值为0~100 A、占空比为0%~100%的连续可调的超音频脉冲电流。设计了并联结构的主电路拓扑及MCU+DSP双处理器数字化控制系统,通过软件编程实现了电流给定信号与PWM信号的同步输出及不同逻辑组合,可实现不同工作模式的焊接电流波形输出。对电源输出电流波形的测试结果表明:本文所设计的超音频复合脉冲GMAW电源输出电流波形满足不同工作模式的设计目标,超音频脉冲电流频率在80 k Hz时,仍保持较快的电流上升沿与下降沿变化速率。初步进行了铝合金平板堆焊试验,焊缝成形良好。
基金supported by the National Basic Research Program of China(2010CB327600)the Fundamental Research Funds for the Central Universities(2013RC1202)+2 种基金the Specialized Research Fund for the Doctoral Program of Higher Education(20120005120021)the Program for New Century Excellent Talents in University(NECT-11-0596)the Beijing Nova program(2011066)
文摘A stable three-channel dual-wavelength fiber ring laser is proposed and experimentally demonstrated. The dig- ital mieromirror-deviee (DMD) processor can select and reeirculate any dual waveband from the gain spectrum of the erbium-doped fiber at each channel. The uniform and stable dual-wavelength oscillation is obtained by a highly nonlinear photonic crystal fiber, which causes two degenerate the four-wave-mixing processes. By loading different reproducibility diffraction gratings on the optoelectronic DMD processor, the laser can be operated stably in a three-channel dual-wavelength scheme at room temperature. The power fluctuation of each laser channel is less than -0.02 dB.