Zhou Lin, Ye Mingtian, Qi Jianming, Chu Yanyun, Wang Zhen
Institute of Nuclear Physics and Chemistry, China Academy of Engineering Physics, P.O. Box 919-226, Mianyang 621999, China.
Rev Sci Instrum. 2021 Dec 1;92(12):124711. doi: 10.1063/5.0070794.
A compact nanosecond pulse generator was developed, aiming at producing high-energy flash x rays with a long lifetime. The generator was designed on the basis of a 0.67-ns pulse forming line (PFL), which is charged to ∼700 kV by an air core Tesla transformer and switched by a fast spark gap. The Tesla transformer consists of a single turn primary coil surrounding a 44-turn secondary coil using no magnetic cores. 2D magnetostatic and electrostatic simulations were carried out, and the inductance and stray capacitance of the transformer were calculated. The transformer was powered by a 40-nF capacitor bank via a hydrogen thyratron. An effective coupling co-efficiency k of 0.55 was achieved. The PFL voltage reached its second peak of 680 kV in 395 ns when the capacitor bank was switched at 25 kV. A nanosecond pulse with a peak voltage of 510 kV, a peak power of 2.6 GW, and a pulse width of 2.1 ns was generated on a 100-Ω ceramic resistor, which is going to be replaced by a vacuum x-ray tube. Since the pulse energy is small, the x-ray tube is expected to have a long lifetime. The generator is 285 mm in diameter, 800 mm in length, and 35 kg in weight, providing a compact means for high-energy x-ray radiographies both in scientific research and industrial applications.
开发了一种紧凑型纳秒脉冲发生器,旨在产生具有长寿命的高能闪光X射线。该发生器基于一条0.67纳秒的脉冲形成线(PFL)设计,该脉冲形成线由空心特斯拉变压器充电至约700 kV,并由快速火花隙开关。特斯拉变压器由围绕44匝次级线圈的单匝初级线圈组成,不使用磁芯。进行了二维静磁和静电模拟,并计算了变压器的电感和杂散电容。变压器由一个40 nF的电容器组通过氢闸流管供电。实现了0.55的有效耦合系数k。当电容器组在25 kV下切换时,PFL电压在395 ns内达到其680 kV的第二个峰值。在一个100Ω的陶瓷电阻上产生了一个峰值电压为510 kV、峰值功率为2.6 GW、脉冲宽度为2.1 ns的纳秒脉冲,该陶瓷电阻将被一个真空X射线管取代。由于脉冲能量较小,预计X射线管具有较长的寿命。该发生器直径为285 mm,长度为800 mm,重量为35 kg,为科研和工业应用中的高能X射线成像提供了一种紧凑的手段。