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一种用于材料动力学实验的、带有同轴电缆传输能量的高电流脉冲功率发生器CQ-3-MMAF。

A high current pulsed power generator CQ-3-MMAF with co-axial cable transmitting energy for material dynamics experiments.

作者信息

Wang Guiji, Chen Xuemiao, Cai Jintao, Zhang Xuping, Chong Tao, Luo Binqiang, Zhao Jianheng, Sun Chengwei, Tan Fuli, Liu Cangli, Wu Gang

机构信息

Institute of Fluid Physics, China Academy of Engineering Physics, Mianyang, 621900 Sichuan Province, China.

China Academy of Engineering Physics, Mianyang, 621900 Sichuan Province, China.

出版信息

Rev Sci Instrum. 2016 Jun;87(6):065110. doi: 10.1063/1.4953655.

Abstract

A high current pulsed power generator CQ-3-MMAF (Multi-Modules Assembly Facility, MMAF) was developed for material dynamics experiments under ramp wave and shock loadings at the Institute of Fluid Physics (IFP), which can deliver 3 MA peak current to a strip-line load. The rise time of the current is 470 ns (10%-90%). Different from the previous CQ-4 at IFP, the CQ-3-MMAF energy is transmitted by hundreds of co-axial high voltage cables with a low impedance of 18.6 mΩ and low loss, and then hundreds of cables are reduced and converted to tens of cables into a vacuum chamber by a cable connector, and connected with a pair of parallel metallic plates insulated by Kapton films. It is composed of 32 capacitor and switch modules in parallel. The electrical parameters in short circuit are with a capacitance of 19.2 μF, an inductance of 11.7 nH, a resistance of 4.3 mΩ, and working charging voltage of 60 kV-90 kV. It can be run safely and stable when charged from 60 kV to 90 kV. The vacuum of loading chamber can be up to 10(-2) Pa, and the current waveforms can be shaped by discharging in time sequences of four groups of capacitor and switch modules. CQ-3-MMAF is an adaptive machine with lower maintenance because of its modularization design. The COMSOL Multi-physics® code is used to optimize the structure of some key components and calculate their structural inductance for designs, such as gas switches and cable connectors. Some ramp wave loading experiments were conducted to check and examine the performances of CQ-3-MMAF. Two copper flyer plates were accelerated to about 3.5 km/s in one shot when the working voltage was charged to 70 kV. The velocity histories agree very well. The dynamic experiments of some polymer bonded explosives and phase transition of tin under ramp wave loadings were also conducted. The experimental data show that CQ-3-MMAF can be used to do material dynamics experiments in high rate and low cost shots. Based on this design concept, the peak current of new generators can be increased to 5-6 MA and about 100 GPa ramp stress can be produced on the metallic samples for high pressure physics, and a conceptual design of CQ-5-MMAF was given.

摘要

中国工程物理研究院流体物理研究所研制了一台高电流脉冲功率发生器CQ-3-MMAF(多模块组装装置,MMAF),用于材料在斜波和冲击载荷作用下的动力学实验,它能向带状线负载提供3 MA的峰值电流。电流的上升时间为470 ns(10%-90%)。与流体物理研究所之前的CQ-4不同,CQ-3-MMAF的能量通过数百根低阻抗为18.6 mΩ且损耗低的同轴高压电缆传输,然后通过电缆连接器将数百根电缆减少并转换为数十根电缆引入真空室,并与一对由Kapton薄膜绝缘的平行金属板相连。它由32个并联的电容器和开关模块组成。短路时的电气参数为:电容19.2 μF,电感11.7 nH,电阻4.3 mΩ,工作充电电压为60 kV - 90 kV。当充电电压在60 kV至90 kV之间时,它能安全稳定运行。加载室的真空度可达10(-2) Pa,电流波形可通过对四组电容器和开关模块按时间顺序放电来整形。CQ-3-MMAF由于其模块化设计,是一台维护量较低的自适应设备。利用COMSOL Multi-physics®软件对一些关键部件的结构进行了优化,并计算了它们的结构电感用于设计,如气体开关和电缆连接器。进行了一些斜波加载实验来检验CQ-3-MMAF的性能。当工作电压充电到70 kV时,一次实验就能将两块铜飞片加速到约3.5 km/s。速度历程吻合得很好。还进行了一些聚合物粘结炸药在斜波载荷作用下的动力学实验以及锡的相变实验。实验数据表明,CQ-3-MMAF可用于以高重复率和低成本进行材料动力学实验。基于这一设计理念,新型发生器的峰值电流可提高到5 - 6 MA,在金属样品上可产生约100 GPa的斜波应力用于高压物理研究,并给出了CQ-5-MMAF的概念设计。

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