CHINESE JOURNAL OF ENERGETIC MATERIALS
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不同桥形微结构换能元的仿真设计与实验研究
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1.陕西应用物理化学研究所 应用物理化学国家级重点实验室;2.西安交通大学 机械制造系统工程国家重点实验室,陕西 西安710054

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Simulation Design and Experimental Study for Microstructure Energy Conversion Components with Different Bridge Shapes
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1.Science and Technology on Applied Physical Chemistry Laboratory, Shaanxi Applied Physics-Chemistry Research Institute, Xi′an 710061, China;2.The State Key Laboratory for Manufacturing Systems Engineering, Xi′an Jiaotong University, Xi′an 710049, China

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    摘要:

    微结构换能元是微机电系统(Micro Electro-Mechanical Systems,MEMS)火工品的关键器件,其桥区微结构设计对MEMS火工品的输出性能和能量利用率具有显著影响。为完善MEMS火工品微结构换能元设计理论,设计制作了8种不同桥形微结构换能元,采用仿真研究与红外测试等手段进行微结构换能元桥形结构优选与微结构效应研究,获得了V-50和L-1两种优选桥形结构换能元,揭示了不同桥形结构对换能元输出性能的影响规律,其中V-50桥形微结构换能元平均发火电压达到了100 μF/3.5 V,能量利用率为46.6%。

    Abstract:

    Microstructure energy conversion components are the key components of micro-electro-mechanical-system (MEMS) initiating explosive device, its bridge area microstructure design has a significant effect on the output performance and energy utilization rate of MEMS initiating explosive device. To perfect the design theory of microstructure energy conversion components of MEMS initiating explosive device, 8 kinds of microstructure energy conversion components with different bridge shapes were designed and fabricated. The bridge-shaped structure optimization and microstructure effect of microstructure energy conversion components were studied by means of simulation research and infrared test Two kinds of energy conversion components with V-50 and L-1 optimization bridge-shaped structure were obtained, and the influence law of different bridge-shaped structure on the output performance of energy conversion components was revealed, in which, the average ignition voltage of V-50 bridge-shaped microstructure energy conversion components reaches 100 μF/3.5 V, and the energy utilization rate is 46.6%.

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引用本文

张彬,任炜,褚恩义,等.不同桥形微结构换能元的仿真设计与实验研究[J].含能材料, 2018, 26(12):1056-1060. DOI:10.11943/CJEM2018270.
ZHANG Bin, REI Wei, CHU En-yi, et al. Simulation Design and Experimental Study for Microstructure Energy Conversion Components with Different Bridge Shapes[J]. Chinese Journal of Energetic Materials, 2018, 26(12):1056-1060. DOI:10.11943/CJEM2018270.

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历史
  • 收稿日期: 2018-09-21
  • 最后修改日期: 2018-11-03
  • 录用日期: 2018-10-31
  • 在线发布日期: 2018-11-01
  • 出版日期: 2018-12-25