Abstract This paper discusses miniaturized Pb/HBF 4 /PbO 2 reserve batteries (MRB) for military applications as in-flight power sources for small-caliber electronic fuzes, where the setback acceleration and high-spin force in firing environments are used to activate the MRB. The MRB is composed of a series configured 23 bipolar electrodes, an isolated glass ampoule filled with an electrolyte and an internal cutter for breaking the glass ampoule. The MRB is designed to furnish high-voltage electrical energy with a fast activation time in gunfire environments and must have a 20-year shelf life. The electrolyte volume is determined from the simulation results of a CFD program (FLUENT) for reduction in design time and cost. Two kinds of MRBs have been designed and fabricated: MRB-S with one narrow electrolyte-filling microchannel and MRB-D with two. In the experimental study, spin tests under 10,000 × g 's and ∼20,000 rpm conditions and a fire test under 43,000 × g 's and 57,000 rpm conditions have been made. The fabricated MRB with a diameter of 16 mm and a height of 13 mm has achieved a maximum voltage of 34.6 ± 0.4 V, an activation time of 8.6 ± 0.6 ms and a maximum capacity of 37.4 ± 0.4 W s at an optimized electrolyte volume of 180 mm 3 . The test results have verified that the activation time of the MRB at a low temperature of −32 °C can be improved by decreasing the flow resistance of the electrolyte in spite of the decreased ion mobility.
[1]
George M. Whitesides,et al.
Surface tension-powered self-assembly of microstructures - the state-of-the-art
,
2003
.
[2]
D. Linden.
Handbook Of Batteries
,
2001
.
[3]
C. Kim,et al.
Surface-tension-driven microactuation based on continuous electrowetting
,
2000,
Journal of Microelectromechanical Systems.
[4]
N. A. Hampson,et al.
The discharge capacity of the lead-lead dioxide couple in fluoboric and hydrofluosilicic acid
,
1974
.
[5]
H Kiehne,et al.
Battery Technology Handbook
,
1989
.
[6]
Jong-Soo Oh,et al.
Miniaturized inertia Generators as power supplies for small-caliber fuzes
,
2005
.
[7]
William S. N. Trimmer,et al.
Microrobots and micromechanical systems
,
1989
.
[8]
Young-Ho Cho,et al.
High-precision digital microflow controllers using fluidic digital-to-analog converters composed of binary-weighted flow resistors
,
2006,
Journal of Microelectromechanical Systems.
[9]
Liwei Lin,et al.
Electrolyte-based on-demand and disposable microbattery
,
2003
.