2024
DOI: 10.1016/j.sna.2024.115056
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High-safety energetic micro-igniter for micro-thrust system

Wenxing Kan,
Wei Liu,
Wenzhong Lou
et al.
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Cited by 1 publication
(2 citation statements)
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“…Additionally, Lee et al [176,177] presented a parametric study to obtain the proper heater dimensions that ensure consistent heat transfer between the heater and the solid propellant. Kan et al [178] proposed a safety control function for the micro-igniter aiming at improve the output energy. In order to minimize the misaction caused by traditional micro-igniters due to false triggering, Kan et al [178] proposed a MEMS safety device based on Lorentz force.…”
Section: Mems Chemical Thrustersmentioning
confidence: 99%
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“…Additionally, Lee et al [176,177] presented a parametric study to obtain the proper heater dimensions that ensure consistent heat transfer between the heater and the solid propellant. Kan et al [178] proposed a safety control function for the micro-igniter aiming at improve the output energy. In order to minimize the misaction caused by traditional micro-igniters due to false triggering, Kan et al [178] proposed a MEMS safety device based on Lorentz force.…”
Section: Mems Chemical Thrustersmentioning
confidence: 99%
“…Kan et al [178] proposed a safety control function for the micro-igniter aiming at improve the output energy. In order to minimize the misaction caused by traditional micro-igniters due to false triggering, Kan et al [178] proposed a MEMS safety device based on Lorentz force. Kan et al [179] performed an experimental study of the effect of carbon nanomaterials (CNMs) on the ignition and thrust performance of various types of oxygenated salts/nanothermite mixtures.…”
Section: Mems Chemical Thrustersmentioning
confidence: 99%