Chinese Space Science and Technology ›› 2017, Vol. 37 ›› Issue (5): 24-.doi: 10.16708/j.cnki.1000-758X.2017.0080
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WANG Shang-Min, TIAN Li-Cheng, ZHANG Jia-Liang, ZHANG Tian-Ping, FENG Wei-Wei, CHEN Xin-Wei, GAO Jun
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Abstract: Thedischargeprocess〖JP+2〗andperformancecharacterizationofaplanarablationmicropulsedplasmathruster(〖WT〗μ〖WTF2〗PPT) 〖HJ5.5p〗 wereinvestigated.Basedontheelectricalmeasurementsofthedischargeprocessandopticalbehavioroftheplasmaregion,thebasicdischargecharacteristicsandtheevolutionofthedischargepatternofμPPTwerestudied.Fromthespatialpattern,μPPTdischargegapcanbedividedintothreeregions(cathoderegion,arccolumnregionandanoderegion);withthedischargegapdecreasing,theanodeareagraduallydisappears.Fromthetemporalbehavior,μPPTiscomposedofseveralpulsedischargeswithdifferentamplitude.Thenumberofdischargepulsesisdeterminedbytheimpedancedetailofthedischargecircuitanddischargegap.Singlepulsedischargecanoccurundersuitableconditions.BasedonthecurrentsheetmodeloftheμPPTplasmaregion,thebasicperformanceparameterssuchasimpulsebitandspecificimpulseofμPPTwereestimated.TheresultsshowthatthedischargegapandablationvolumehaveanimportanteffectontheμPPTperformanceparameters.Withsamedischargeenergypulse,thelargerthegapis,thelargertheimpulsebitis,leadingtolargerablationamountandsmallerspecificimpulse.DischargetimespacemorphologyisthekeyfactorthataffectstheimpulsebitandspecificimpulseofμPPT.Therefore,itisaneffectivewaytoimprovetheμPPTperformancebystudyingtheoptimizationofdischargecircuitanddischargegapimpedance.
Key words: micropulsedplasmathruster, electricalcharacteristics, opticalproperties, performanceprediction, microelectricpropulsion
WANG Shang-Min, TIAN Li-Cheng, ZHANG Jia-Liang, ZHANG Tian-Ping, FENG Wei-Wei, CHEN Xin-Wei, GAO Jun. Elementarystudyonthedischargeprocessandperformanceofmicropulsedplasmathruster[J]. Chinese Space Science and Technology, 2017, 37(5): 24-.
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URL: https://journal26.magtechjournal.com/kjkxjs/EN/10.16708/j.cnki.1000-758X.2017.0080
https://journal26.magtechjournal.com/kjkxjs/EN/Y2017/V37/I5/24