Matches in SemOpenAlex for { <https://semopenalex.org/work/W4387059420> ?p ?o ?g. }
- W4387059420 endingPage "602" @default.
- W4387059420 startingPage "602" @default.
- W4387059420 abstract "The additive processes used in the manufacture of components for unmanned aerial vehicles (UAVs), from composite filaments, have an important advantage compared to classical technologies. This study focused on three-dimensional design, preliminary aerodynamic analysis, fabrication and assembly of thermoplastic extruded composite components, flight testing and search-rescue performance of an UAV. The UAV model was designed to have the highest possible structural strength (the fuselage has a structure with stiffening frames and the wing is a tri-spar), but also taking into account the limitations of the thermoplastic extrusion process. From the preliminary aerodynamic analysis of the UAV model, it was found that the maximum lift coefficient of 1.2 and the maximum drag coefficient of 0.06 were obtained at the angle of attack of 12°. After conducting flight tests, it can be stated that the UAV model, with components manufactured by the thermoplastic extrusion process, presented high stability and maneuverability, a wide range of speeds and good aerodynamic characteristics. The lack of this type of aircraft, equipped with electric motors, a traffic management system, and a thermal module designed for search-and-rescue missions, within the additive manufacturing UAV market, validates the uniqueness of the innovation of the UAV model presented in the current paper." @default.
- W4387059420 created "2023-09-27" @default.
- W4387059420 creator A5003677715 @default.
- W4387059420 creator A5022103432 @default.
- W4387059420 creator A5036458359 @default.
- W4387059420 creator A5056281964 @default.
- W4387059420 creator A5067550567 @default.
- W4387059420 creator A5076601127 @default.
- W4387059420 creator A5091853962 @default.
- W4387059420 date "2023-09-25" @default.
- W4387059420 modified "2023-09-27" @default.
- W4387059420 title "Material Extrusion Additive Manufacturing of the Composite UAV Used for Search-and-Rescue Missions" @default.
- W4387059420 cites W1812517509 @default.
- W4387059420 cites W1977804094 @default.
- W4387059420 cites W2229940056 @default.
- W4387059420 cites W2295635702 @default.
- W4387059420 cites W2331725058 @default.
- W4387059420 cites W2498031190 @default.
- W4387059420 cites W2539466166 @default.
- W4387059420 cites W2560983099 @default.
- W4387059420 cites W2611303385 @default.
- W4387059420 cites W2613070051 @default.
- W4387059420 cites W2683486275 @default.
- W4387059420 cites W2754027063 @default.
- W4387059420 cites W2795078265 @default.
- W4387059420 cites W2808500492 @default.
- W4387059420 cites W2910160837 @default.
- W4387059420 cites W2911956498 @default.
- W4387059420 cites W2912093940 @default.
- W4387059420 cites W2913181335 @default.
- W4387059420 cites W2922201067 @default.
- W4387059420 cites W2945785684 @default.
- W4387059420 cites W2954823923 @default.
- W4387059420 cites W2956891803 @default.
- W4387059420 cites W2975787732 @default.
- W4387059420 cites W2980277851 @default.
- W4387059420 cites W2995037220 @default.
- W4387059420 cites W3020837248 @default.
- W4387059420 cites W3020935966 @default.
- W4387059420 cites W3029188774 @default.
- W4387059420 cites W3029455807 @default.
- W4387059420 cites W3037919804 @default.
- W4387059420 cites W3042079915 @default.
- W4387059420 cites W3046989453 @default.
- W4387059420 cites W3083442117 @default.
- W4387059420 cites W3092407777 @default.
- W4387059420 cites W3113241956 @default.
- W4387059420 cites W3114315101 @default.
- W4387059420 cites W3119074753 @default.
- W4387059420 cites W3132954113 @default.
- W4387059420 cites W3134995017 @default.
- W4387059420 cites W3138342693 @default.
- W4387059420 cites W3144426752 @default.
- W4387059420 cites W3153407121 @default.
- W4387059420 cites W3166468498 @default.
- W4387059420 cites W3195256760 @default.
- W4387059420 cites W3198239135 @default.
- W4387059420 cites W3203045967 @default.
- W4387059420 cites W3209394607 @default.
- W4387059420 cites W3209901095 @default.
- W4387059420 cites W3216104695 @default.
- W4387059420 cites W3216224295 @default.
- W4387059420 cites W4205448661 @default.
- W4387059420 cites W4205811045 @default.
- W4387059420 cites W4206409182 @default.
- W4387059420 cites W4206754738 @default.
- W4387059420 cites W4210696162 @default.
- W4387059420 cites W4214578307 @default.
- W4387059420 cites W4220709924 @default.
- W4387059420 cites W4220921014 @default.
- W4387059420 cites W4224255591 @default.
- W4387059420 cites W4224854590 @default.
- W4387059420 cites W4225114437 @default.
- W4387059420 cites W4246192569 @default.
- W4387059420 cites W4251550110 @default.
- W4387059420 cites W4255847861 @default.
- W4387059420 cites W4280610169 @default.
- W4387059420 cites W4280648530 @default.
- W4387059420 cites W4281264239 @default.
- W4387059420 cites W4284960208 @default.
- W4387059420 cites W4285007658 @default.
- W4387059420 cites W4286215451 @default.
- W4387059420 cites W4293414176 @default.
- W4387059420 cites W4295813619 @default.
- W4387059420 cites W4296550516 @default.
- W4387059420 cites W4308119821 @default.
- W4387059420 cites W4308351840 @default.
- W4387059420 cites W4309459609 @default.
- W4387059420 cites W4312174316 @default.
- W4387059420 cites W4313889496 @default.
- W4387059420 cites W4316663642 @default.
- W4387059420 cites W4327948292 @default.
- W4387059420 cites W4378908973 @default.
- W4387059420 cites W4383695251 @default.
- W4387059420 doi "https://doi.org/10.3390/drones7100602" @default.
- W4387059420 hasPublicationYear "2023" @default.
- W4387059420 type Work @default.
- W4387059420 citedByCount "0" @default.