Publication detail

THE CFRP SAILPLANE WING SEGMENTS MANUFACTURED BY FILAMENT PLACEMENT

MALIŠ, M. URÍK, T.

Czech title

Křídlo kluzáku vyráběné technologií navíjení

English title

THE CFRP SAILPLANE WING SEGMENTS MANUFACTURED BY FILAMENT PLACEMENT

Type

conference paper

Language

en

Original abstract

The application of filament placement technology on sailplane wing is discussed in the paper. Two structure designs, based on high speed CNC milling foam core mandrels, are compared. Performed finite element and real experiments shows that used low cost foam mandrel has some limitations when it is used in wing structure. On the other side automation of sailplane wing manufacturing can offer reasonable benefits.

Czech abstract

Článek popisuje aplikaci technologie navíjení při výrobě křídla kluzáku. Uvažovány byly dva typy vnitřní konstrukce křídla, vyráběné frézováním do měkkého materiálu. Vyrobené křídlo bylo testováno a výsledky zkoušek byly porovnány s teoretickými výpočty.

English abstract

The application of filament placement technology on sailplane wing is discussed in the paper. Two structure designs, based on high speed CNC milling foam core mandrels, are compared. Performed finite element and real experiments shows that used low cost foam mandrel has some limitations when it is used in wing structure. On the other side automation of sailplane wing manufacturing can offer reasonable benefits.

Keywords in Czech

křídlo, kluzák, navíjení

Keywords in English

wing, filament winding, sailplane

RIV year

2012

Released

23.09.2012

ISBN

978-0-9565333-1-9

Book

28TH CONGRESS OF THE INTERNATIONAL COUNCIL OF THE AERONAUTICAL SCIENCES

Edition number

1

Pages from–to

1–7

Pages count

7

BIBTEX


@inproceedings{BUT95582,
  author="Michal {Mališ} and Tomáš {Urík},
  title="THE CFRP SAILPLANE WING SEGMENTS MANUFACTURED BY FILAMENT PLACEMENT",
  booktitle="28TH CONGRESS OF THE INTERNATIONAL COUNCIL OF THE AERONAUTICAL SCIENCES",
  year="2012",
  month="September",
  pages="1--7",
  isbn="978-0-9565333-1-9"
}