2019•Journal of Physics Conference SeriesOpen access

Design a composite materials landing gear

Liviu Drăgus, Ionut Ciobanu, Camelia Mazăre, PhD Adrian Alexei, Mariana Barbaresso, Florin Stanciu

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Abstract

In the paper we present the project of a landing gear for an aerial target. It is presented the design of a low-cost and small mass landing gear for an aerial target by completing the resistance calculation and analysis with finite elements steps. The resistance calculation of the composite material landing gear models the stresses in laminate composite material through the lamina macro mechanics and the resistance theories applied to the composite sheet. Finite element analysis was done in a Finite Element Analysis program (Solids Works). The modeling is verified by experimental tests performed with the composite material landing gear. Experimental and theoretical deformations are compared for train requests at landing.

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What this paper is about

In the paper we present the project of a landing gear for an aerial target. It is presented the design of a low-cost and small mass landing gear for an aerial target by completing the resistance calculation and analysis with finite elements steps. The resistance calculation of the composite material landing gear models the stresses in laminate composite material through the lamina macro mechanics and the resistance theories applied to the composite sheet. Finite element analysis was done in a Finite Element Analysis program (Solids Works). The modeling is verified by experimental tests performed with the composite material landing gear. Experimental and theoretical deformations are compared for train requests at landing.

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Available abstract

In the paper we present the project of a landing gear for an aerial target. It is presented the design of a low-cost and small mass landing gear for an aerial target by completing the resistance calculation and analysis with finite elements steps. The resistance calculation of the composite material landing gear models the stresses in laminate composite material through the lamina macro mechanics and the resistance theories applied to the composite sheet. Finite element analysis was done in a Finite Element Analysis program (Solids Works). The modeling is verified by experimental tests performed with the composite material landing gear. Experimental and theoretical deformations are compared for train requests at landing.

Key concepts: Landing gear, Finite element method, Composite number, Structural engineering, Macro, Engineering, Mechanical engineering, Computer science

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