Design and optimize of 3-axis filament winding machine

Ma, Quanjin and M. R. M., Rejab and M. S., Idris and Bachtiar, Dandi and J. P., Siregar and M. N., Harith (2017) Design and optimize of 3-axis filament winding machine. In: IOP Conference Series: Materials Science and Engineering, 4th International Conference on Mechanical Engineering Research (ICMER2017) , 1-2 August 2017 , Kuantan, Pahang, Malaysia. pp. 1-9., 257 (012039). ISSN 1757-899X

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Abstract

Filament winding technique is developed as the primary process for composite cylindrical structures fabrication at low cost. Fibres are wound on a rotating mandrel by a filament winding machine where resin impregnated fibres pass through a pay-out eye. This paper aims to develop and optimize a 3-axis, lightweight, practical, efficient, portable filament winding machine to satisfy the customer demand, which can fabricate pipes and round shape cylinders with resins. There are 3 main units on the 3-axis filament winding machine, which are the rotary unit, the delivery unit and control system unit. Comparison with previous existing filament winding machines in the factory, it has 3 degrees of freedom and can fabricate more complex shape specimens based on the mandrel shape and particular control system. The machine has been designed and fabricated on 3 axes movements with control system. The x-axis is for movement of the carriage, the y-axis is the rotation of mandrel and the z-axis is the movement of the pay-out eye. Cylindrical specimens with different dimensions and winding angles were produced. 3-axis automated filament winding machine has been successfully designed with simple control system.

Item Type: Conference or Workshop Item (Speech)
Uncontrolled Keywords: 3-axis filament winding machine, composite material, automation
Subjects: T Technology > TJ Mechanical engineering and machinery
Faculty/Division: Faculty of Mechanical Engineering
Depositing User: Noorul Farina Arifin
Date Deposited: 19 Sep 2017 06:29
Last Modified: 26 Jun 2018 02:11
URI: http://umpir.ump.edu.my/id/eprint/18577
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