Study on the Manufacturing of Composite Materials Made from Glass Fiber Reinforced Polymer (GFRP) in Indonesia for Use as Lining in Open Channels

Author:

Hasyim Suryadarma1,Salam Nasaruddin1,Pallu Muhammad Saleh1,Maricar Farouk1

Affiliation:

1. Hasanuddin University

Abstract

This study explained the potential use of glass fiber-reinforced polymer (GFRP) composite materials as an alternative lined material for irrigation channels in Indonesia. Currently, only four recommended materials are used as lining in irrigation channels in Indonesia, i.e., stone masonry, concrete, soil-cement, and ferrocement. Almost all lined material's main constituents are sourced from nature/environment. The exploitation of these mined materials will impact environmental destruction. This study focused on the manufacturing process of GFRP material, GFRP surface roughness testing, and the water flow characteristics in the hydraulic model experimental testing. The manufacturing process of GFRP material used polyester resin as the polymer matrix, E-glass type with a combination of woven roving mat covered by non-woven standard mat as the glass fiber reinforcement, and manufacturing process with a combination of hand lay-up and spray-up techniques. The GFRP material product has an average surface roughness coefficient value of Ra around 5.19 to 5.97 μm. The GFRP manufacturing has a good uniform product, as the average surface roughness coefficients of GFRP material have relatively the same values. It is shown that a factory in Indonesia has sufficient capacity to manufacture GFRP material for lining in open channels. The water flow characteristics in the flume were turbulent during testing in the hydraulic laboratory. The experimental study concluded that the GFRP composite materials could be implemented as preliminary references for alternative lined material in irrigation channels in Indonesia.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference15 articles.

1. Directorate of Irrigation and Swamps. Irrigation Planning Standards, Directorate General of Water Resources, Ministry of Public Works - Republic of Indonesia, Jakarta. (2013).

2. Jirana, Irawati, M.H., Rochman, F., and Syamsuri, I. Environmental Damage Due to Class C Mineral Mining in Polewali Mandar (Case Study of Mandar River in Polewali Mandar). Proceedings of the 2016 National Biology Seminar_ISBN: 978-602-0951-11-9. (2016).

3. Hasibuan, P.M. Impact of Class C Mineral Mining on the Surrounding Environment in Deli Serdang Regency. Equality Journal, Vol. 11 No. 1 February 2006.

4. Mattamana, B.A., Varghese, S., and Paul, K. River Sand Inflow Assessment and Optimal Sand Mining Policy Development, International Journal of Emerging Technology and Advanced Engineering (ISSN 2250-2459, ISO 9001:2008 Certified Journal, Volume 3). (2013).

5. Pang, L. H., Fiberglass-reinforced polyester flumes as tertiary channels in Malaysian irrigation development, In: The International Seminar on Irrigation policy and management in Southeast Asia - International Rice Research Institute (IRRI), Manila. (1978).

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