Author name: Jeremy Oaten

SIS StructuralComp FRP Infrastructure Solutions

Sustainable Infrastructure Systems (SIS) specialises in the development and manufacture of high quality sustainable products. Our specialty in FRP infrastructure solutions makes SIS the first choice for civil infrastructure constructed from the world’s leading sustainable materials. SIS draws on a wide range of experience providing innovative and cost-effective infrastructure solutions, regardless of the size or […]

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Composite Cycleway / Shared Path Bridge – Brisbane City Council

The Brisbane City Council in Queensland Australia required a modern cycleway / shared path bridge manufactured with modern materials. In conjunction with BAC Technology of Toowoomba, Queensland, SIS manufactured a composite bridge including StructuralComp FRP substructure, to produce this stunning result.

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Hybrid FRP & WPC Cantilevered Boat Deck – Adelaide City Council

The Adelaide City Council in South Australia required a replacement boat deck for a decades old timber structure used by Prince Alfred College and Seymour College rowing clubs on the River Torrens in central Adelaide. Given bedrock was as far as 67m under ground level, driven piles were not an option and SIS were required to

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SISCo-FC Composite Fixings for Aquaculture Applications

Aquaculture, the farming of aquatic animals, is the fastest growing animal food-producing sector. SISCo-FC Composite Fixings made in the USA are ultra high performance plastics that are now entering vast and untapped markets and applications in regions around the world including ASIA, the Middle East and Australia. For a component replacement for steel that will

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Henley Square Redevelopment – Adelaide Foreshore – StructuralComp FRP

HENLEY Square’s $8.4 million makeover is nearly complete – The Charles Sturt City Council (SA) expects all works to be completed during November 2015. The upgrade – designed by Taylor, Cullity, Lethlean (TCL) landscape architects (SA) includes SIS StructuralComp FRP products in the crucial sub-frame areas that would usually consist of traditional materials that would

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QLD Government – Moreton Bay Marine Park – StructuralComp FRP Signs

Demonstrating the extremely versatile applications for SIS’ StructuralComp FRP products, we have undertaken testing of our Round Hollow StructuralComp FRP range as sign posts for the Queensland Parks and Wildlife Service, Department of National Parks, Sports & Racing – Moreton Bay Marine Park. The StructuralComp FRP posts have been in use throughout the harsh environment of the

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Cairns Regional Council – Pedestrian Bridge

The Cairns Regional Council, located in far north Queensland, Australia has recently installed one of two new shared path pedestrian bridges as part of a cycleway development. Council have recognised the need for high strength, lightweight and extremely durable materials to withstand the harsh climate of Australia’s far north. SIS were contacted to supply our StructuralComp

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Sutherland Leisure Centre – FRP Ceiling Replacement

SIS has recently completed a ceiling refurbishment in partnership with Bermagui Constructions in NSW. The Sutherland Leisure Centre in NSW, Australia has undertaken a general centre renovation that included the ceiling above the main pool. SIS was called upon by the architect to propose an alternative to steel that would not require painting so as to

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City of Melbourne’s Yarra Footbridge – SIS FRP Remediation

Project works were completed during June on the City of Melbourne’s Yarra footbridge that connects Flinders Street Station to Southbank at the Southgate & Langham Hotel complex in Victoria, Australia. SIS have custom designed and fabricated an FRP substructure and decking system that has allowed for hidden fixings, best achievable Australian standard slip rating and

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FRP Wave Attenuation System

SIS has recently completed a project in conjunction with Engineered Water Systems of Perth, Western Australia. A wave attenuation system was constructed using SIS FRP components due to their high strength and non corrosive nature. This is an extremely effective and durable system designed for the mitigation of wave energy where permanent type breakwaters are

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