FIBREGLASS REINFORCED POLYMER (FRP) … REINFORCED POLYMER (FRP) SHEET PILING. ... increase the...

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ArmourWall Sheet Piling PRODUCT BROCHURE ArmourWall FIBREGLASS REINFORCED POLYMER (FRP) SHEET PILING

Transcript of FIBREGLASS REINFORCED POLYMER (FRP) … REINFORCED POLYMER (FRP) SHEET PILING. ... increase the...

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PRODUCT BROCHURE

ArmourWall

FIBREGLASS REINFORCED POLYMER (FRP) SHEET PILING

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ArmourWall Sheet Piling Overview

ArmourWall piles are an extremely durable, high performance product, making them an ideal choice for many marine applications such as, storm surge / flood protection, levee / dike walls, coastal erosion, water-side developments, channel linings. They are extremely durable above the waterline and extremely strong below the waterline. If extra rigidity and strength are required, piles can be filled with steel reinforced concrete.

ArmourWall is designed to connect with geogid or geotextile reinforcements offering considerable benefits to slope stabilisation. Land once considered unusable because of steep grades is now being improved with the use of soil reinforcement retaining wall systems. ArmourWall is already having a dramatic effect on how retaining walls are designed and installed. Retaining wall once reserved for steel sheet piles are now being designed with composite sheet piling.

ArmourWall piling system

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ArmourWall Construction ArmourWall Sheet Piling is manufactured with electrical grade berglass and high strength resins. The combination of the advanced resin and high strength glass produces a superior, highly corrosion resistant sheet pile that has been engineered to stand the test of time.

Fiberglass Reinforcements All composite sheet piles are manufactured with electrical grade E-glass reinforcements in the form of unidirectional roving, Continuous Filament Mat (CFM) and stitched fabric mats. The combinationof fiber reinforcements has been engineered for optimal bending strength, as well as superior stiffness.

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Systems Testing ArmourWall has undergone extensive testing at Deltares institute for water and subsurface research in Delft, Netherlands. Testing ranged from wave heights, wave pressures and forces, flow velocities, wave overtopping, damage patterns and changes in cross-sections.

Advanced UV ProtectionUV rays and heat from solar radiation degrade the molecular structure of most materials. The extent of degradation ranges from mere fading to reduction in strength. Additives in the form of ultraviolet light absorbers and inhibitors greatly increase the performance in long term sunlight exposure. Polyester synthetic veils are applied to the ArmourWall in order to encapsulate the E-glass fibers and provide a resin rich surface.

Results have shown that UV degradation doesnot affect the modulus of elasticity. Fading of the polymerised resin will occur at various rates over time. Typically, within three years the gloss is eliminated and a visual whitening or yellowing can be observed on the surface. In general, the amount of sunlight and intensity will depend on the geographical location. Therefore, the rate at which composite materials will lighten is variable. The ArmourWall system utilises the most advanced resin technology and pigmentation to ensure the best possible aesthetics over time. ArmourWall composite sheet piles are shipped standard with two layers of Ultra Violet (UV) protection. First, ArmourWall adds UV light absorbers to each sheet pile. The UV light absorbers are mixed into the thermoset resin, prior to production, and function as long term thermal and light stability promoters. Second, the composite sheet piles are encompassed with a 10 mil polyester surfacing veil. The 10 mil veil creates a resin rich surface and protects the glass reinforcements from fiber blooming.

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Resin/Matrix

Creative Pultrusions I manufactures the ArmourWall sheet piles and in both vinyl ester (VE) and isophthalic polyester (I) resin formulations. Proper resin selection should be based on the environmental aspects of the site conditions including the soil and water pH and chemical exposure.

VE Resins are based on bisphenol-A epoxy resin.VE resins provide resistance to a wide range ofacids, alkalis, bleaches and solvents for use in many chemical environments. They also offer excellent toughness and fatigue resistance. The mechanical properties are typically 10% to 15% higher than polyester properties. A long service life can be expected for waterfront environments in salt and fresh water.

I pultrusions are manufactured for corrosion related applications. I resins display excellent structural properties and are resistant to acids, salts, andmany dilute chemicals at moderate temperatures. They perform well in acidic environments; however,I pultrusions are not recommended for caustic or alkaline environments. The pH should be kept below 10.5. Oxidising environments usually present limitations. A long service life can be expected for waterfront environments in salt and fresh water.

What is Pultrusion? Pultrusion is a continuous manufacturing process utilised to make composite profiles with constant cross-sections whereby berglass reinforcements, in the form of roving and mats, are saturated with resin and channelled into a heated die. The problem exits the die in a solid state and in the form of the desired cross-section.

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ArmourWall applications

ArmourWall is an alternative construction material without many of the performance disadvantages of conventional materials such as aluminium, concrete, steel and wood. ArmourWall will not corrode, decay, or spall thereby reducing maintenance costs and future replacements. The FRP composite system resists impact, creep, UV and weathering effects better than vinyl (PVC) materials and is easier to install in harder soils than vinyl sheet piling.

Storm Surge

Flood Protection

Levee

Dike Walls

Water-side

Developments

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Slope Stabilisation

The new ArmourWall sheet piling system combines sheet piling and geogrid

reinforcements, offering considerable benefits to slope stabilization, marine and levee repair

projects.

Channel Linings

Erosion Control

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Benefits of ArmourWall The Armour Wall range of Fiberglass Reinforced Polymer (FRP) sheet piling, is the future building material of choice because they offer a number of advantages over traditional construction materials (wood, aluminium, steel) due to superior capabilities. Armour Wall, manufactured in an ISO-certified production facility, presents a huge opportunity to make your project cost less, last longer, and leave a lower environmental impact. Manufactured using the latest pultrusion technologies, allowing us to incorporate more high-strength glass fibers than other technologies.Composite offers the following benefits:

• Corrosion resistant (they will not rust, rot or corrode)• High strength• UV-Weather resistance• Insect resistant• Environmentally safe solution• No toxic preservatives• Long-term performance• Rapid installation• Weighs 75% less than steel

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Available Options

RETAINING WALL SYSTEM COMBINING SHEET PILING AND GEOGRID REINFORCEMENTS. Mechanically stabilized earth (MSE or reinforced soil) walls.Offering considerable benefits for flood / levee protection walls, slope stabilisation and marine projects.

SHEET PILE WITH REINFORCED CONCRETE. Combining the structural capacity of steel reinforced concrete with the extended service life of composite. The system combines the strengths of the two materials to build better walls. Key benefits, include proven strength and efficient installation.

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PIN PILE CANTILEVER RETAINING WALL Pin piles are used as a method of soil stabilisation and foundation footings. Pin piles are ideal for building foundations on sites were physical and geotechnical restraints prevent the piles from being installed to a required depth . The pin is installed inside the ArmourWall O section pile. The pin provides the necessary embedment strength for stable cantilever design. ArmourWalls can be used for flood protection, beach erosion defences or for retaining any development adjacent to water.

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Physical & Mechanical Properties

Standard H. Profile

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Physical & Mechanical Properties

Standard O. Profile

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