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Tensar Sub ballast Stabilisation

Tensar Sub ballast Stabilisation
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Tensar Sub ballast Stabilisation

Product catalog summary
Introduction to Tensar Technology
Tensar Technology employs geogrids for ground stabilization and soil reinforcement, offering cost and time savings in civil engineering projects by enhancing infrastructure performance and lifespan.
Subgrade Stabilization Applications
Tensar geogrids are used in six key applications: reducing layer thickness, increasing lifespan, enhancing bearing capacity, controlling differential settlement, capping weak deposits, and spanning voids. These applications extend road service life, reduce maintenance costs, and improve load-bearing capacity.
Mechanism of Tensar TriAx Geogrids
TriAx geogrids interlock with granular materials, providing confinement and lateral restraint, enhancing aggregate layer stability, load distribution, and reducing vertical stress due to their high radial stiffness.
Comparison with Alternative Geogrids
Tensar geogrids focus on mechanical interlock and lateral confinement, unlike alternative geogrids that act as tensioned membranes. This results in superior performance with less rutting and deformation.
Research and Development
Since the 1980s, Tensar has conducted extensive research and testing, demonstrating the performance benefits of their geogrids through full-scale demonstrations and laboratory tests.
Practical Applications and Benefits
Tensar geogrids are applied in airport pavements, dock pavements, safe working platforms, and railway trackbeds, offering reduced construction costs, increased safety, and enhanced structural integrity.
Geogrid Stabilization Benefits
Geogrid stabilization improves the bearing layer modulus, providing better ballast support and extending sleeper and rail support, especially in heavy-duty pavements requiring multi-layer stabilization.
Professional Solutions and Support
Tensar provides design and construction assistance, offering advice, training, and innovative products, ensuring best-value solutions for various conditions and soil types.
TensarPave Design Software
TensarPave software incorporates TriAx® design parameters for economical ground stabilization and pavement design, available free with user training.
Installation Support
Tensar offers construction guidelines, certification documentation, and specification notes, supported by case studies and technical papers.
Design and Construction Support
Services include project-specific design and construction advice, general training, and early project engagement to save time and money.
Training and Design Support
Tensar provides technical workshops, personal training, and seminars, offering design advice, costing, and construction drawings.
Product and Application Literature
Tensar offers literature on their products and applications, including guides on geosynthetics, subgrade stabilization, and more.
Contact Information
Tensar International Limited is based in the UK, with contact details for inquiries and literature requests.
Disclaimer
The document includes a disclaimer about the illustrative nature of the information and the user's responsibility to determine product suitability.
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Catalog excerpts

Tensar Sub ballast Stabilisation-1

SUBCRADE STABILISATION MECHANICALLY STABILISED LAYERS FOR ROADS

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Tensar Sub ballast Stabilisation-2

Tensar ® TriAx® Geogrids have proven to be extremely efficient at confining and stabilising aggregate. TriAx has replaced Tensar biaxial geogrids in most stabilisation applications, delivering even greater cost savings. The Six Major Subgrade Stabilisation Applications for Tensar Technology Reducing Layer Thickness Increasing life Tensar Technology — Proven Practical Solutions and the Know-How to Build Them Based on the characteristic properties of Tensar geogrids, Tensar Technology is widely adopted for ground stabilisation and soil reinforcement problems, delivering real savings in cost and...

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Tensar Sub ballast Stabilisation-3

Increasing bearing capacity By applying Tensar Technology, the load spreading capability of a Tensar® TriAx® mechanically stabilised layer can increase the bearing capacity of working platforms for heavy-duty plant, cranes and piling rigs. Controlling differential settlement Multiple layers of Tensar TriAx geogrids in an aggregate layer create a flexurally stiff platform. Through the use of Tensar Technology the effects of a variable quality of support from a foundation soil can be smoothed out. capping weak deposits Where the ground is exceptionally weak, Tensar TriAx Technology is available...

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Tensar Sub ballast Stabilisation-4

Tensar ® TriAx® Geogrids Work by Confining Aggregate Particles Tensar® TriAx® geogrids can solve stabilisation problems because they interlock very efficiently with granular materials. When granular particles are compacted over these geogrids, they partially penetrate and project through the apertures and abut against the ribs. Interlock is the mechanism by which the geogrid and aggregate interact under an applied load. This mechanism results in confinement and lateral restraint of the granular particles. The Interlock Mechanism Unconfined zone Transition zone (Partial confinement) Fully confined...

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Tensar Sub ballast Stabilisation-5

Do All Geogrids Work in the Same Way? This is a common question when considering the benefits of using geogrids — particularly in a road pavement. The answer is, ‘No, geogrids perform differently and a good indicator of the reinforcing effect is the method of manufacture.’ The quality of the mechanical interlock is not the same when comparing the Tensar® manufacturing process with other methods of forming geogrids such as extruding, weaving and welding. Tensar designs are based on the proven mechanism of interlock and the lateral confinement of the aggregate. Most geogrids produced by other methods...

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Tensar Sub ballast Stabilisation-6

Tensar Mechanically Stabilised Layers Granular layers stabilised with Tensar® TriAx® geogrids perform as a composite due to the interlock mechanism. The geogrid/aggregate composite can then be regarded as a Tensar® Mechanically Stabilised Layer (MSL). Designers and specifiers can choose to specify a Tensar Mechanically Stabilised Layer and be confident in the knowledge that the properties and performance of the composite are known and definable. The 'equivalent non-stabilised layer' can be thought of in different ways and therefore it can be introduced into existing design methods according to...

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Tensar Sub ballast Stabilisation-7

1992 — Laboratory testing is repeatedly confirmed by on-site trials 1996 — The lateral confinement function of Tensar geogrids leads to significant reductions in rut depth 2000 — Full-scale laboratory tests at the UK Transport Research Laboratory comparing Tensar geogrid with alternative forms of geogrid These pictures display the types of research in which Tensar® International has been involved over the years. The data in these tests have provided the factors to employ in empirical design methods. Now the trend in pavement design is moving towards more analytical design methods where the pavement...

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Tensar Sub ballast Stabilisation-8

Each of the Six Major Applications Brings Major Benefits and These Can Often be Converted to a Cost Advantage Reducing layer thickness By reducing the capping layer thickness by up to 50% with no performance loss compared with a standard non-stabilised design, the contractor can save significant money on the costs of the ground improvement work as well as achieving savings of up to 50% in construction CO2 emissions. Increasing life Road rehabilitation, especially if it involves full depth reconstruction, is an expensive item for any road owner. A value engineering exercise can show that the inclusion...

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Tensar Sub ballast Stabilisation-9

Practical Examples of the Major Applications • Reducing layer thickness • Increasing life • Controlling differential settlement TriAx installation, Stoke • Capping weak deposits • Increasing bearing capacity Stabilising weak soil in Ashbourne, Derbyshire • Reducing layer thickness • Increasing life Improving and strengthening the A66 in Melsonby • Reducing layer thickness • Increasing bearing capacity • Controlling differential settlement Stabilising ground to facilitate off-road parking at Lanarkshire

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Tensar Sub ballast Stabilisation-10

Specialist Pavement Designs If heavy axles loading or highly concentrated wheel loads define the traffic loading, rather than repetitions of more moderate highway traffic, then specialist design methods for geogrids have been developed by Tensar® International. The granular layer may then require multi-layer geogrid stabilisation. Commonly used design methods for heavy-duty pavements have been adopted and modified to include the geogrid stabilisation benefits. typical heavy-duty pavement Heavy-duty pavements may require multi-layer geogrid stabilisation. Airport pavements As the weight of newer...

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Tensar Sub ballast Stabilisation-11

Tensar ® TriAx® large aperture geogrid - TXL Tensar TriAx standard aperture geogrid - TX Tensar TriAx geocomposite - TXG Tensar ® International Support Services Use Our Experience and Reliability for Unsurpassed Product Support PROFESSIONAL SOLUTIONS We offer the services of a team of professionals who can assist in developing concepts to support your design or undertake full construction design. We also provide advice and training on-site to assist you to effectively install our products and systems in your project. Our range of innovative products is combined with our global experience of thousands...

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All Tensar International catalogs and technical brochures

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  2. Road-Technology

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  3. Tensar Railways

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  4. Tensar_TriAx_TX

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Archived catalogs

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    11  Pages

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