
Sustainable Performance Concrete
ReadyMaxx and BlockMaxx
Pristine Graphene admixtures serve as high-range water-reducing agents powered by Carbon Rivers Pristine Graphene Nanoplatelet technology. Utilizing our patented Pristine Graphene - an ultra-high purity carbon material arranged in a hexagonal lattice - ReadyMaxx and BlockMaxx enhance concrete performance by delivering unparalleled strength, durability, and workability. These unique characteristics reinforce concrete at the molecular level, significantly improving compressive and flexural strength, reducing permeability for superior water and chemical resistance. Pristine Graphene admixtures optimize water reduction, improves crack resistance, and increases structural integrity while promoting sustainability and cost efficiency by reducing material waste and extending infrastructure lifespan.
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Applications
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Advantages
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Precast Products​
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Additive Manufacturing 3D Printing​
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Shotcrete​
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Seawalls
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Bridge decks
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Pump
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Infrastructure​
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Overlays​
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Commercial and Residential floors​
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Concrete Block
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Decreased permeability
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Anti-corrosion and anti-abrasion
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Reduced micro-cracking and longer life cycle
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Uniform distribution and mixing​
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Excellent finishing and workability​
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Increased flexural strength and durability​
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Excellent shrink and crack reduction and control​
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Favorable dimensional stability​
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Reduces construction times and material costs
Pristine Graphene for Concrete Performance
Carbon Rivers Nano manufactures pristine graphene nanoflakes (1-3 layers, inert, low cost, commercial scale), and the nanoflakes provide excellent mechanical and functional enhancements to concrete projects, whether for sustainable housing or significant construction designs.
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PG Formulation Can Include:
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PG for decreased cement and associated carbon footprint mix designs. PG admixtures perform for residential, commercial, seawall, 3D printing, pump, and other field applications.​
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PG for increased mechanicals (compression, flexural, and shear), functionality (rapid cure, impermeability, cold cure, anti-corrosion, anti-abrasion, and capping/ encapsulating orphan wells).
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Pristine graphene nanoflakes are hydrophobic, mitigating the freeze-thaw cycle ​​​
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Very large surface area uniformly dissipates thermal energy and thus mitigates against micro-cracks, stress, and friction to reduce internal deformation and material failure due to anti-corrosion and impermeability functionality.
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Has electrically conductive properties for specialized concrete builds and features​
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UV-resistant due to graphene absorbing UV radiation.​
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Cure cycle is accelerated with early onset strength ​​​​
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PG fills in pore regions to reduce crack propagation. ​
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Lighter and reduced material for less emissions and to lower material costs.​
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Increased structural and mechanical integrity against inclement weather and natural disasters.​​​​
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Reduction of cement by as much as 30% for more sustainable mix designs ​​