FLEX GRID standard

あらゆるものを補強します。
多目的、柔軟、非腐食性のメッシュ
高度な生産技術により、用途や顧客のニーズに応じて、柔軟な補強材に対する特別な市場の需要を満たすことができます。

solidian FLEX GRID 標準は、ファサード用途や耐アルカリ性が重要でないその他の表面に使用するために設計された多用途の補強メッシュです。

この耐久性のある軽量メッシュは、優れた安定性と耐亀裂性を備えており、住宅プロジェクトと商業プロジェクトの両方で、石膏、スタッコ、その他の非アルカリ性表面の補強に最適です。

Product Features

Advantages
  • 多用途: さまざまな表面、特にファサードや一般的な壁の補強に適しています。
  • 軽量で取り付けが簡単: 取り扱い、切断、さまざまな表面への適用が簡単です。
  • 優れた機械的強度: 非アルカリ環境で信頼性の高い安定性とひび割れ耐性を提供します。
  • 費用対効果の高いソリューション: より特殊な耐アルカリ性材料を必要とせずに、基本的な補強を提供します。

reinforcements for the future generations

Cマーク
アルカリ耐性
屋内 屋外
軽量で取り付け簡単
断熱材
ARTICLES
Name Certificate Material Mesh size / opening (mm) Weight (g/m2) TDS/DOP
FLEX GRID EST 65 C mark Standard glass 5x5 65
FLEX GRID EST 70 C mark Standard glass 5x4 70
FLEX GRID EST 90 Standard glass 5x4 90
FLEX GRID EST 110 Standard glass 12x12 110
FLEX GRID EST 110 Standard glass 25x25 110
FLEX GRID EST 110 Standard glass 6x6 110
FLEX GRID EST 120 Standard glass 6x5 120
FLEX GRID EST 125 Standard glass 12x9 130
FLEX GRID EST 125 Standard glass 8x7 130
FLEX GRID EST 135 Standard glass 9x10 135
FLEX GRID EST 140 Standard glass 5x5 140
FLEX GRID EST 140 Standard glass 9x10 140
FLEX GRID EST 145 Standard glass 9x9 145
FLEX GRID EST 225 Standard glass 6x7 225

Reference project

Product Applications

ファサードと表面補強に最適

solidian FLEX GRID 標準は、次の補強に最適です:

  • ファサード: 外装の漆喰やスタッコに強度とひび割れ耐性を追加します。
  • 内壁補強: 追加の安定性が必要な非耐荷重壁や仕切りに適しています。

さまざまな表面: 屋内の漆喰、装飾壁、乾式壁など、高アルカリ性にさらされていない表面をサポートします。

このメッシュは、アルカリ耐性の追加コストなしで信頼性の高い補強が必要な用途に実用的な選択肢です。

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    frequently asked questions

    here are some answers
    • Performance Enhancement
    • Handling and Logistics
    • Compliance and Compatibility
    • Application and Installation
    • Durability and Resistance
    • Sustainability and Environmental Impact
    • Is solidian GRID suitable for replacing corroded steel reinforcement?
    • How does solidian GRID contribute to system durability when used with mortars?
    • Can solidian GRID conform to curved surfaces during installation?
    • How does the weight of solidian GRID affect transportation and installation?
    • Is there an Environmental Product Declaration available for solidian GRID and solidian REBAR?
    • Has solidian GRID received official building approvals?
    • With which types of binders is solidian GRID compatible?
    • Is solidian GRID approved for use in standard concrete applications?
    • What is the minimum thickness required for concrete layers using solidian GRID?
    • Can solidian GRID be used to reinforce existing concrete structures?
    • What is the expected lifespan of solidian GRID in wastewater applications?
    • How does solidian GRID perform in acidic environments?
    • How does solidian GRID contribute to sustainable construction?

    Yes, in cases where steel reinforcement has corroded, solidian GRID can serve as a substitute for structural reinforcement. The existing corroded steel can remain in place and be covered with a new layer of carbon-reinforced mortar, restoring structural integrity.

    When combined with high-quality mortars, solidian GRID significantly enhances the overall durability of the system, providing a robust solution for demanding environments.

    Yes, solidian GRID strikes a balance between stiffness and flexibility, allowing it to be applied to curved surfaces with diameters greater than 800mm.

    The lightweight nature of solidian GRID facilitates easy transportation, even through sewage tunnels, and simplifies the installation process, reducing labor and equipment requirements.

    Yes, a certified Environmental Product Declaration (EPD) is available for both solidian GRID and solidian REBAR. The EPD provides transparent and verified information about the environmental impact of these products throughout their life cycle, supporting sustainability assessments in construction projects.

     

    Yes, solidian GRID has obtained the General Building Approval (abZ) from the German Institute for Building Technology (DIBt). This approval authorizes its use as carbon reinforcement grids in construction, ensuring compliance with national building standards.

    solidian GRID is versatile and works with a range of binders, including Portland Cement, Calcium Aluminate Cements, and Geopolymer Cements.

    solidian GRID holds German Approval as reinforcement for EN 206 concretes, supporting its compatibility with various mortar systems, including those adhering to DIN 19573.

    Concrete layers reinforced with solidian GRID can be as thin as 20mm, as no additional concrete cover is needed to protect the reinforcement from corrosion.

    Yes, solidian GRID can be applied as an additional layer over existing steel-reinforced concrete. When combined with solidian ANTICRACK, it offers enhanced crack-limiting properties, providing extra protection to the underlying steel reinforcement.

    Classified under XWW4, solidian GRID ensures long-term performance for over 50 years, making it a durable choice for long-term infrastructure projects.

    solidian GRID is fully resistant to severe acidic conditions, including environments with pH levels as low as 0. It has successfully passed tests in accordance with DIN 19573 standards for pH 0 and pH 1.

    solidian GRID enables the design of thinner concrete layers (greater than 20mm) without requiring additional concrete cover for reinforcement protection. This reduction in material usage leads to lower resource consumption and a diminished environmental footprint, supporting more sustainable construction practices.

    Additional information:

    • Resource efficiency: By minimizing the need for extra concrete cover, solidian GRID conserves materials such as cement and aggregates, contributing to resource efficiency.
    • Environmental Product Declarations (EPDs): solidian provides transparent data on the environmental impact of their products through EPDs, facilitating informed decision-making for sustainable building projects.
      Solidian Kelteks
    • Reduced CO₂ emissions: The use of solidian GRID in construction can lead to significant reductions in CO₂ emissions due to decreased material usage and enhanced durability, which extends the lifespan of structures and reduces the need for repairs.