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  • Architectural Breathing Skins: Metal Sunshade Façades with Dispersed Airflow Outlets
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  • Architectural Breathing Skins: Metal Sunshade Façades with Dispersed Airflow Outlets

    The Architectural Breathing Skin system enables controlled vapor diffusion and thermal relief through a precision-engineered aluminum sunshade façade. With hidden airflow outlets embedded in each panel, it offers a fully passive, energy-free solution for managing humidity and heat behind modern wall claddings—ideal for climate-challenged civic and institutional buildings.


    6. 产品属性(Product Attributes)

    • Material: 3.0 mm anodized aluminum

    • Sunshade Blades: 110 mm wide, angled for high sun deflection

    • Airflow Outlet Design: 2.5 mm continuous slits every 250 mm

    • Slit Placement: Embedded along panel return folds (hidden aesthetic)

    • Coating/Finish: Anodized, Architectural Digest texture class

    • Mounting Standard: ASCE 7 structural compliance

    • Air & Vapor Standards:

      • ISO 12219-2 – Indoor air quality and vapor control

      • ASTM E96 – Water vapor transmission

      • ASA Guidelines – Acoustic dispersion

    • Performance Results:

      • -18% humidity within wall zones

      • -6.1°C internal wall temperature (peak)

      • -11.3% thermal load reduction

      • 0% microbial growth in trials

      • No repainting or mechanical maintenance required


    7. 产品描述(Product Description)

    Designed for high-humidity regions and temperature-variant environments, the Architectural Breathing Skin system integrates passive airflow technology directly into the architectural envelope. Each panel is precision-cut from anodized aluminum and fitted with invisible micro-slit outlets along structural seams, supporting pressure balancing and vapor escape without visual interruption or mechanical systems. Sunshade blades deflect solar load while reducing surface radiation, aiding HVAC stability and internal comfort. This hybrid wall cladding solution is structurally compliant, acoustically optimized, and field-proven—making it a go-to for museums, community halls, co-working campuses, and high-performance civic spaces seeking low-maintenance, high-impact passive performance.


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Description

The Architectural Breathing Skin system enables controlled vapor diffusion and thermal relief through a precision-engineered aluminum sunshade façade. With hidden airflow outlets embedded in each panel, it offers a fully passive, energy-free solution for managing humidity and heat behind modern wall claddings—ideal for climate-challenged civic and institutional buildings.


6. 产品属性(Product Attributes)

  • Material: 3.0 mm anodized aluminum

  • Sunshade Blades: 110 mm wide, angled for high sun deflection

  • Airflow Outlet Design: 2.5 mm continuous slits every 250 mm

  • Slit Placement: Embedded along panel return folds (hidden aesthetic)

  • Coating/Finish: Anodized, Architectural Digest texture class

  • Mounting Standard: ASCE 7 structural compliance

  • Air & Vapor Standards:

    • ISO 12219-2 – Indoor air quality and vapor control

    • ASTM E96 – Water vapor transmission

    • ASA Guidelines – Acoustic dispersion

  • Performance Results:

    • -18% humidity within wall zones

    • -6.1°C internal wall temperature (peak)

    • -11.3% thermal load reduction

    • 0% microbial growth in trials

    • No repainting or mechanical maintenance required


7. 产品描述(Product Description)

Designed for high-humidity regions and temperature-variant environments, the Architectural Breathing Skin system integrates passive airflow technology directly into the architectural envelope. Each panel is precision-cut from anodized aluminum and fitted with invisible micro-slit outlets along structural seams, supporting pressure balancing and vapor escape without visual interruption or mechanical systems. Sunshade blades deflect solar load while reducing surface radiation, aiding HVAC stability and internal comfort. This hybrid wall cladding solution is structurally compliant, acoustically optimized, and field-proven—making it a go-to for museums, community halls, co-working campuses, and high-performance civic spaces seeking low-maintenance, high-impact passive performance.



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