China Vertical Load Transfer Unitized Window Wall System Customizable Upper Lower Transom Connection for sale
China Vertical Load Transfer Unitized Window Wall System Customizable Upper Lower Transom Connection for sale

Vertical Load Transfer Unitized Window Wall System Customizable Upper Lower Transom Connection

Unitized Curtain Wall Upper-lower Transom Connection Details is a core technical node for vertical structural load transfer and thermal deformation coordination in unitized curtain wall modules, specifically designed to address inter-story displacement, gravity load transfer, and thermal stress expansion in high-rise buildings. The system employs a high-strength aluminum alloy transom as the main body, integrated with a multi-directional plug-in connection mechanism. Through

Frame 6063-T5 grade of aluminum alloy,Invisible Frame Glass Curtain Wall,STANDARD ALUMINUM PROFILE
Shape Customized.,hexagonal,Square,honeycomb
Size Custom Size,Customized,5+12a+5,6+9a+6,3000*8000mm (Max)
Packaging Details Dimax standard
Glass Tempered Glass,Laminated glass,reflective glass,Low-E Glass/Reflective glass,insulating glass
Supply Ability 6000 square meters/month
Product Description

Unitized Curtain Wall Upper-lower Transom Connection Details is a core technical node for vertical structural load transfer and thermal deformation coordination in unitized curtain wall modules, specifically designed to address inter-story displacement, gravity load transfer, and thermal stress expansion in high-rise buildings. The system employs a high-strength aluminum alloy transom as the main body, integrated with a multi-directional plug-in connection mechanism. Through stainless steel bolt sets with slotted holes, it enables dynamic adjustment in the vertical direction, allowing units to compensate for displacement of up to ±12mm along the Z-axis (vertical), while absorbing micro-deformations along the X/Y axes (horizontal) via elastic gasket sets. This effectively balances three-dimensional deformations caused by building structural settlement, wind-induced vibrations, and seasonal temperature variations.

The connection node establishes a three-layer functional sealing system: the outermost layer is a continuous silicone weather-resistant sealant injection layer to resist wind and rain erosion; the middle layer features a closed-cell EPDM compression seal strip, forming an airtight barrier during unit stacking; the innermost layer comprises a "passive drainage cavity" formed by water drainage channels and air pressure balance passages, utilizing Bernoulli's principle to automatically drain seepage water and stabilize cavity air pressure. All connectors undergo a 240-hour salt spray test and fluorocarbon anti-corrosion coating treatment. Their mechanical performance has been validated through finite element analysis, capable of withstanding the highest-level wind pressure (Level 12) and seismic action (9-degree fortification) under repeated loads as specified in the national standard GB/T 21086.

This node system adopts standardized prefabrication processes, supporting factory-preinstalled positioning pins and on-site rapid alignment during hoisting, enabling the vertical connection of over 800 square meters of units per day. It is suitable for super high-rise buildings requiring continuous stacking of curtain wall units, large-span cantilevered facades, and curved gradient curtain wall projects. Through a modular and precise connection logic, it achieves a balance between the mechanical reliability and construction economics of the building envelope, providing a paradigm solution for vertical structural connections in modern curtain wall engineering.

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