Sandwich panel anchors are high-performance load-bearing components engineered specifically for modern concrete sandwich wall construction. These V-shaped anchors are primarily designed to support vertical loads resulting from the dead weight of the facing layer, while simultaneously managing eccentric and horizontal loads caused by wind pressure and thermal deformation, ensuring the structural integrity of the building envelope.
Manufactured from premium-grade stainless steel (AISI 304 & 316), these anchors provide a secure mechanical connection between cladding panels and inner concrete cores. Featuring specialized bent ends for superior anchorage and reinforcement bar fixing, they are essential for architects and engineers seeking a durable, corrosion-resistant solution that enhances stability and extends the lifecycle of industrial and commercial structures.
Detailed Parameters
| Material Grade | Stainless Steel AISI 304 / AISI 316 | Anchor Shape | V-Shaped Design |
|---|---|---|---|
| Wire Diameters | 5 mm, 6.5 mm, 8.5 mm, 10 mm | Primary Function | Load-bearing / Vertical Support |
| End Design | Bent Ends for Concrete Anchorage | Application Area | Exterior/Interior Walls & Ceilings |
| Load Resistance | Dead load, Wind load, Thermal warping | Compatibility | Insulated, Composite, Metal-faced panels |
| Manufacturing Process | High-precision Bending & Forming | Surface Quality | Corrosion-resistant Finish |
Key Advantages
Superior Strength
Made from high-grade stainless steel, these anchors offer exceptional tensile strength and corrosion resistance to withstand heavy loads.
Rapid Installation
The optimized V-shaped design and bent ends streamline the installation process, significantly reducing labor costs and project timelines.
Versatile Sizing
Available in multiple diameters (5mm to 10mm) to precisely match varying panel thicknesses and specific load requirements.
Concrete Anchorage
Specially engineered bent ends ensure deep, secure anchoring within concrete, providing a reliable link between structural layers.
Enhanced Stability
Capable of fixing reinforcement bars, which increases the overall rigidity and structural safety of the sandwich panel system.
Thermal Flexibility
Accommodates minor expansion and contraction caused by temperature shifts, preventing cracks and warping over time.
Product Gallery
Management Platforms
Inventory Control
Efficient tracking of diverse wire diameters to ensure zero project delays.
Precision Bending
Automated forming processes ensuring consistent V-shape geometry for every batch.
Quality Assurance
Rigorous testing for tensile strength and corrosion resistance per AISI standards.
Custom Specifications
Flexible production to meet project-specific diameter and length requirements.
Logistics Network
Streamlined shipping for large-scale commercial and industrial construction sites.
Technical Support
Expert guidance on anchor spacing and installation for maximum load distribution.
Investment Return Comparison
| Performance Metric | Standard Anchors | Premium SS Anchors |
|---|---|---|
| Corrosion Life | Moderate | Ultra-High (Long-term) |
| Installation Speed | Standard | Fast (V-Shape Optimized) |
| Structural Risk | Higher Warping Risk | Low (Thermal Flexible) |
| Maintenance Cost | Periodic Replacement | Minimal to Zero |
| Overall Value | Low Initial Cost | Highest Lifecycle ROI |
Frequently Asked Questions
They are used to carry vertical loads from the dead weight of the facing layer and secure the cladding panels to the inner concrete core in sandwich wall construction.
Stainless steel provides critical corrosion resistance and high tensile strength, preventing rust and structural failure in diverse environmental conditions.
The bent ends provide mechanical interlocking within the concrete, ensuring a secure anchor and allowing for the effective fixing of reinforcement bars.
Yes, they are highly versatile and suitable for both wall and roof systems, resisting wind uplift and managing thermal expansion in both scenarios.
The diameter (5mm, 6.5mm, 8.5mm, or 10mm) should be selected based on the total dead weight of the façade and the calculated wind loads of the building.
Indirectly, yes. By preventing panel warping and joint stress through thermal flexibility, they maintain the airtight seal and insulation properties of the sandwich panels.