Steel Wedge Anchors with Clear Zinc Cr3 Plating
Steel Wedge Anchors with Clear Zinc Cr3 Plating
Reliable Anchoring for Heavy-Duty Applications
Steel wedge anchors with Clear Zinc Cr3 plating are a go-to solution for securing structural and non-structural components to solid concrete. Designed for strength, corrosion resistance, and ease of installation, these anchors are widely used in construction, industrial maintenance, and mechanical systems requiring dependable fastening.
Durable Steel Construction
High-Tensile Strength for Secure Load Support
Made from premium carbon steel, wedge anchors provide exceptional load-bearing capacity in tension and shear. Their mechanical expansion design ensures a tight grip in concrete, minimizing movement under load.
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Suitable for cracked and uncracked concrete
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Consistent performance in static and dynamic conditions
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Available in a wide range of diameters and lengths
Clear Zinc Cr3 Plating for Corrosion Resistance
Improved Protection Without Hazardous Hexavalent Chromium
These wedge anchors feature Clear Zinc Cr3 plating, a modern trivalent chromium coating that offers excellent protection against rust and oxidation.
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Complies with RoHS environmental standards
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Outperforms traditional zinc finishes in salt spray testing
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Provides a clean, bright silver appearance for exposed applications
This makes them ideal for both interior use and mild exterior environments where moderate moisture may be present.
Common Applications and Benefits
Versatile Use in Construction and Industrial Settings
Steel wedge anchors with Clear Zinc Cr3 are perfect for:
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Attaching structural supports, handrails, and machinery
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Securing racking systems, conduit straps, and bracing
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Anchoring ledger boards, HVAC equipment, and more
Their fast, reliable installation using standard tools makes them a preferred choice for professional contractors and maintenance crews alike.
Choose steel wedge anchors with Clear Zinc Cr3 plating for strength, reliability, and compliant corrosion protection in your next concrete anchoring project.