


Weha Carbon Fiber Rodding Bar
The Weha Carbon Fiber Rodding Bar represents the latest advancement in countertop reinforcement technology. Designed for granite, marble, engineered stone, quartz, quartzite, concrete, and all natural stone applications, these high-strength carbon-reinforced fiberglass rods provide superior structural support for sink cutouts, overhangs, and weakened stone sections.
Each bar is manufactured with a high concentration of continuous fiberglass strands throughout the core, reinforced with additional high-tensile carbon fiber layers on both sides. This hybrid construction dramatically increases strength and rigidity while maintaining flexibility and ease of use — delivering reinforcement performance that exceeds traditional white fiberglass rodding.
Pre-cut into convenient 48" lengths, the bars eliminate the hassle of rodding stands and loose rolls in the shop. Simply cut to the desired length using a grinder or bolt cutters and secure with adhesive. At only 3/8" high, the profile is ideal for 3cm material applications.
Why Choose Carbon Fiber Rodding?
- No Rust: Unlike steel reinforcement, carbon fiberglass will never corrode or stain stone.
- Maximum Bonding: High fiberglass concentration allows superior adhesive bonding to both rod and stone.
- Superior Strength: Carbon-reinforced layers increase tensile strength beyond standard fiberglass options.
- Reduced Waste: Available in pre-cut bars or rolls for precise cutting and minimal material waste.
Specifications
- Dimensions: 1/8" x 3/8" x 48"
- 100 pieces per box (400 total linear feet)
- Also available in 328' roll format
- Designed for 3cm stone applications
- Patent pending – exclusive to Weha
Applications
Sink cutout reinforcement, Countertop rodding and overhang support, Stone seam reinforcement, Concrete countertop reinforcement.
Key Benefits
- Stronger than traditional fiberglass rodding
- Corrosion-free reinforcement
- Improved adhesive bonding strength
- Cleaner shop handling with pre-cut bars
- Professional-grade durability and performance
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