SIMPSON CSS-UCF20 12″ unidirectional carbon fiber fabric per lineal foot USA
Specifications
| Return Shipping Will Be Paid By | Seller |
| All Returns Accepted | Returns Accepted |
| Item Must Be Returned Within | 30 Days |
| Refund Will Be Given As | Money Back |
| Country/Region Of Manufacture | United States |
| Material | Carbon Fiber Fabric |
| MPN | CSS-UCF20 |
| Size | 12" x 12" |
| Thickness | 20 oz per yard weight |
| Brand | SIMPSON STRONG TIE |
Brand new beautiful 12" tall Simpson Strong Tie CSS-UCF20 carbon fiber fabric. This is the 20 ounce weight per yard product. Amazing strength!This is to be sold by the foot so order as much as you need and I'll cut it to the total continual length ordered. If you need more specs - check out Simpsons website.Ships free! Made in the USA. DESCRIPTIONCSS-UCF20 is a unidirectional, high-strength, non-corrosive carbon fabric designed to be field laminated with CSS-ES saturant resin to create a carbon fiber-reinforced polymer (CFRP) composite for structural reinforcement applications.MATERIAL PROPERTIESDry Fiber PropertiesTensile Strength 700,000 psi (4800 MPa) Tensile Modulus 34,000 ksi (230 GPa) Elongation at Break 2.0 % Weight 20.0 oz./yd.2 (680 g/m2) Color BlackCured Composite Properties1 Property Design Value2Tensile Strength 140,000 psi (970 MPa) Tensile Modulus 11,000 ksi (76 GPa) Elongation at Break1.3%Thickness per Layer 0.04 in. (1.0 mm)1. When laminated with CSS-ES or CSS-UES saturating resin, post cured for 48 hours at 140°F (60°C) and tested per ASTM D3039.2. Average tensile strength minus three standard deviations per ACI 440.2R.PERFORMANCE FEATURES • High strength • Lightweight • Ambient cure • Non-corrosive• Molds to fit various shapes • Low aesthetic impact • Compatible with many finish coatingsAPPLICATIONS Seismic Retrofit• Shear strengthening • Displacement/ductility • Life safetyLoad Rating Upgrade• Increased live loads • New equipment • Change of useDamage Repair• Deterioration/corrosion • Blast/vehicle impactDefect Remediation• Size/layout errors • Low concrete strengthsBlast Mitigation• Hardening • Progressive collapse