Wilwood Forged Superlite Internal Brake Calipers 120-11130-BKBrand: Wilwood Disc Brakes Manufacturer's Part Number: 120 11130 BK Part Type: Brake Calipers Product Line: Wilwood Forged Superlite Internal Brake Calipers Automotive Fittings Part Number: WIL 120 11130 BK UPC: 889545087086 Caliper Series: FSLI Caliper Piston Quantity: Four Piston Diameter (in.): 1. 380 Rotor Thickness (in.): 1. 250 in. Caliper Material: Aluminum Caliper Color: Black Caliper Logo: Wilwood Parking Brake Provision: No Fittings
Shopping security
Each payment you make on thelockerguy is secured with strict SSL encryption and PCI DSS data protection protocols
product description
Why choose thelockerguy wholesale?
Brand: Wilwood Disc Brakes Manufacturer's Part Number: 120-11130-BK Part Type: Brake Calipers Product Line: Wilwood Forged Superlite Internal Brake Calipers Automotive Fittings Part Number: WIL-120-11130-BK UPC: 889545087086 Caliper Series: FSLI Caliper Piston Quantity: Four Piston Diameter (in.): 1.380 Rotor Thickness (in.): 1.250 in. Caliper Material: Aluminum Caliper Color: Black Caliper Logo: Wilwood Parking Brake Provision: No Fittings Included: Yes Brake Pads Included: No Brackets Included: No Remanufactured: No Quantity: Sold individually. Description: These Wilwood Forged Superlite Internal (FSLI) brake calipers feature internal fluid ports that eliminate the external fluid crossover tubes, along with any potential problems that could arise from a damaged tube. The transfer tube has been replaced with two additional bleed screw assemblies, which allow this group of symmetrical piston bore models to be mounted either on the right or left in a leading or trailing position. They are also stress-flow forged from premium-grade aluminum alloy billets. Stress-flow forging realigns the metal's internal grain structure to flow within the contour of the caliper body. This process eliminates the stresses and interruptions to the internal grain structure that occur when machining a straight block billet. The FSLI body design is a highly efficient product of computer-generated solid modeling and stress analysis technology.