Take control of your vehicle's handling with the UMI 2535 Tubular Front Sway Bar. Engineered to eliminate excess body roll and sharpen cornering response, this premium upgrade delivers the confident, planted feel your car deserves on the street or track. Precision bent from 1-1/4" DOM tubing, the bar provides optimized roll stiffness without sacrificing overall ride quality. Greasable polyurethane bushings reduce deflection under high cornering loads, while the three-way adjustable end link mounts allow you to fine-tune the bar rate to match your specific driving style.
Designed as a direct bolt-on upgrade for 2016–2024 Chevrolet Camaro V8 models, installation is straightforward and requires no cutting or modifications. The kit includes the tubular sway bar, greasable polyurethane bushings, and two-piece collar clamps to prevent side-to-side movement. This system seamlessly reuses your factory end links or pairs perfectly with UMI's adjustable links. Proudly tested and manufactured 100% in the USA.
✓ 1-1/4" DOM tubular construction: Precision CNC-bent to ensure perfect fitment and optimized roll stiffness without adding excessive weight.
✓ 3-way adjustable mounts: Fine-tune your front suspension bias from daily driving comfort to aggressive track and autocross use.
✓ Greasable polyurethane bushings: Deliver long-lasting performance and significantly reduce deflection under heavy cornering compared to factory rubber.
✓ Locking collar clamps: Two-piece CNC-machined clamps prevent the sway bar from shifting side-to-side during high-load maneuvers.
✓ Factory end link compatible: Designed to reuse your OEM end links or pair seamlessly with UMI 2549 adjustable links.
✓ Direct bolt-on fitment: Installs easily in the factory location without the need for cutting, welding, or chassis modifications.
✓ Flatter cornering dynamics: Eliminates excess body roll to keep the tire contact patch planted during aggressive driving.
✓ 100% Made in USA: Manufactured and validated at UMI's facility in Pennsylvania to guarantee premium quality and performance.