
The Wilson Men's Rush Tour 5 CTC Tennis Shoes in White/Evergreen paired with a classic gum sole bring a crisp, retro-court aesthetic to modern elite performance. Built with carbon-infused speed mechanics and advanced drag protection, this shoe delivers explosive energy return and heavy-duty stability for competitive match play.
Performance Profile
- Carbon-Driven Propulsion: Features a SpeedCarbon 45 frame integrated into the midsole—utilizing 45-degree carbon fiber weaving technology—paired with forefoot Pebax foam to store and release energy on every push-off and sprint.
- Torsional Rigidity & Lockdown: Employs a Dual Axis Speed Carbon Chassis alongside an internal EndoFit midfoot sock sleeve to prevent internal foot slippage and lock down stability during violent lateral cuts.
- Lightweight Abrasion Protection: Utilizes Ceramic 5D technology—a thin, ceramic-infused TPU film applied over high-wear toe and medial drag zones—to maximize durability without adding heavy rubber weight.
- All-Court Grip & Durability: Features a high-density Duralast rubber outsole (in a classic gum rubber finish) with a modified tread pattern engineered for maximum abrasion resistance and traction on hard, clay, and indoor courts.
Best Suited For
- Aggressive Court Movers & Baseline Grinders: Players who demand rigid torsional support and maximum energy return during explosive directional changes.
- Toe-Draggers & Hard-Court Competitors: Athletes who exert high wear on shoes and need targeted abrasion resistance in high-impact drag areas.
- Locked-In Fit Preference: Ideal for players who prefer a supportive, glove-like midfoot sleeve with direct court feedback.
Specifications
- Colorway: White / Evergreen.
- Upper Material: Gammaweave Mesh with Ceramic 5D Overlays.
- Midsole Tech: Pebax Forefoot Foam + SpeedCarbon 45 Frame & TPU Chassis.
- Outsole: Duralast High-Abrasion Rubber (All Court).
- Weight: ~13.9 oz / 394g (Men's Size 9 US).
- Drop / Offset: DF2 (9mm heel-to-toe drop).
- Fit Profile: True to size, Medium width, Low-to-Medium arch support.
