Reebok - Lux Fitness Training Burnout T-Shirt - Black - S

Currently unavailable

Currently unavailable
The Reebok Lux Fitness Training Burnout T-Shirt is designed for adult women who prioritize comfort and breathability during studio workouts or high-intensity gym sessions. Featuring a soft burnout knit construction, this shirt offers an athletic, minimal aesthetic that layers perfectly for any training environment; however, users should note that the cotton-blend fabric is primarily optimized for low-to-medium moisture management compared to synthetic performance wear.
| Age Group | adult |
|---|---|
| Colour | Black |
| Gender | Female |
| Material | Cotton |
| Size | S |
| Model Part Number | VR00248120 |
| Brand | Reebok |
The burnout knit process creates a textured, semi-sheer effect; layering with a sports bra or tank top is recommended.
While the breathable knit helps with airflow, it is a cotton-based blend, so it is best suited for moderate activity rather than high-sweat endurance training.
Yes, it is designed for a standard athletic fit, though personal preference for layering may influence your size choice.
Tumble drying on low is generally safe, but air drying is the best way to extend the lifespan of the garment.
It is best for studio sessions, gym workouts, and casual athletic wear.
Avoid contact with sharp jewelry or equipment edges; if a loose thread appears, do not pull it, but trim it carefully with scissors.
Always wash in cold water and use low-heat drying settings to preserve the fit of the cotton-blend fabric.
To maintain the integrity of the burnout knit fabric, machine wash the t-shirt in cold water with similar colors. Avoid using heavy-duty detergents or bleach, which can degrade the cotton fibers over time. For the best longevity, tumble dry on low heat or hang-dry to prevent shrinkage. The shirt is designed with a standard athletic fit and is generally true to size; ensure you check your measurements against the size guide before selecting your fit, as the burnout material has a specific structural weave.