Under Armour Tech Twist Short Sleeve - Yellow - L




The Under Armour Tech Twist Short Sleeve is designed for active women who prioritize comfort and performance during gym sessions or outdoor training. Its primary benefit is the specialized UA Tech fabric, which offers an ultra-soft, natural feel while effectively managing moisture through advanced sweat-wicking technology. One caveat to note is that the shirt features a loose fit, so those who prefer a more form-fitting silhouette may want to consider sizing down.
| Gender | Female |
|---|---|
| Age Group | adult |
| Colour | Yellow |
| Size | L |
| Dress Size UK | 14 |
| Model Part Number | 197780918912 |
| Brand | Under Armour |
The shirt is designed with a loose fit. If you prefer a more streamlined or tighter look, you may want to size down from your usual size.
Yes, but it is recommended to use a low-heat setting to prevent fabric breakdown and shrinkage.
Absolutely. The lightweight construction and sweat-wicking capabilities make it an excellent choice for hot weather and outdoor exercise.
The garment is crafted from performance polyester, which is chosen for its durability, moisture management, and quick-drying properties.
The Tech Twist fabric is opaque, providing full coverage for training without being excessively heavy or hot.
Ensure you are not using fabric softener during the laundry cycle, as it clogs the moisture-wicking pores of the fabric.
Wash the garment inside-out and consider using a sports-specific laundry detergent designed to penetrate synthetic fibers.
This garment does not require any special setup and is ready for use immediately. To ensure the longevity of the UA Tech fabric, it is recommended to wash the item in cold water with similar colors. Avoid using fabric softeners, as they can interfere with the sweat-wicking properties of the polyester fibers. For drying, a low-tumble setting is preferred, though air drying is the best way to maintain the shape and fabric integrity over time. Avoid ironing or dry cleaning, as high heat can damage the synthetic performance materials.