Wowow Lucy Full Reflective Cycling Vest - Pink

Currently unavailable

Currently unavailable
The Wowow Lucy Full Reflective Cycling Vest is an essential safety accessory for adult female cyclists who frequently ride in low-light conditions, ranging from urban city centers to quiet country roads. Its primary benefit is providing 360-degree reflectivity that significantly enhances your presence to drivers and pedestrians; however, users should note that as a sleeveless gilet, it provides limited warmth compared to a full-sleeved jacket.
| Age Group | adult |
|---|---|
| Colour | Pink |
| Gender | Female |
| Model Part Number | 012204 |
| Brand | Wowow |
The vest is designed for visibility and breathability. While it may offer slight protection against light mist, it is not categorized as a fully waterproof garment.
It is strongly recommended to air dry the vest. High heat from a tumble dryer can degrade the reflective properties and damage the fabric.
The vest features a tailored cut. We recommend checking the size guide to ensure it fits comfortably over your intended cycling layers.
The design focuses on a minimalist, lightweight profile to maximize comfort and aerodynamics; it does not feature integrated storage pockets.
Yes, its lightweight, breathable design and high visibility make it a great option for runners who train in low-light conditions.
Wash the garment thoroughly to remove road grime, dust, or oils that may be obscuring the reflective coating.
Ensure no fabric is caught in the track and consider using a dry silicone lubricant if the zipper is difficult to operate.
This vest is designed to be worn over your existing cycling jersey or casual clothing. Because it is sleeveless, it is compatible with a wide range of base layers and jackets depending on the weather. To maintain the effectiveness of the reflective material: always wash the vest inside out on a gentle cycle, avoid using harsh detergents or bleach, and line dry whenever possible. Do not iron directly over the reflective panels as extreme heat may damage the surface.