VALENTINO BAGS Giada Sliders - Black - 4


Currently unavailable


Currently unavailable
The Valentino Bags Giada Sliders are ideal for adults looking for a blend of luxury aesthetics and everyday comfort during warm-weather months. These slip-on sandals provide excellent arch support and a cushioned footbed for all-day wear, though the open-toe design makes them unsuitable for rugged terrain or cold-weather environments.
| Age Group | adult |
|---|---|
| Colour | Black |
| Gender | Female |
| Shoe Size UK | 4 |
| Shoe Type | Slippers & Sandals |
| Series | Giada |
| Model Part Number | DanielFootwear751649 |
| Brand | VALENTINO BAGS |
Yes, the Giada sliders offer a standard fit that is true to typical UK sizing.
They are perfect for beach clubs, but avoid submerging them in saltwater or leaving them on hot sand for extended periods to prevent material damage.
Yes, they feature a contoured footbed specifically designed with arch support.
While it is a personal style choice, these sliders are designed for barefoot wear to maximize the benefit of the contoured footbed.
Store them in a cool, dry place away from direct sunlight to prevent the material from warping or fading.
The sole height is 2.5 cm.
Ensure your feet are clean and dry before sliding them on, as moisture can reduce friction against the footbed.
Gently wipe the area with a soft, dry microfiber cloth to buff out superficial marks without using harsh chemicals.
These sliders are ready to wear straight out of the box and do not require any break-in period due to their ergonomic construction. They follow a standard UK sizing scale; users should purchase their regular size for the best fit. To ensure the longevity of your Giada sliders, avoid prolonged exposure to direct sunlight and water. Clean the surface with a soft, dry cloth to remove dust. If they become stained, use a lightly dampened cloth with mild soap, then immediately pat dry. Do not machine wash or submerge these sandals in water, as this may compromise the cushioned footbed and the structural integrity of the bonding.