Vans Sk8 Mid Trainers - Green - 11

Currently unavailable

Currently unavailable
The Vans Sk8 Mid trainers are designed for adults seeking a versatile, mid-top sneaker that balances classic skate aesthetics with modern everyday comfort. These trainers are ideal for those who prioritize durability and reliable traction in their daily footwear, though the structured mid-top design may feel more rigid than low-profile canvas alternatives initially.
| Age Group | adult |
|---|---|
| Colour | Green |
| Gender | Unisex |
| Material | Suede |
| Shoe Size UK | 11 |
| Shoe Type | Trainers |
| Series | Sk8 Mid |
| Model Part Number | VN0A3WM3609-110 |
| Brand | Vans |
Yes, they generally follow standard adult sizing. If you prefer a looser fit, some users opt for a half-size up.
These are primarily designed for casual wear and skating; they are not intended for high-intensity competitive sports.
Use a soft brush and mild detergent. Gently scrub, rinse with a damp cloth, and air dry.
They feature a standard Vans footbed. For those requiring specific orthotic support, aftermarket insoles can be inserted.
They are best for dry to light-damp conditions. Excessive water may damage the construction materials.
It refers to the height of the collar, which sits higher than a standard low-top but lower than the full high-top model.
The materials are designed to break in; wear them for short periods around the house to allow the structure to mold to your foot shape.
Use a stiff brush or a damp cloth to clear out gravel or dirt caught in the grooves of the waffle pattern to restore grip.
Getting the most out of your Sk8 Mid trainers involves ensuring the correct fit and proper maintenance. Since these are a unisex fit, verify your UK size against your typical sneaker size to ensure the secure fit intended by the design. To maintain the army green canvas and material finish, avoid machine washing; instead, spot clean with a soft brush and mild soapy water. Let them air dry away from direct heat sources to prevent material warping or adhesive degradation.