Skechers GO WALK Flex Trainers - Black - 7.5

Currently unavailable

Currently unavailable
The Skechers GO WALK Flex - Cora trainers are designed for active women seeking a lightweight, versatile shoe that transitions seamlessly from daily walks to casual errands. Featuring responsive cushioning and breathable materials, these trainers prioritize long-term foot comfort and stability; however, their slip-on style with fixed laces means they offer less adjustability for those with non-standard foot widths compared to traditional lace-up sneakers.
| Age Group | adult |
|---|---|
| Colour | Black |
| Gender | Female |
| Shoe Size UK | 7.5 |
| Shoe Type | Trainers |
| Series | GO WALK Flex |
| Model Part Number | 199252346339-BBK |
| Brand | Skechers |
While the materials are durable, we recommend hand washing with mild soap to maintain the cushioning properties of the Goga Mat insole.
These are designed primarily for walking and casual wear, not for high-intensity running or gym workouts.
No, the laces are fixed, providing a slip-on fit that stays secure without needing adjustment.
The mesh upper offers some natural stretch, but those requiring a dedicated wide-fit shoe may find the fixed lace design restrictive.
Remove any excess water, stuff the interior with paper towels to absorb moisture, and let them air dry in a well-ventilated area.
Since the laces are fixed, try wearing thinner socks to create more internal volume.
Remove the insole, clean the interior of the shoe, and ensure it is fully dry before replacing it, or consider using a small amount of fabric-safe adhesive.
Because these shoes utilize fixed stretch laces, setup is immediate—simply slide them on. To ensure the longest lifespan for your Skechers, avoid excessive exposure to extreme heat and harsh cleaning chemicals. While many Skechers models are machine washable, it is recommended to clean these by hand using mild soap and a soft brush to protect the integrity of the mesh and the cushioning foam. Air dry them away from direct sunlight to prevent material degradation.