Clarks Mira Madi Slide Sandal - Blue - 7.5 UK


The Clarks Mira Madi Slide Sandal is designed for adult women seeking comfortable and adjustable footwear for casual wear. Its key benefit is the customizable fit provided by triple rip-tape straps, combined with superior cushioning. A potential caveat is that the neoprene lining, while comfortable, may not be suitable for extremely hot weather for some users.
| Age Group | adult |
|---|---|
| Colour | Blue |
| Gender | Female |
| Shoe Size UK | 7.5 |
| Shoe Type | Slippers & Sandals |
| Model Part Number | 261869954 |
| Brand | Clarks |
Yes, the triple rip-tape straps allow for significant adjustability, making them a good option for various foot widths.
The Cushion Soft foam footbed is designed for comfort, making them suitable for extended wear during casual activities and moderate walks.
Refer to a standard UK women's shoe size chart and measure your foot length for accuracy. The Mira Madi sandals are available in UK sizes.
The lining is made of soft neoprene, which adds comfort and stretch.
The sandals are not designed to be waterproof, but the materials can handle light moisture. It is best to avoid submersion in water.
Wipe the footbed gently with a damp cloth. Allow it to air dry.
Ensure the rip-tape surfaces are clean and free from debris. Press firmly to secure the straps.
Readjust the straps for a more personalized fit. Ensure the size is correct for your foot.
While the TR sole provides good traction, caution is advised on extremely wet or smooth surfaces. Ensure the sole is clean.
Setup:
These sandals require no setup. Simply adjust the rip-tape straps to your desired comfort level.
Compatibility:
The Clarks Mira Madi Slide Sandal is designed for casual wear and is compatible with a wide range of casual outfits. It is suitable for adult women.
Care:
To clean, wipe the sandals with a damp cloth. Avoid harsh chemicals or abrasive cleaners, as these can damage the materials. Allow to air dry naturally away from direct heat. Ensure the rip-tape straps are clean for optimal adhesion.