Joules Intarsia Jonty Fox Knit Jumper - Green - 9-10

Currently unavailable

Currently unavailable
The Joules Intarsia Jonty Fox Knit Jumper is a charming and durable garment designed for active children who enjoy a blend of comfort and whimsical storytelling. Crafted from high-quality cotton, it provides reliable warmth and a soft touch against the skin, making it an excellent choice for both casual weekend adventures and smart family gatherings. While the intricate knit design offers a premium feel, users should follow standard care instructions carefully to maintain the integrity of the detailed intarsia graphic over time.
| Gender | Male |
|---|---|
| Age Group | kids |
| Colour | Green |
| Child Size UK | 9-10 |
| Material | Cotton |
| Model Part Number | V41-216-70 |
| Brand | Joules |
The jumper is crafted from high-quality, soft-touch cotton.
No, it is not recommended to tumble dry this garment as it may cause the cotton to shrink.
It is an intarsia knit, meaning the pattern is woven directly into the fabric for a premium, durable finish.
Yes, it is designed to fit according to standard UK children's sizing; the ribbed cuffs and hem provide flexibility.
It is best to fold the jumper and store it in a drawer rather than hanging it, which helps maintain the structural integrity of the knit.
Ensure you lay the jumper flat on a drying rack rather than hanging it, which can cause the weight of the water to stretch the cotton fibers.
Use a fabric shaver or lint remover specifically designed for knitwear to gently clear surface fuzz without damaging the intarsia work.
To ensure your Joules Jonty Fox Jumper remains in excellent condition, follow these care guidelines. It is recommended to machine wash on a gentle, cool cycle with like colors. Avoid using harsh detergents or bleach. Due to the delicate nature of the intarsia knit, the garment should be reshaped while damp and dried flat in the shade to prevent stretching or damage to the fox graphic. Do not tumble dry, as the cotton fibers are susceptible to heat-induced shrinkage.