adidas YOUNGSTAR Rise K Hockey Shoes - Orange - Pink - 1.5 UK Child


The adidas YOUNGSTAR Rise K hockey shoes are designed for young athletes who need a reliable, comfortable trainer for field hockey and other field sports. With a secure lace-up construction and a rugged outsole, these shoes provide the stability needed for quick movements, though they are specifically optimized for field use rather than casual street wear.
| Age Group | kids |
|---|---|
| Colour | Orange |
| Gender | Male |
| Child Shoe Size UK | 1.5 |
| Accent Colour | Pink |
| Series | YOUNGSTAR |
| Model Part Number | NIM39 |
| Brand | adidas |
While they are comfortable, the lugged outsole is specifically designed for field performance and may wear out prematurely on asphalt or concrete school playgrounds.
Measure the child's foot in the afternoon when they are at their largest, and refer to the UK sizing chart to ensure there is a small amount of space for movement.
The lug rubber outsole is designed for outdoor pitch grip; it may be too aggressive or slippery for polished indoor court surfaces.
Clean the synthetic/textile exterior with a damp cloth and mild soap, then allow them to air dry naturally away from direct heat.
The TPU toe cap adds a layer of hardened material to the front of the shoe, protecting the toes from accidental impact with hockey sticks or balls during a match.
Ensure the lace closure is tightened evenly and use the top eyelets for a more secure 'heel lock' fit.
Use a soft-bristled brush to gently clean out the lug gaps after the mud has dried.
To get the best out of your adidas YOUNGSTAR Rise K shoes, ensure they are laced securely before every game. Because they are designed for field hockey, they are fully compatible with common synthetic pitch surfaces. To maintain the shoes, wipe off mud or grass clippings with a damp cloth after each use. Avoid machine washing or using high-heat sources to dry them, as this can degrade the synthetic materials and the rubber outsole adhesive. Store them in a cool, dry place to maintain their structural integrity.