Art./Item | Size |
---|---|
44240 | 40 |
44241 | 41 |
44242 | 42 |
44243 | 43 |
44244 | 44 |
44245 | 45 |
44246 | 46 |
Dune Occupational are the new work and leisure shoes without toe of the line Kapriol Dune - Ultra Rebound Technology, designed to ensure a high daily comfort. Thanks to the innovative NHP and EVA compound midsole, the Dune work shoes have an Ultra Rebound effect that absorbs the impact on the foot during walking.
The Dune Occupational shoes have a seamless jaquard upper and TPU reinforcements that make them extremely comfortable and lightweight. In addition, the pronounced carving and the special drains of the sole, facilitate the escape of mud and materials, keeping it always clean and adherent to the ground.
The cushioned work shoes of the Dune line are footwear designed to be extremely lightweight and flexible, allowing the natural fold of the foot without offering resistance: The challenge won by the Dune shoes is to have balanced an optimal cushioning with a lightweight structure that guarantees comfort and support for the foot.
TECHNICAL SPECIFICATIONS
- Uppers that wraps the foot and ankle
- taping for a contemporary look
- Upper in durable microfiber, without seams
- rubber reinforcement on the toe
- Weight: 490 gr. (tg. 42)
- EN ISO 20347: 2022
Materials
- Upper: Jaquard
- Midsole: NHP Ultra Rebound
- Sole: Eva - PU - rubber
SAFETY CLASS
- 02
- FO
- SR
Technology
NHP-Rubber
Anti Skid System outsole for maximum stability even on the most slippery surfaces.
NHP Ultra Rebound Technology
Midsole made of NHP Ultra Rebound Technology: the evolution for maximum elasticity, cushioning and lightweight.
Performance
Oil-Resistant sole
Soles that repel and do not absorb oily substances, and maintain their characteristics and performances. The test is performed by an immersion in Trimethylpentane. The volume must not increase more than 12%.
Antistatic sole
Work shoes marked S1-S2-S3 have anti-static properties. They permit low voltage current passage, thus discharging the electrostatic loads accumulated by the operator.