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Radne cipele plitke LEON O2
Radne cipele plitke LEON O2
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Opis: Plitka radne cipele iz kolekcije FLOAT TECH;
Prozračne radne cipele bez metalnih delova, fleksibilne i izuzetno udobne;
Gornjište: Nubuck koža;
Uložna tabanica: anatomska na bazi memorijske pene -MemoMax®;
Podstava: višedimenzionalna mrežica;
Đon: dvoslojni PU/PU - FLOAT TECH®;
Tehničke karakteristike: O2 SRC ESD Metal free;
Standard: EN ISO 20347:2012:
Dostupne veličine: 36-48;
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FLOAT TECH® tehnologija se bazira na đonu izrađenom od EVA ili PU pene niske gustoće, gde se u procesu proizvodnje primenjuje posebna tehnologija obrade ovih izdržljivih i fleksibilnih materijala.
Cilj nam je bio dizajnirati izuzetno laganu, fleksibilnu, udobnu radnu obuću, ali i postići maksimalnu stabilnost i zaštitu tokom nošenja. Rezultat su modeli cipela s izuzetnom visokom fleksibilnošću i udobnošću u najvišim sigurnosnim performansama.
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Description: Low occupational shoes from FLOAT TECH collection;
Breathable Metal free, extra flexible and comfortable safety shoes;
Upper: Nubuck leather;
Insole: foot adabtable anatomic memory foam, provides extreme comfort and anti-fatigue effect;
Lining: 3D mesh;
Sole: dual density PU/PU - FLOAT TECH® technology;
Tehnical features: O2 SRC ESD Metal free;
Standard: EN ISO 20347:2012:
Available sizes: 36-48;
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LOAT TECH® technology is based on a sole made of low-density EVA or PU foam, where a special processing technology of these durable and flexible materials is applied in the production process.
Our goal was to create extremely light, flexible and comfortable work footwear, but also to achieve maximum stability and protection for the user. The result is a range of work footwear that offers exceptional levels of flexibility, comfort and safety performance.
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MemoMax® technology is an advanced shoe insole design. The memory foam insole is designed so that the technology adapts to the performance in the forefoot and heel portion of the insole. The technology in the heel portion of the insole distributes impact forces across the entire plantar arch. In this way, energy is absorbed over the entire surface of the foot, i.e. maximum cushioning is achieved in the heel part when walking. The design of the front part of the insole transfers the energy of the impact force to the metatarsal bones, resulting in a strong impulse at the moment of lifting the toes, which reduces the total amount of energy required for walking.
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