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Njarga Ahma Aerogel Insoles

Regular price 223,00 lei RON
Sale price 223,00 lei RON Regular price
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Extremely well insulating space-age Aerogel insoles for very cold and harsh conditions. Take along on military missions, long hikes, tough hunting trips, mountaineering expeditions, and everywhere you need the best possible performance. You never get tangled in cords or run out of power. Read full description


  • Out of stock – 90% of orders are shipped during the next business day.
Measurements

The sizes are in twosies, because there is some cut allowance at the front. If the insole is too big, cut off the excess at the front. Where-to-cut lines are clearly marked to help you with this chore. Don’t go cutting anywhere else because you don’t want to risk damaging the Aerogel inserts.

Description

Extremely well insulating space-age Aerogel insoles for very cold and harsh conditions. Take along on military missions, long hikes, tough hunting trips, mountaineering expeditions, and everywhere you need the best possible performance. You never get tangled in cords or run out of power.

Features

Ahma means wolverine in Finnish. This is the manufacturer’s top-of-the-line technical insole developed to meet the needs of active outdoorspeople in tough northern conditions. The form-fitted PU surface layer feels pleasant on your feet and allows the air to circulate very well. Inside the sturdy outer fabric, there is a 2 mm Aerogel insert. Furthermore, there is a reinforced reflecting aluminum layer at the bottom. They weigh. 45 g/piece (1.6 oz).

Aerogel is a highly technical wonder material, which is super lightweight and has excellent thermal conductivity. It is used e.g. in astronaut suits. Aerogel keeps the cold away 3-6 times better than other insole materials. According to the manufacturer, its thermal conductivity is 0.015 W/m2 both on its own and when you stand on it. Other insole materials are 0.030-0.050 W/m2 on their own. When you stand on the other materials, most of the air is squeezed out, resulting in 0.045-0.90 W/m2.