1. Lightness
Aluminum alloy material: Aluminum alloy is a lightweight metal material with the characteristics of low density and light weight. Using aluminum alloy as the main material of Cork Aluminum Trekking Pole can significantly reduce the overall weight, making the trekking pole lighter and easier to carry.
Structural design: Through reasonable structural design, such as the use of hollow tubes or thin-walled tubes, the weight can be further reduced while ensuring strength. Some hiking poles may have weight-reducing holes inside the pole or adopt other lightweight designs to achieve better portability.
2. Durability
Aluminum alloy strength: Aluminum alloy is not only light in weight, but also has good strength and toughness. It can resist external forces such as bending, stretching and compression, ensuring that the hiking pole is not easily damaged during long-term use.
Cork Handle: Cork is a natural, environmentally friendly and durable material. It has excellent sweat absorption and breathability, which can reduce hand fatigue and discomfort. At the same time, the cork handle can gradually fit the shape of the hand as it is used, providing a personalized and comfortable grip and having a certain degree of wear resistance.
Tungsten alloy rod tip:
Tungsten alloy is a metal alloy with high density and high hardness. It is used as the tip material of hiking poles, which can significantly improve the wear resistance and service life of hiking poles. Tungsten alloy cane tip can easily cope with various complex terrains, such as rocks, sand, snow, etc., providing stable support and grip for hikers.
3. Manufacturing process:
Quality manufacturing is also an important factor in ensuring the durability of your trekking poles. Through precise processing and assembly technology, it can be ensured that the various components of the hiking pole are tightly combined and not easily loosened or damaged. At the same time, the hiking poles can also be surface treated and coated to improve their corrosion resistance and wear resistance.