Technologies
Technologies
BASF POLYURETHANE SYSTEM
Material
The polyurethane is formed by the mixing of isocyanate (ISO) and polyol, is a key solution used in footwear soling.
Functionality
Polyurethane system is the solution that use in footwear soling. The polyurethane system provides an excellent physical property in terms of flexibility, abrasion, hydrolysis resistance, durability, lightness, and high resilience. The material itself not only use to bind between layers but also offer comfort that helps to reduce fatigue for long hours of motions. Yet, the material is a water blown and environmentally friendly production.


Desma Direct Soling Machine
Functionality
Direct Soling Technology
Plasticized Polyurethane Material: The machine utilizes plasticized polyurethane material, which is injected directly into the mould. This process ensures the finest quality of sole adhesion by allowing the material to penetrate both the shoe upper and the sole material, achieving the best possible bonding between layers.
High-Pressure Screw Injection: The high-pressure screw injection system is capable of obtaining the optimal index of polyurethane. This not only effectively reduces the weight of the sole but also maintains uncompromised bonding strength, ensuring durability and reliability.
Enhanced Bonding Strength
Layer Integration: The direct injection method ensures that the polyurethane material fully integrates with both the shoe upper and the sole material. This creates a seamless bond that enhances the overall durability and performance of the footwear.
Weight Reduction: Despite the reduction in weight achieved through the optimized polyurethane index, the bonding strength remains robust, ensuring that the footwear is both lightweight and durable.
OUTSOLE DESIGN
Functionality

Performance
The outsole design is engineered to deliver superior performance in various conditions, particularly focusing on traction, water dispersion, and stability.
The photo accompanying this description visually highlights the key features that contribute to its effectiveness.
1. Traction Enhancement
Directional and Asymmetrical Pattern: The outsole features a combination of directional and asymmetrical patterns, which are strategically designed to maximize grip on different surfaces. This design ensures that the shoe maintains excellent traction, whether on wet, slippery, or uneven terrain.
Deeper Channels: Research studies have shown that deeper channels in the outsole significantly improve water shedding and dispersion. This feature is crucial for maintaining traction in wet conditions, as it prevents water from accumulating under the sole.
2. Water Dispersion
Engineered Water Channels: The outsole includes specialized water channels that efficiently channel water away from the contact surface. This design reduces the risk of hydroplaning and ensures consistent contact with the ground, even in wet environments.
Increased Surface Area: The increments in the overall contact surface area of the outsole enhance stability and traction. This is particularly beneficial when navigating slippery or unstable surfaces.
3. Stability and Grip
Stripe Feature at the Waist: A unique stripe feature has been added at the waist of the outsole. This feature allows the user to securely grasp ladder rungs, providing additional stability and safety when climbing. The photo clearly shows this stripe, emphasizing its role in enhancing grip.
4. Cleats Surface Area
Maximized Cleats Surface Area: The design maximizes the surface area of the cleats, further enhancing traction. This is particularly useful in environments where additional grip is necessary, such as on muddy or loose surfaces.
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