Functional Reinforcement Materials

Functional Reinforcement Materials

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GreenThinking® NSA04 is a functional material composed of nano-silicon aluminum alloy (AlSiO3·H2O), specifically designed to enhance the wet grip, wear resistance, and rolling resistance performance of tires. The mechanism of nano-silicon aluminum alloy mainly lies in its unique physicochemical properties, which can pierce the water film between the tire and the road surface, thereby improving the tire’s grip on wet roads. This material can form a good interfacial bond with the rubber matrix, enhancing the rubber’s wear resistance, reducing heat generation, and improving fatigue resistance. The application of nano-silicon aluminum alloy is extensive, suitable for various types of tires, including passenger car tires, commercial vehicle tires, and high-performance racing tires. In high-performance tires, the use of nano-silicon aluminum alloy can significantly improve the comprehensive performance of tires, providing better grip and wear resistance on wet roads while reducing rolling resistance and improving fuel economy.

WL920 is the product of Shanghai Powerflex New Materials Co., Ltd., which has been engaged in mineral modification research for many years. It is made of selected natural long-needle wollastonite and high-grade ore, which is refined by special silane activation and coating treatment.

GreenThinking® SF Series is a high-purity, high-wear-resistant reinforcing filler made from refined quartz. It remains chemically inert and stable even under extreme temperatures, harsh environments, or catalytic/multi-component chemical systems. Through rigorous surface activation and quality control, the product ensures uniform chemical purity and consistent particle size distribution.

 GreenThinking® SA300 is a high-purity, chemically inert thermally conductive reinforcing filler made from specially crystallized alumina. It maintains stability under extreme temperatures, harsh environments, or catalytic/multi-component chemical systems. Rigorous surface activation and quality control ensure uniform chemical purity and consistent particle size distribution.

Functional Reinforcement Materials

Product Display

GreenThinking® NSA04 is a functional material composed of nano-silicon aluminum alloy (AlSiO3·H2O), specifically designed to enhance the wet grip, wear resistance, and rolling resistance performance of tires. The mechanism of nano-silicon aluminum alloy mainly lies in its unique physicochemical properties, which can pierce the water film between the tire and the road surface, thereby improving the tire’s grip on wet roads. This material can form a good interfacial bond with the rubber matrix, enhancing the rubber’s wear resistance, reducing heat generation, and improving fatigue resistance. The application of nano-silicon aluminum alloy is extensive, suitable for various types of tires, including passenger car tires, commercial vehicle tires, and high-performance racing tires. In high-performance tires, the use of nano-silicon aluminum alloy can significantly improve the comprehensive performance of tires, providing better grip and wear resistance on wet roads while reducing rolling resistance and improving fuel economy.

WL920 is the product of Shanghai Powerflex New Materials Co., Ltd., which has been engaged in mineral modification research for many years. It is made of selected natural long-needle wollastonite and high-grade ore, which is refined by special silane activation and coating treatment.

GreenThinking® SF Series is a high-purity, high-wear-resistant reinforcing filler made from refined quartz. It remains chemically inert and stable even under extreme temperatures, harsh environments, or catalytic/multi-component chemical systems. Through rigorous surface activation and quality control, the product ensures uniform chemical purity and consistent particle size distribution.

 GreenThinking® SA300 is a high-purity, chemically inert thermally conductive reinforcing filler made from specially crystallized alumina. It maintains stability under extreme temperatures, harsh environments, or catalytic/multi-component chemical systems. Rigorous surface activation and quality control ensure uniform chemical purity and consistent particle size distribution.