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Silicone Wax

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Superior Lubrication: Reduced Friction, Increased Efficiency
The core advantage of silicone wax lies in its unique molecular structure – the silicon-oxygen bond (Si-O) imparts low surface tension, while the wax base enhances adhesion, forming a dual "lubricating-protecting" effect. In high-speed sewing scenarios, traditional auxiliaries are prone to thread breakage due to frictional heat, while silicone wax can reduce the coefficient of friction to below 0.05, reducing the breakage rate of sewing thread by 40% at high speeds of 7000 rpm. Furthermore, its lubricating effect extends to yarn winding and weaving, reducing equipment wear and extending service life.

Strong Thermal Stability: High Temperature Resistance, Anti-Scorching
In textile processing, high-temperature environments easily cause auxiliaries to carbonize and scorch, clogging needle holes or yarn guides. Silicone wax, through the cleaning effect of its silicon components, remains stable at temperatures up to 200℃, preventing wax oxidation and deterioration. For example, in denim embroidery, the heat generated by dense stitches can easily cause traditional waxes to scorch, while silicone wax can maintain a needle hole unobstructed rate of up to 98%, reducing downtime for cleaning and significantly improving production continuity.

Antistatic and Cohesive Properties: Powerful Tools for Fine Fabric Processing High-count wool, silk, and other fine fabrics are sensitive to static electricity, easily leading to yarn dispersion and increased fly waste. Silicone wax, by introducing antistatic groups, reduces the surface resistivity of yarns to below 10⁸Ω, while simultaneously enhancing the cohesiveness of multi-strand yarns, preventing yarn dispersion during processing. This characteristic makes it a key auxiliary agent for high-end fabric finishing, reducing fly waste by more than 30%.

Environmentally Friendly: A Preferred Solution for Green Transformation With the upgrading of environmental standards in the textile industry, silicone wax, through water-based modification technology, achieves low VOC (volatile organic compound) emissions, meeting international certification requirements such as OEKO-TEX Standard 100. Some companies have already developed bio-based silicone wax, using renewable resources to replace petroleum-based raw materials, further reducing the carbon footprint and contributing to the industry's sustainable development.

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