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Brief description of the application fields of acrylate silicone oil

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Acrylic ester silicone oil, thanks to its unique synergy between the acrylic groups and the organic silicon structure, demonstrates outstanding performance in various fields. In the coatings industry, it serves as a high-performance additive, cross-linking with UV resin systems to significantly enhance the weather resistance, stain resistance, and low-temperature resistance of the paint film. It is widely used in outdoor architectural coatings, automotive coatings, and high-end industrial coatings. For instance, adding acrylic ester silicone oil to automotive topcoats can increase the paint's resistance to ultraviolet aging by 30%, while maintaining a long-lasting luster; in the electronics and electrical field, its high-temperature resistance and aging resistance make it an ideal component for high-performance electronic sealants and insulating materials, capable of withstanding extreme temperatures ranging from -50°C to 250°C, thereby extending the lifespan of equipment. 
In the cosmetics and personal care industry, acrylic silicone oil (such as IOTA 2240) achieves long-lasting moisturization and a light skin feel by forming a breathable and water-resistant film. It is widely used in creams, sunscreens, and makeup products. Its low surface tension property enhances the spreadability of foundation liquids by 50%, increases the duration of makeup by 40%, and avoids greasiness. In the textile industry, this material introduces fluorinated acrylic ester molecular chains through block or grafting processes, significantly improving the water and oil repellency of fabrics. After 50 washes, it still maintains a hydrophobic angle of over 90%, and the loss of air permeability is less than 5%. 
Furthermore, acrylate silicone oil has also achieved breakthrough applications in the fields of ink, plastics and aerospace. In UV printing ink, an addition amount of 0.1% to 2.0% can achieve anti-abrasion and defoaming effects; in plastic processing, it can be used as an internal demolding agent to reduce the friction coefficient of the mold by 40% and improve the surface smoothness of the product; in aerospace coatings, its resistance to extreme environments can withstand temperature differences ranging from -60℃ to 300℃, meeting the requirements for high-altitude flights.

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