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2026.09.14
Steel‑Structure Anti‑Corrosion Coatings Additives — Industry Solution
The auxiliary solution for epoxy zinc rich primer, epoxy cloud iron intermediate paint, and acrylic polyurethane topcoat empowers anti-corrosion coating enterprises to achieve high-quality development.
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2026.08.24
Application Case | Block Super Dispersant Suitable for High end Industrial Coatings
The dispersant for high-end industrial coatings must meet the requirements of strong flocculation and anti floating color and flower formation, and be compatible with high performance and process tolerance to ensure the stability of the coating batch.
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2026.08.17
Additive technology | What is controlled by controlled polymerization ?
In the formulation research and development of pastes in industries such as coatings and inks, using the same pigment and grinding process, and changing to a different dispersant, the grinding efficiency, storage stability, and solid content of the paste are significantly improved. The fundamental difference behind this lies in the molecular structure design of dispersants. Traditional dispersants have inherent deficiencies such as uncontrollable molecular structure, wide molecular weight distribution, and imbalanced anchoring and solvation chain segments. Controlled polymerization technology is designed to solve these problems from a molecular structure perspective.
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2026.07.25
Solution | UV Glass Coating Additive Matching
The glass surface is smooth and inert, with a large difference in thermal expansion coefficient compared to organic coatings. The volume shrinkage caused by UV curing instant polymerization will directly accumulate residual stress at the interface, affecting the performance of UV glass coatings. Taige Additive provides UV glass coating additive matching solutions to meet the composite needs of high hardness, yellowing resistance, and high transparency UV glass in consumer electronics, smart homes, and other fields.
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2026.07.11
Solution | Solvent-free epoxy color sand additive kit
Epoxy colored sand flooring, as a seamless and integrated composite decorative flooring, balances functionality and decorativeness. Its core challenge lies in the "balance between wetting and curing under high filler content". By dissecting the component selection logic, this article discusses one of the key preparation points for high-performance solvent-free epoxy colored sand flooring coatings.
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2026.06.27
Solution | Epoxy floor coating additives
After years of development, epoxy floor coatings have achieved a high degree of consistency in formulation materials, with matrix resins such as 128 and curing agent systems such as 113/601. What truly distinguishes products is no longer "what epoxy resin to use", but "whether the system can stably exhibit the designed performance", achieving effectiveness and reliability - such as the color paste not floating when added, the self-leveling coating not showing pinholes or trowel marks when scraped, the primer not delaminating entirely due to moisture from the base layer when it penetrates into the cement-based material, and the material not becoming coarse or settling over long-term storage. TAIGA provides a supporting solution for epoxy floor coatings using self-developed additives for the base, mid, and top coat systems.
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2026.06.08
What to do if quick-drying diluents cause dullness and orange peel effect?
Against the backdrop of efficient global supply chains, the container manufacturing and maintenance industry faces persistent cost and schedule pressures. As a critical phase in container production, the drying speed of the painting process directly determines production line cycle times, facility turnover rates, and overall operational costs.
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2026.05.25
Configuration and Performance Mechanism of Water based Organosilicon Additives
Water based organosilicon additives are key components in modern coatings, inks, various pastes, and personal care products. The diversity of its performance, from excellent wetting leveling to long-lasting scratch resistance, is determined by its fine molecular composition configuration. From a physical and chemical perspective, it is the result of complex interactions between the organic silicon composition configuration, interfacial thermodynamics, and bulk rheological/mechanical properties
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