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Development of UV Wood Coatings
Release time:
2026-03-05 23:17
In the modern furniture and flooring manufacturing industries, UV wood coatings have become a core material for surface protection and decoration. With their outstanding advantages—rapid curing, low VOC emissions, and superior film density—they have fundamentally transformed the process logic of wood product finishing. Since the first development of UV-curable wood coatings in the 1960s, this technology has, within just a few decades, undergone multiple generational leaps from industrialization to intelligent automation, emerging as a paradigm of green industrial technology.
I. Technological Origins and the Onset of Industrialization
The emergence of light-curing technology can be traced back to the mid-20th century. At its core, the process uses ultraviolet light as an energy source to initiate the rapid polymerization and crosslinking of chemically active liquid resins, instantly forming a solid coating film on the substrate surface. This groundbreaking advancement has reduced the drying time of conventional coatings—from several hours or even days—to just seconds, thereby significantly boosting production efficiency. More importantly, because nearly all components in the formulation participate in the curing reaction with minimal volatilization, the technology has been inherently environmentally friendly since its inception.
Since then, photopolymerization technology has entered a period of rapid global development, with its applications expanding from initial wood coatings to a wide range of substrates, including paper, plastics, and metals. Product finishes have also evolved from the original high-gloss type to a diverse array of options, such as matte, pearlescent, and textured finishes, to meet varying consumer demands.
II. Technological Iteration: Transition from Traditional UV Curing to Water-Based Formulations
Although conventional UV coatings have made significant advances over solvent-based coatings in terms of efficiency and environmental friendliness, they still face inherent technical limitations. For instance, the reactive diluents added to reduce resin viscosity can be irritating to the skin; traditional free-radical photopolymerization suffers from oxygen inhibition, which may result in incomplete curing; and the rapid curing rate often leads to substantial volumetric shrinkage, thereby compromising the adhesion of the coating film.
To address these drawbacks, waterborne UV-curable systems have been developed. This technological approach integrates the advantages of waterborne coatings with those of UV curing, retaining the high efficiency of UV curing while substantially reducing VOC emissions and unpleasant odors. The core technical challenge lies in achieving stable dispersion of hydrophobic UV-curable resins in water.
From a technological evolution perspective, waterborne UV-curable coatings have undergone multiple generations of iteration. Starting with simple blending that relied on external emulsifiers, the technology has progressed to self-emulsification achieved by incorporating hydrophilic segments into the resin molecules, and most recently to the formation of stable dispersion systems through the introduction of ionic groups. As a result, the storage stability and film-forming quality of waterborne UV coatings have continuously improved, providing the wood furniture industry with a solution that balances environmental sustainability with high efficiency.
III. Performance Innovation: Functional and Intelligent Expansion
While the base formulation continues to be optimized, functional modification has emerged as a key approach for enhancing the performance of UV-curable wood coatings. By incorporating functional additives into the coating system, the coating’s physical properties—such as abrasion resistance and scratch resistance—can be significantly improved. For instance, certain nanoparticles can be uniformly dispersed within the resin matrix, forming a nanoscale network structure that effectively distributes and dissipates external forces. This is particularly valuable for wood products such as flooring and dining tables, which are subject to frequent friction.
In recent years, research on UV-curable wood coatings has increasingly moved toward intelligent functionalities. By incorporating functional microcapsules into the coating formulation, it is possible to develop smart coatings with environmental-responsive properties, such as thermochromic color changes. This signifies that UV-curable wood coatings are evolving from mere protective and decorative materials into intelligent materials endowed with environmental-sensing capabilities, thereby opening up new avenues for the development of high-value-added wood-furniture surfaces.
IV. Conclusion
Looking back at the evolution of UV wood coatings, from the pioneering work in the mid-20th century, through the industrialization boom in China during the 1990s, to today’s diversified innovations in waterborne formulations, functional enhancements, and smart technologies, this field has consistently advanced under the dual drivers of efficiency and environmental sustainability. As a quintessential green industrial technology, UV curing has not only transformed the conventional coating process for wood products but also provided a viable pathway for the transformation and upgrading of the traditional coatings industry.
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Bossin Recommended Products – UV Wood Coatings | ||
Putty primer | ||
Product Model/English Abbreviation | Product Name/Product Type | Product Features |
B-113 | Bisphenol A epoxy acrylate | High hardness, high gloss, high fullness, contains 20% TPGDA |
B-520 | Polyester acrylate | Low viscosity, high gloss, excellent wettability, and cost-effective |
B-522 | Polyester acrylate | Low shrinkage, excellent flexibility, strong adhesion, and high cost-effectiveness. |
Sanding primer | ||
Product Model/English Abbreviation | Product Name/Product Type | Product Features |
B-113 | Bisphenol A epoxy acrylate | High hardness, high gloss, high fullness, contains 20% TPGDA |
B-160D | Modified epoxy acrylate | Good flexibility, yellowing resistance, and excellent adhesion. |
B-163 | Modified epoxy acrylate | Good flexibility, excellent pigment wetting, and strong adhesion. |
B-520 | Polyester acrylate | Low viscosity, high gloss, excellent wettability, and cost-effective |
B-522 | Polyester acrylate | Low shrinkage, excellent flexibility, strong adhesion, and high cost-effectiveness. |
Apply primer | ||
Product Model/English Abbreviation | Product Name/Product Type | Product Features |
B-02 | Phosphate ester acrylate | Enhances adhesion to substrates such as metal, glass, and plastic. |
B-05 | Phosphate ester acrylate | Enhances adhesion to substrates such as metal, glass, and plastic. |
B-113 | Bisphenol A epoxy acrylate | High hardness, high gloss, high fullness, contains 20% TPGDA |
B-165 | Modified epoxy acrylate | Good flexibility and strong adhesion |
B-522 | Polyester acrylate | Low shrinkage, excellent flexibility, strong adhesion, and high cost-effectiveness. |
B-535 | Polyester acrylate | Excellent adhesion, rapid curing, good flexibility, and yellowing resistance. |
B-546 | Polyester acrylate | Good adhesion, fast curing, and excellent flexibility. |
White primer | ||
Product Model/English Abbreviation | Product Name/Product Type | Product Features |
B-113 | Bisphenol A epoxy acrylate | High hardness, high gloss, high fullness, contains 20% TPGDA |
B-160D | Modified epoxy acrylate | Good flexibility, yellowing resistance, and excellent adhesion. |
B-520 | Polyester acrylate | Low viscosity, high gloss, excellent wettability, and cost-effective |
B-522 | Polyester acrylate | Low shrinkage, excellent flexibility, strong adhesion, and high cost-effectiveness. |
B-529 | Polyester acrylate | Good adhesion, low shrinkage, and excellent resin compatibility. |
B-560 | Polyester acrylate | Fast curing and excellent pigment wetting |
Gloss topcoat | ||
Product Model/English Abbreviation | Product Name/Product Type | Product Features |
B-113 | Bisphenol A epoxy acrylate | High hardness, high gloss, high fullness, contains 20% TPGDA |
B-163 | Modified epoxy acrylate | Good flexibility, excellent pigment wetting, and strong adhesion. |
B-165 | Modified epoxy acrylate | Good flexibility and strong adhesion |
B-21C | Active amine photosensitizing promoter | Low color number, antioxidant and polymerization inhibitor, and enhanced curing rate |
B-301 | Aromatic Polyurethane Acrylate | Fast curing, good toughness, and excellent grindability. |
B-302 | Aromatic Polyurethane Acrylate | Fast curing, high strength, good toughness, and excellent grindability. |
B-574C | Polyester acrylate | Low viscosity, low odor, excellent wettability; suitable for LED UV. |
B-601 | Aromatic Polyurethane Acrylate | High hardness, scratch resistance, chemical resistance, and excellent cost performance. |
B-609 | Aliphatic polyurethane acrylate | Fast curing, high hardness, scratch resistance, and chemical resistance. |
B-868 | Organosilicon UV-Curable Resin | Excellent leveling, smooth finish, fast curing, and stain resistance. |
B-868H | Organosilicon UV-Curable Resin | Excellent leveling, smooth finish, fast curing, and stain resistance. |
B-910A2 | Aliphatic polyurethane acrylate | Low viscosity, yellowing resistance, chemical resistance, and steel-wool resistance. |
B-912 | Aliphatic polyurethane acrylate | Fast curing, high hardness, good toughness, and excellent chemical and wear resistance. |
Matte topcoat | ||
Product Model/English Abbreviation | Product Name/Product Type | Product Features |
B-160D | Modified epoxy acrylate | Good flexibility, yellowing resistance, and excellent adhesion. |
B-163 | Modified epoxy acrylate | Good flexibility, excellent pigment wetting, and strong adhesion. |
B-21C | Active amine photosensitizing promoter | Low color number, antioxidant and polymerization inhibitor, and enhanced curing rate |
B-328M | Aliphatic polyurethane acrylate | Low gloss, low viscosity, excellent wettability, and a pleasant hand feel. |
B-328R | Aliphatic polyurethane acrylate | Low gloss, excellent matting, good wetting, and a fine, smooth, and silky hand feel. |
B-333 | Aliphatic polyurethane acrylate | Low viscosity, excellent matting effect, good wettability, and good flexibility. |
B-572 | Polyester acrylate | Low viscosity, low odor, excellent wettability; suitable for LED UV. |
B-650A | Aliphatic polyurethane acrylate | Low viscosity, excellent matting effect, fast curing, and good wettability. |
B-868 | Organosilicon UV-Curable Resin | Excellent leveling, smooth finish, fast curing, and stain resistance. |
B-868H | Organosilicon UV-Curable Resin | Excellent leveling, smooth finish, fast curing, and stain resistance. |
B-910A2 | Aliphatic polyurethane acrylate | Low viscosity, yellowing resistance, chemical resistance, and steel-wool resistance. |
B-912 | Aliphatic polyurethane acrylate | Fast curing, high hardness, good toughness, and excellent chemical and wear resistance. |
Bright White Finish | ||
Product Model/English Abbreviation | Product Name/Product Type | Product Features |
B-113 | Bisphenol A epoxy acrylate | High hardness, high gloss, high fullness, contains 20% TPGDA |
B-160D | Modified epoxy acrylate | Good flexibility, yellowing resistance, and excellent adhesion. |
B-301 | Aromatic Polyurethane Acrylate | Fast curing, good toughness, and excellent grindability. |
B-302 | Aromatic Polyurethane Acrylate | Fast curing, high strength, good toughness, and excellent grindability. |
B-560 | Polyester acrylate | Fast curing and excellent pigment wetting |
B-574C | Polyester acrylate | Low viscosity, low odor, excellent wettability; suitable for LED UV. |
B-601 | Aromatic Polyurethane Acrylate | High hardness, scratch resistance, chemical resistance, and excellent cost performance. |
B-868 | Organosilicon UV-Curable Resin | Excellent leveling, smooth finish, fast curing, and stain resistance. |
B-868H | Organosilicon UV-Curable Resin | Excellent leveling, smooth finish, fast curing, and stain resistance. |
B-912 | Aliphatic polyurethane acrylate | Fast curing, high hardness, good toughness, and excellent chemical and wear resistance. |
Adherent | ||
Product Model/English Abbreviation | Product Name/Product Type | Product Features |
B-05 | Phosphate ester acrylate | Enhances adhesion to substrates such as metal, glass, and plastic. |
B-509B | Polyester acrylate | Good adhesion, good flexibility, and excellent pigment wetting. |
B-531 | Polyester acrylate | Good adhesion, impact resistance, excellent flexibility, and yellowing resistance. |
B-535 | Polyester acrylate | Excellent adhesion, rapid curing, good flexibility, and yellowing resistance. |
B-546 | Polyester acrylate | Good adhesion, fast curing, and excellent flexibility. |
B-590 | Polyester acrylate | Excellent adhesion, rapid curing, and good pigment wetting. |
Filler type | ||
Product Model/English Abbreviation | Product Name/Product Type | Product Features |
B-113 | Bisphenol A epoxy acrylate | High hardness, high gloss, high fullness, contains 20% TPGDA |
B-520 | Polyester acrylate | Low viscosity, high gloss, excellent wettability, and cost-effective |
B-522 | Polyester acrylate | Low shrinkage, excellent flexibility, strong adhesion, and high cost-effectiveness. |
B-529 | Polyester acrylate | Good adhesion, low shrinkage, and excellent resin compatibility. |
Color correction | ||
Product Model/English Abbreviation | Product Name/Product Type | Product Features |
B-560 | Polyester acrylate | Fast curing and excellent pigment wetting |
Harden | ||
Product Model/English Abbreviation | Product Name/Product Type | Product Features |
B-113 | Bisphenol A epoxy acrylate | High hardness, high gloss, high fullness, contains 20% TPGDA |
B-301 | Aromatic Polyurethane Acrylate | Fast curing, good toughness, and excellent grindability. |
B-302 | Aromatic Polyurethane Acrylate | Fast curing, high strength, good toughness, and excellent grindability. |
B-560 | Polyester acrylate | Fast curing and excellent pigment wetting |
B-574C | Polyester acrylate | Low viscosity, low odor, excellent wettability; suitable for LED UV. |
B-601 | Aromatic Polyurethane Acrylate | High hardness, scratch resistance, chemical resistance, and excellent cost performance. |
B-912 | Aliphatic polyurethane acrylate | Fast curing, high hardness, good toughness, and excellent chemical and wear resistance. |
Matte | ||
Product Model/English Abbreviation | Product Name/Product Type | Product Features |
B-328M | Aliphatic polyurethane acrylate | Low gloss, low viscosity, excellent wettability, and a pleasant hand feel. |
B-328R | Aliphatic polyurethane acrylate | Low gloss, excellent matting, good wetting, and a fine, smooth, and silky hand feel. |
B-329D | Aliphatic polyurethane acrylate | Low irritation, low viscosity, excellent wettability, and a pleasant feel. |
B-333 | Aliphatic polyurethane acrylate | Low viscosity, excellent matting effect, good wettability, and good flexibility. |
B-650A | Aliphatic polyurethane acrylate | Low viscosity, excellent matting effect, fast curing, and good wettability. |
Solid-color paint | ||
Product Model/English Abbreviation | Product Name/Product Type | Product Features |
B-519 | Self-curing polyester acrylate | Self-initiated photopolymerization performance |
B-530 | Polyester acrylate | Low viscosity, excellent hydrophobicity, thixotropy, and improved ink misting |
B-560 | Polyester acrylate | Fast curing and excellent pigment wetting |
Yellowing resistance | ||
Product Model/English Abbreviation | Product Name/Product Type | Product Features |
B-160D | Modified epoxy acrylate | Good flexibility, yellowing resistance, and excellent adhesion. |
B-431 | Cycloaliphatic Specialty Acrylates | Yellowing resistance, excellent wettability, low viscosity, and fast curing |
Dip coating | ||
Product Model/English Abbreviation | Product Name/Product Type | Product Features |
B-160D | Modified epoxy acrylate | Good flexibility, yellowing resistance, and excellent adhesion. |
Roll coating | ||
Product Model/English Abbreviation | Product Name/Product Type | Product Features |
B-100 | Bisphenol A epoxy acrylate | High hardness, high gloss, excellent chemical resistance, and high fullness. |
B-113 | Bisphenol A epoxy acrylate | High hardness, high gloss, high fullness, contains 20% TPGDA |
B-160D | Modified epoxy acrylate | Good flexibility, yellowing resistance, and excellent adhesion. |
B-163 | Modified epoxy acrylate | Good flexibility, excellent pigment wetting, and strong adhesion. |
B-165 | Modified epoxy acrylate | Good flexibility and strong adhesion |
B-520 | Polyester acrylate | Low viscosity, high gloss, excellent wettability, and cost-effective |
B-522 | Polyester acrylate | Low shrinkage, excellent flexibility, strong adhesion, and high cost-effectiveness. |
Solvent-free spraying | ||
Product Model/English Abbreviation | Product Name/Product Type | Product Features |
B-251 | Aromatic Polyurethane Acrylate | Fast curing, excellent flexibility, and good wetting of black ink pigments. |
B-520 | Polyester acrylate | Low viscosity, high gloss, excellent wettability, and cost-effective |
B-574C | Polyester acrylate | Low viscosity, low odor, excellent wettability; suitable for LED UV. |
LED-UV | ||
Product Model/English Abbreviation | Product Name/Product Type | Product Features |
B-113 | Bisphenol A epoxy acrylate | High hardness, high gloss, high fullness, contains 20% TPGDA |
B-21C | Active amine photosensitizing promoter | Low color number, antioxidant and polymerization inhibitor, and enhanced curing rate |
B-27 | Active amine photosensitizing promoter | Low color number, benzene-free, low odor, antioxidant and anti-polymerization |
B-570 | Polyester acrylate | Low viscosity, benzene-free, low odor, suitable for LED UV |
B-574 | Polyester acrylate | Benzene-free, low odor, and VOC levels meet cigarette pack standards. |
B-574C | Polyester acrylate | Low viscosity, low odor, excellent wettability; suitable for LED UV. |
Excimer lamp | ||
Product Model/English Abbreviation | Product Name/Product Type | Product Features |
B-241 | Aliphatic polyurethane acrylate | Fast curing, excellent skin feel, and yellowing resistance. |
Skin feel | ||
Product Model/English Abbreviation | Product Name/Product Type | Product Features |
B-113 | Bisphenol A epoxy acrylate | High hardness, high gloss, high fullness, contains 20% TPGDA |
B-165 | Modified epoxy acrylate | Good flexibility and strong adhesion |
B-241 | Aliphatic polyurethane acrylate | Fast curing, excellent skin feel, and yellowing resistance. |
B-328M | Aliphatic polyurethane acrylate | Low gloss, low viscosity, excellent wettability, and a pleasant hand feel. |
B-328R | Aliphatic polyurethane acrylate | Low gloss, excellent matting, good wetting, and a fine, smooth, and silky hand feel. |
B-574C | Polyester acrylate | Low viscosity, low odor, excellent wettability; suitable for LED UV. |
B-868 | Organosilicon UV-Curable Resin | Excellent leveling, smooth finish, fast curing, and stain resistance. |
B-868H | Organosilicon UV-Curable Resin | Excellent leveling, smooth finish, fast curing, and stain resistance. |
Single-item recommendation | ||
Product Model/English Abbreviation | Product Name/Product Type | Product Features |
BM2223 (TPGDA) | Di(propylene glycol) diacrylate | Good flexibility and low volatility |
BM2224 (EO-HDDA) | Ethoxylated 1,6-hexanediol diacrylate | Good adhesion to plastics, good dilutability, and low volatility. |
BM3231 (TMPTA) | Trimethylolpropane triacrylate | High crosslink density, high hardness, high gloss, and excellent wear resistance. |
BM3235 (PET3A) | Pentaerythritol triacrylate | Fast curing, high crosslink density, high hardness, and excellent chemical resistance. |
BM3380 (3EO-TMPTA) | Tripropylene Glycol Triacrylate | More flexible and less irritating than TMPTA. |
BM6261 (DPHA-80) | Dipentaerythritol hexaacrylate | High crosslink density, high hardness, chemical and wear resistance, and water resistance. |
BM6263 (DPHA-90) | Dipentaerythritol hexaacrylate | High crosslink density, high hardness, chemical and wear resistance, and water resistance. |
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