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Application Mind Map
UV resin and monomer recommendations for gel nail polish
Gel nail polish is a professional product used in the nail art industry. It mainly consists of ingredients such as resins, pigments, and photoinitiators, and it hardens into a durable, scratch-resistant coating when cured under ultraviolet or LED light. Compared to traditional nail polish, gel nail polish offers longer wear time, higher gloss, and greater resistance to abrasion; typically, it can last 2–3 weeks without chipping or peeling. Gel nail polish comes in a wide variety of colors, and its shades can be customized to meet the aesthetic preferences of different consumers.
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Recommended UV Resins and Monomers for 3D Printing
3D printing, also known as additive manufacturing, is a rapid prototyping technology that builds three-dimensional objects by layering and accumulating bondable materials—such as powdered metals, plastics, resins, ceramics, waxes, and biomaterials—based on digital model files.
Recommended UV Resins and Monomers for Inks
UV ink refers to a type of energy-curable ink that undergoes a photopolymerization reaction in an extremely short time—on the order of seconds—when exposed to ultraviolet (UV) light, instantly solidifying from a liquid state into a solid state. In one sentence: UV ink is a 100% solvent-free ink that cures instantaneously by means of ultraviolet energy.
Recommended UV Resins and Monomers for Gloss Coatings
UV varnish is a transparent coating formulated on the basis of UV resin, blended with photoinitiators, reactive diluents, and a small amount of additives. Its key features include: after exposure to ultraviolet (UV) light, it undergoes a photo-polymerization crosslinking reaction within seconds, instantly transforming from a liquid state into a solid, transparent film. This gives the coated substrate high gloss, excellent abrasion resistance, superior chemical resistance, and effective surface protection.
Recommended UV Resins and Monomers for Membrane Coatings
Membrane materials refer to a class of flexible, thin-layer materials whose thickness is significantly smaller than their length and width, and which exhibit selective barrier or permeation properties. Typically, they exist in the form of continuous films at the micrometer (μm) level or even nanometer (nm) level. These materials can retain, separate, protect, conduct, or decorate, and are widely used in fields such as packaging, filtration, electronics, optics, energy, and healthcare.
Recommended UV Resins and Monomers for Adhesives
UV adhesive is a single-component, solvent-free, fast-curing structural adhesive that relies on ultraviolet (UV) energy irradiation to complete a photopolymerization reaction within seconds to tens of seconds, instantly solidifying from a liquid state into a tough, solid form.
Recommended UV Resins and Monomers for Wood Coatings
UV wood coatings are high-performance coatings specifically designed for surface finishing of wood and man-made boards, utilizing ultraviolet light energy as the curing agent. They combine three key advantages—environmental friendliness, high efficiency, and superior quality—into one product. With second-level curing, zero solvent emissions, and automated application processes, these coatings have completely revolutionized the wood-coating industry. They represent a core material technology driving the transformation of industries such as furniture, flooring, and wooden doors toward green and intelligent manufacturing.
Recommended UV Resins and Monomers for PVC/SPC Coatings
Simply put, PVC and SPC are two new synthetic flooring materials that are closely related yet exhibit vastly different performance characteristics. Both fall under the categories of “elastic flooring” and “LVT,” but SPC represents an advanced evolutionary branch of PVC flooring. We can use an analogy to help illustrate the difference: PVC sheeting or rolls are like a uniformly textured, soft rubber sheet. In contrast, SPC flooring is more akin to a composite sandwich cookie—with a high-density, rigid core sandwiched in the middle—making it harder and more stable.
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