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UV curable

Uv-curable polymers Uv devices Uvilon Uvithane 893 Uv light stabilizers... [Pg.1043]

For substrates of WORM and EOD(PCR) disks the industry in the future wants polymers that have a markedly improved resistance to heat softening compared to BPA-PC and, if possible, a lower water absorption and lower birefringence, but otherwise maintain the good characteristics in toughness, production, and cost (194). This goal is being approached in different ways further modification of BPA-PC, newly developed polymers, improvement of the processing characteristics of uv-curable cross-linked polymers, and development of special copolymers and polymer blends, eg,... [Pg.158]

Special, uv-curable epoxy resins (qv) for substrate disks for optical data storage (Sumitomo BakeHte, Toshiba) excel by means of their very low birefringence (<5 nm/mm) and high Young s modulus. Resistance to heat softening and water absorption are similar to BPA-PC, but impact resistance is as low as that of PMMA. [Pg.162]

Table 10 compares the values of different experimental uv-curable cross-linked polymers with those of BPA-PC for the most important properties of substrate materials (220). In spite of this remarkable progress in the development of fast curing cross-linked polymers, BPA-PC and, to a small extent, glass are still the materials of choice for substrates for optical data storage. [Pg.162]

Other Polymers. Besides polycarbonates, poly(methyl methacrylate)s, cycfic polyolefins, and uv-curable cross-linked polymers, a host of other polymers have been examined for their suitabiUty as substrate materials for optical data storage, preferably compact disks, in the last years. These polymers have not gained commercial importance polystyrene (PS), poly(vinyl chloride) (PVC), cellulose acetobutyrate (CAB), bis(diallylpolycarbonate) (BDPC), poly(ethylene terephthalate) (PET), styrene—acrylonitrile copolymers (SAN), poly(vinyl acetate) (PVAC), and for substrates with high resistance to heat softening, polysulfones (PSU) and polyimides (PI). [Pg.162]

Fig. 26. Qualitative compatison of substrate materials for optical disks (187) An = birefringence IS = impact strength BM = bending modulus HDT = heat distortion temperature Met = metallizability WA = water absorption Proc = processibility. The materials are bisphenol A—polycarbonate (BPA-PC), copolymer (20 80) of BPA-PC and trimethylcyclohexane—polycarbonate (TMC-PC), poly(methyl methacrylate) (PMMA), uv-curable cross-linked polymer (uv-DM), cycHc polyolefins (CPO), and, for comparison, glass. Fig. 26. Qualitative compatison of substrate materials for optical disks (187) An = birefringence IS = impact strength BM = bending modulus HDT = heat distortion temperature Met = metallizability WA = water absorption Proc = processibility. The materials are bisphenol A—polycarbonate (BPA-PC), copolymer (20 80) of BPA-PC and trimethylcyclohexane—polycarbonate (TMC-PC), poly(methyl methacrylate) (PMMA), uv-curable cross-linked polymer (uv-DM), cycHc polyolefins (CPO), and, for comparison, glass.
Ultraviolet Photoinitiators. Photoinitiators are used in increasing volume for a multitude of appHcations. The most important of these are in the formulation of uv-curable inks and in the production of coatings on vinyl flooring, wood, and electronics components (28,29). The most common types of photoinitiators are phenone derivatives, for example, acetophenones and hen 7ophen ones (30). [Pg.320]

Diallyl terephthalate [1026-92-2] is utilized less, but lenses made of copolymers with triaHyl cyanurate and methacrylates have been suggested (62). Diallyl tetrabromophthalate and tetrachlorophthalate polymers have been proposed for electronic circuit boards of low flammabiUty (63). They are uv-curable and solder-resistant. Copolymers with unsaturated polyester, vinyl acetate and DAP have been studied (64). [Pg.85]

Wood furniture (ir-, electron beam-, and uv-curable coatings)... [Pg.433]

Graphic screen printing ink appHcations on mirrors (uv-curable inks)... [Pg.433]

Screenable inks have a resin or polymer base and are of three types organic solvent soluble, aqueous alkah soluble, and permanent. Primarily because of pollution requirements and higher solvent costs, the aqueous types have come into greater use. The permanent types are used as solder masks or for marking the boards. Uv-curable inks are also in use. [Pg.125]

Stein, J. and Eckberg, R.P., UV Curable silicone release coatings and controlled release additives. J. Coat. Fabr., 20, 24 (1990). [Pg.707]

Hot melt aerylie polymers for UV cure are generally of lower moleeular weight than their solution counterparts in order to maintain an aceeptable application viscosity. Consequently more crosslinks are needed to produce a complete network and thus peel and tack suffer to some degree. Nonetheless, several UV curable materials have been commercialized for PSA tapes and labels. [Pg.741]

Esters of methacrylic acid (also called methacrylates) are most commonly used for adhesives. This is slightly different from UV curable coatings, where acrylic esters are generally preferred. These differ by a methyl group as in Scheme 1. [Pg.829]

Macromolecular Materials and Engineering 286, No.ll, 30thNov.2001, p.695-704 UV CURABILITY AND MECHANICAL PROPERTIES OF NOVEL BINDER SYSTEMS DERIVED FROM POLY(ETHYLENE TEREPHTHALATE)(PET) WASTE FOR SOLVENTLESS MAGNETIC TAPE MANUFACTURING. I. ACRYLATED OLIGOESTERS Farahat M S Nikles D E Alabama,University... [Pg.31]

UV Curable Coatings. Typically, UV curable coatings consist of very low molecular weight multi-functional oligomers diluted... [Pg.219]

Coatings. The use of photopolymer materials for the preparation of curable coatings is highly diverse. Many of the products used at home and at work have been coated with a photopolymer material for protective and decorative applications. Just a few of the many applications of photopolymer technology include UV curable pigmented (94) and clear (95-96) protective coatings, protective furniture (97) and... [Pg.10]

The objective of the present work was to determine the influence of the light intensity on the polymerization kinetics and on the temperature profile of acrylate and vinyl ether monomers exposed to UV radiation as thin films, as well as the effect of the sample initial temperature on the polymerization rate and final degree of cure. For this purpose, a new method has been developed, based on real-time infrared (RTIR) spectroscopy 14, which permits to monitor in-situ the temperature of thin films undergoing high-speed photopolymerization, without introducing any additive in the UV-curable formulation 15. This technique proved particularly well suited to addressing the issue of thermal runaway which was recently considered to occur in laser-induced polymerization of divinyl ethers 13>16. [Pg.64]

Fig.5 Influence of the light intensity on the rates of polymerization and of temperature increase of a UV-curable PUA (, 0), or phenoxy VE (s) film. Fig.5 Influence of the light intensity on the rates of polymerization and of temperature increase of a UV-curable PUA (, 0), or phenoxy VE (s) film.
Fig.6 Light intensity dependence of the induction period ( ) and the polymerization rate (A) of a UV curable PUA film. Fig.6 Light intensity dependence of the induction period ( ) and the polymerization rate (A) of a UV curable PUA film.

See other pages where UV curable is mentioned: [Pg.83]    [Pg.170]    [Pg.257]    [Pg.157]    [Pg.162]    [Pg.490]    [Pg.88]    [Pg.433]    [Pg.433]    [Pg.433]    [Pg.433]    [Pg.57]    [Pg.58]    [Pg.539]    [Pg.163]    [Pg.268]    [Pg.263]    [Pg.123]    [Pg.484]    [Pg.201]    [Pg.211]    [Pg.606]    [Pg.70]    [Pg.903]    [Pg.8]    [Pg.9]    [Pg.10]   
See also in sourсe #XX -- [ Pg.45 , Pg.265 ]




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Adhesives UV-curable

Application of UV curable powder onto MDF parts

Coatings UV-curable

Curable

Example of a General-Purpose Cationic UV Curable Formulation

Formulating UV curable inkjet inks

Raw Materials for UV Curable Inks

The Chemistry of UV Curable Powders

UV -curable materials

UV Curable Concrete Coatings

UV curable ink

UV curable silicones

UV light-curable PU systems

UV-Curable HNIPU Floorings and Coatings

UV-curable acrylate

UV-curable acrylate resins

UV-curable acrylic resins for PSAs

UV-curable monomer

UV-curable polymers

UV-curable systems

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