Radiation Curing In Polymer Science And Technology
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Radiation Curing in Polymer Science and Technology
Author | : Jean-Pierre Fouassier,Jan F. RABEK |
Publsiher | : Springer Science & Business Media |
Total Pages | : 478 |
Release | : 1993-07-31 |
Genre | : Technology & Engineering |
ISBN | : 1851669345 |
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Volume three deals specifically with the role of monomers and resins in radiation curing. The nature of the backbone of ologomers leads to the ultimate physical or chemical properties of the UV-cured material. This chapter also covers aspects of the chemistry of these compounds in relation to their end uses.
Radiation Curing in Polymer Science and Technology
Author | : Jean-Pierre Fouassier,Jan F. RABEK |
Publsiher | : Springer Science & Business Media |
Total Pages | : 542 |
Release | : 1993-07-31 |
Genre | : Technology & Engineering |
ISBN | : 1851669388 |
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Volume Four discusses the applications of radiation curing and provides a synopsis of the latest research in coatings; graphic arts; microelectronics; optical fibres; adhesives; 3D machining; membranes and holographic optical elements as well as considering the worldwide trends in the market.
Radiation Curing in Polymer Science and Technology
Author | : Jean-Pierre Fouassier,Jan F. RABEK |
Publsiher | : Springer |
Total Pages | : 517 |
Release | : 1993-07-31 |
Genre | : Technology & Engineering |
ISBN | : 1851669388 |
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Volume Four discusses the applications of radiation curing and provides a synopsis of the latest research in coatings; graphic arts; microelectronics; optical fibres; adhesives; 3D machining; membranes and holographic optical elements as well as considering the worldwide trends in the market.
Photoinitiated Polymerisation
Author | : J.P. Fouassier |
Publsiher | : iSmithers Rapra Publishing |
Total Pages | : 160 |
Release | : 1998 |
Genre | : Technology & Engineering |
ISBN | : 1859571301 |
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This report contains a review of the state of the art in photoinitiated polymerisation. The review is divided into two main parts. The first part is devoted to a basic description of the different photoinitiation processes encountered. In the second part photopolymerisation reactions are presented and discussed. This review is published together with an indexed section containing bibliographic references and abstracts to the cited articles.
Radiation Curing
Author | : S. Peter Pappas |
Publsiher | : Springer Science & Business Media |
Total Pages | : 458 |
Release | : 2013-11-11 |
Genre | : Science |
ISBN | : 9781489907127 |
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Striking a balance between the scientific and technological aspects of radiation curing, this work includes both a summary of current knowledge as well as many chapters which present the first comprehensive accounts of their subjects.
Radiation Technology for Polymers
Author | : Jiri George Drobny |
Publsiher | : CRC Press |
Total Pages | : 220 |
Release | : 2002-11-25 |
Genre | : Technology & Engineering |
ISBN | : 9781420031973 |
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The industrial use of ultraviolet (UV) and electron beam (EB) radiation is growing rapidly and now penetrates an ever-widening range of applications, including electronics, printing, packaging. Resources and references for seasoned professionals abound, but few effectively introduce the field to newcomers or provide fast access to specifics on UV a
Radiation Curing
Author | : R. S. Davidson |
Publsiher | : iSmithers Rapra Publishing |
Total Pages | : 132 |
Release | : 2001 |
Genre | : Air |
ISBN | : 9781859572887 |
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This is a very readable review on the exciting, advancing technology of radiation curing. The principles upon which the technology is based, the equipment that is used and the materials which make up a radiation curable formulation are described. The applications of radiation curing are set to expand. Current applications for radiation curing are all discussed in this review, with principle material types outlined. The review is well referenced to facilitate further reading. It is accompanied by around 400 abstracts from the Rapra Polymer Library database, most of which are cited in the d104.
Radiation Curing in Polymer Science and Technology Volume II
Author | : J. P. Fouassier,J. F. Rabek |
Publsiher | : Springer |
Total Pages | : 0 |
Release | : 1993-07-15 |
Genre | : Science |
ISBN | : 9401118760 |
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The demand for photoinitiators has been steadily increasing since benzoin ethers, latent radical sources activated by UV light, were first industrially employed in particle-board finishing in the 1960s. Among the factors con tributing to the continuing success of photoinitiators are the widespread adoption of dry coatings which eliminate the environmental problems as sociated with solution polymerisation and the development of new printing and resist applications. All of the early commercial photoinitiators were organic compounds, primarily derivatives of benzil or acetophenone. But as research in organo metallic chemistry gained momentum, the potential advantages of organo metallic complexes as photoinitiators became evident. Not only would the use of metal-based compounds allow polymerisation to be initiated by lower energy, and, therefore, more economical visible light but the absorption characteristics and reactivity of these complexes could be fine tuned to fit the specific application requirements by manipulation of the metal ligands. In fact, the recent commercialisation of the first two organo-metallic photoinitiators, a titanocene (see p. 347) and a (cyclopentadienyl)(arene)iron(II) salt (see p. 359), bears testimony to the mounting importance and versatility of metal complexes as latent sources of radicals and/or Lewis acids. The purpose of this chapter is to provide an overview of photopolymerisation with metal species, whether they be metal ions, inorganic or organo-metallic complexes.