Fr. 554.00

Inkjet Printing in Industry - Materials, Technologies, Systems, and Applications

English · Hardback

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This handbook provides an indispensable overview of all essential aspects of industrial-scale inkjet printing. Inkjet printing, as a scalable deposition technique, has grown in popularity due to its being additive, digital, and contact-free. Given these advantages, the technology can now be used in stable and mature industrial-scale applications. As the mechanisms for inkjet printing have improved, so too have the versatility and applicability of this machinery within industry. The handbook's coverage includes inks, printhead technology, substrates, metrology, software, as well as machine integration and pre- and post-processing approaches. This information is complemented by an overview of printing strategies and application development and covers technological advances in packaging, security printing, printed electronics, robotics, 3D printing, and bioprinting. Important topics like standardisation, regulatory requirements, ecological aspects, and patents.
 
Readers will find:
 
* The most comprehensive work on the topic with over 75 chapters and more than 1,500 pages relating to inkjet printing technology
* The inkjet-printing expertise of corporate development engineers and academic researchers in one manual
* A hands-on approach utilizing case studies, success stories, and practical hints that allow the reader direct, first-hand experience with the power of inkjet printing technology.
 
The ideal resource for material scientists, engineering scientists in industry, electronic engineers, and surface and solid-state chemists,"Inkjet Printing in Industry" is an all-in-one tool for modern professionals and researchers alike.

List of contents

INTRODUCTION
Detailed overview of the book chapters (W. Zapka; WZA-Consulting)
 
FUNDAMENTALS
Wood graining effects in inkjet printing (S. Hoath; Univ. of Cambridge)
Can we determine reliable jetting performance from an inkjet ink? (P. Smith; Univ. of Sheffield)
 
PROS AND CONS OF INKJET PRINTING
Comparing inkjet printing with other printing processes, mainly screen printing (G. Huebner et al; Hochschule der Medien, Stuttgart)
 
INKJET INKS
Inkjet ink formulations: Overview and fundamentals (A. Kamyshny et al; The Hebrew University Jerusalem)
UV-curable alkenyl monomers and oligomers - the backbone chemistry of UV inkjet inks (Jürgen Baro et al; BASF SE)
Photoinitiators for UV inkjet applications (K. Dietliker et al; SCD GmbH)
UV-inkjet inks for applications in industrial inkjet printing, including low-migration inks for food packaging (M. Graindourze; AGFA)
UV curable inkjet inks for label printing - case study: Labelfire 340 (T. Paul; Heidelberger Druckmaschinen)
Electron beam curing of inks and coatings (D. Illsley et al; Sun Chemical)
Dye sublimation inkjet ink (M. Xu; Sawgrass Technologies)
Ceramic inks (A. Martinez et al; Zschimmer&Schwarz)
Inks for security printing (G. Promis; Diversified Nano DNSC)
Inks for conductive mass production with digital printing (F. de la Vega et al; PV Nanocell)
Advanced inkjet processes for optoelectronics (displays) and related applications (C. Boeffel et al; Fraunhofer Inst. IAP)
Deliberate formulation for regulated markets (water-based inkjet inks and primers) (J. A. Ortiz; MEMJET)
Deinking - How to get the ink off the paper (A. Fischer; INGEDE)
 
PRINTHEAD TECHNOLOGY
Hewlett Packard printhead technology (J. Przybyla et al; Hewlett Packard)
Konica Minolta printhead technology (A. Tomotake; KonicaMinolta)
Dimatix printhead technology (B. Paulson; FUJIFILM Dimatix)
Xaar's inkjet printing technology and applications (A. Condie et al; XAAR)
Seiko's RC1536 inkjet printhead (A. Eranpurwala; SEIKO Instruments)
Toshiba Tec printhead technology (K. Taira et al; ToshibaTec)
Memjet printhead technology (T. Roetker; MEMJET)
 
SUBSTRATES
Glass substrates for industrial inkjet applications (T. Wiegel et al; SCHOTT AG)
Coating substrates to match ink performance and meet user requirements (P. le Galudec; PLG Consultant)
Paper and paper-based substrates for industrial inkjet printing (W. A. Schmidt et al; Schoeller Technocell)
 
METROLOGY
Measurement of complex rheology and jettability of inkjet inks (T. Tuladhar; TRIJET)
Measurements of inkjet droplet size, velocity, and angle of trajectory (W. D. Bachalo; ARTIUM technologies)
Drop watcher technology and print quality analysis (Y. Kipman et al; ImageXperts)
Automating measurement techniques for product development (J. E. Holmes et al; DOMINO Printing Sciences)
Print inspection (I. Trachanas; Heidelberger Druckmaschinen)
UV inks / UV radiation sources and UV radiation measurements (J. Baro et al; BASF SE)
Online and offline testing of printheads (H. Wijshoff; Canon Production Printing Netherlands)
 
PRE/POST-PROCESSES
Overview UV curing, good polymerization process (M. Theiler; encom AG)
Priming for inkjet printing on textiles (E. Sowade et al; Zschimmer&Schwarz)
Plasma pre- and post processes (D. Korzec et al; Relyon Plasma)
UV-lamps (Ch. Beechey et al; Integration Technology)
UV LED ink curing: UV LED technology and solutions for integration into industrial inkjet printing (D. Exner; Phoseon Technology)
UV-direct curing: UV-supermatt surfaces with low migration (R. Mehnert; Innovative Surface Technologies IOT)
Electron beam curing - knowhow and possibilities for industrial inkjet processes (M. Fischer et al; Fischer Solutions)
Electron beam (EB) processing for industrial inkjet printing (M. Ishikawa et al

About the author










Since 2019 Werner Zapka operates as independent consultant in the inkjet printing industry, and he organizes the Technical Conference at the annual INPRINT fairs.
In 1980 Werner Zapka earned his Ph.D. in physics at the Max-Planck-Institute in Göttingen, Germany, on design and applications of excimer and dye lasers. He then moved to IBM Research Labs, USA and IBM Germany, engaging himself for 14 years in research and development in semiconductor, MEMS, electronic packaging and laser technology.
From 1995 to 2019 he was manager of the Advanced Application Technology team with a focus on digital fabrication at XaarJet AB (Järfälla, Sweden). He and the Xaar team focused on development of new inkjet applications and processes for the industrial market.
From 2009 to 2015 he also served as adjunct professor at KTH Stockholm to develop inkjet-based smart packaging solutions.
In 2016 Werner Zapka was awarded with IS&T?s Gutenberg Prize for his contributions to industrial inkjet printing and digital fabrication.

Summary

This handbook addresses all aspects that are essential for industrial-scale applications of inkjet printing. The covered topics include inks, printhead technology, substrates, metrology, software as well as machine integration and pre- and postprocessing approaches, complemented by an overview of printing strategies and application development, up to a review of already realized applications in areas such as printed elektronics, robotics, 3D printing and bioprinting.

Product details

Authors Werner Zapka
Assisted by Werner Zapka (Editor)
Publisher Wiley-VCH
 
Languages English
Product format Hardback
Released 01.08.2022
 
EAN 9783527347803
ISBN 978-3-527-34780-3
Dimensions 176 mm x 102 mm x 253 mm
Weight 3868 g
Illustrations 3 SW-Abb., 43 Farbabb.
Subjects Natural sciences, medicine, IT, technology > Chemistry > Physical chemistry

Chemie, chemistry, Materialwissenschaften, Industrial Chemistry, Materials science, Technische u. Industrielle Chemie, Electrical & Electronics Engineering, Elektrotechnik u. Elektronik, Thin Films, Surfaces & Interfaces, Dünne Schichten, Oberflächen u. Grenzflächen, Components & Devices, Komponenten u. Bauelemente, Tintenstrahltechnik

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