John Wiley & Sons Roll-to-Roll Manufacturing Cover A single-volume resource featuring state-of-the art reviews of key elements of the roll-to-roll manu.. Product #: 978-1-119-16220-9 Regular price: $182.24 $182.24 In Stock

Roll-to-Roll Manufacturing

Process Elements and Recent Advances

Greener, Jehuda / Pearson, Glen / Cakmak, Miko (Editor)

Cover

1. Edition June 2018
432 Pages, Hardcover
Wiley & Sons Ltd

ISBN: 978-1-119-16220-9
John Wiley & Sons

Buy now

Price: 195,00 €

Price incl. VAT, excl. Shipping

Further versions

epubmobipdf

A single-volume resource featuring state-of-the art reviews of key elements of the roll-to-roll manufacturing processing methodology



Roll-to-roll (R2R) manufacturing is an important manufacturing technology platform used extensively for mass-producing a host of film-type products in several traditional industries such as printing, silver-halide photography, and paper. Over the last two decades, some of the methodologies and know-how of R2R manufacturing have been extended and adapted in many new technology areas, including microelectronics, display, photovoltaics, and microfluidics. This comprehensive book presents the state-of-the-art unit operations of the R2R manufacturing technology, providing a practical resource for scientists, engineers, and practitioners not familiar with the fundamentals of R2R technology.



Roll-to-Roll Manufacturing: Process Elements and Recent Advances reviews new developments in areas such as flexible glass, display, and photovoltaics and covers a number of process innovations implemented recently to extend and improve the capabilities of traditional R2R lines. It covers such topics as: coating and solidification processes, in-line vacuum deposition, drying, web handling and winding, polymer film substrates, novel hybrid composite films, flexible solar cells and more. Additionally, this book:



* Examines key elements (unit operations) of the R2R technology, and discusses how these elements are utilized and integrated to achieve desired process efficiencies in a host of applications.

* Illustrates several established and novel application areas where R2R processing is utilized in current or future products.

* Discusses process design methodology and key advantages of R2R manufacturing technology over batch or sheet-to-sheet operations.



Roll-to-Roll Manufacturing: Process Elements and Recent Advances is an ideal book for undergraduate and graduate students in various science and engineering disciplines, as well as for scientists, engineers, and technical and business leaders associated in any way with the development, commercialization, and manufacture of a variety of film products.

1. Introduction

2. Wet coating

3. Drying

4. In-line photolithography

5. Conveyance and roller dynamics

6. Finishing (slitting, cutting, chopping....)

7. Substrates (physical and mechanical properties)

8. Core-set curl (bending recovery) and winding effects

9. Priming and adhesion

10. Process control

11. In-line vacuum coating and CVD

12. Electrostatic effects and anti-static control

13. R2R for biomedical applications

14. Flexible photovoltaic film manufacture by R2R technology

15. Use of R2R methodology in nanotechnology applications

16. Optical films by R2R processing

17. R2R process economics
JEHUDA GREENER, PHD, formerly Research Fellow at Eastman Kodak and Distinguished Scientist and Technology Associate at Dow Chemical, is currently an independent consultant specializing in film technologies and polymeric materials and processes with emphasis on the display and microelectronics industries.

GLEN PEARSON, PHD, formerly Director of the Manufacturing Research and Engineering Organization at Eastman Kodak, is currently Regional Director of FIRST (For Inspiration and Recognition of Science and Technology), a non-profit organization dedicated to inspire students about science, technology, engineering and math.

MIKO CAKMAK, PHD, is the Reilly Chaired Professor of Materials and Mechanical Engineering at Purdue University. He is a recognized expert on processing structure, property relationships in polymers, and R2R metrology. He designed and developed several novel R2R lines for functional film production and associated metrology tools at the University of Akron and Purdue University.