This new Springer publication, part of its highly respected series of Major Reference Works, will be the definitive reference on adhesion. User-friendly yet comprehensive, it is a valuable aid to scientists and engineers in a host of separate disciplines.
This 2nd edition is a complete revision with an update of the methods that have been investigated recently and that are now fully accepted by the adhesion community. Themes that are now treated in more detail include for example hybrid adhesives used for automotive applications, ecofriendly surface treatments, damage mechanics, joint durability prediction and functionally graded joints. There is also a new chapter related to the application of adhesives in the oil industry. Besides these content changes, there has been a complete revision of all chapters in terms of text, figures, tables and references for a more didactic character of this reference book.
The Handbook of Adhesion Technology is intended to be the definitive reference in the field. Essential information is provided for all those concerned with adhesion, which is a phenomenon of interest in diverse scientific disciplines and of importance in a wide range of technologies. Therefore, this book includes the background science (physics, chemistry and materials science), engineering aspects and industry-specific applications. It is arranged in a user-friendly format with ten main sections: theory of adhesion, surface treatments, adhesive and sealant materials, testing of adhesive properties, joint design, durability, manufacture, quality control, applications and emerging areas. Each section contains about five chapters written by internationally renowned authors who are authorities in their fields.
This book offers a quick, but authoritative, description of topics in the field of adhesion and the practical use of adhesives and sealants. Scientists and engineers of many different backgrounds who need to have an understanding of various aspects of adhesion technology will find it highly valuable. These will include those working in research or design, as well as others involved with marketing services. Graduate students in materials, processes and manufacturing will also want to consult it.
Volume 1 |
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1 Introduction to Adhesive Bonding Technology |
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1 | (8) |
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Part I Theory of Adhesion |
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9 | (120) |
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2 Theories of Fundamental Adhesion |
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11 | (32) |
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3 Forces Involved in Adhesion |
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43 | (28) |
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71 | (30) |
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5 Spreading of Liquids on Substrates |
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101 | (14) |
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6 Thermodynamics of Adhesion |
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115 | (14) |
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Part II Surface Treatments |
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129 | (152) |
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7 General Introduction to Surface Treatments |
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131 | (32) |
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8 Surface Treatments of Selected Materials |
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163 | (34) |
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9 Surface Characterization and Its Role in Adhesion Science and Technology |
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197 | (30) |
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10 Use of Surface Analysis Methods to Probe the Interfacial Chemistry of Adhesion |
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227 | (30) |
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11 Organosilanes: Adhesion Promoters and Primers |
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257 | (24) |
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Part III Adhesive and Sealant Materials |
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281 | (150) |
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12 Classification of Adhesive and Sealant Materials |
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283 | (36) |
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13 Composition of Adhesives |
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319 | (26) |
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345 | (28) |
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15 Pressure-Sensitive Adhesives (PSAs) |
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373 | (36) |
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16 Selection of Adhesives |
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409 | (22) |
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Part IV Testing of Adhesive Properties |
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431 | (182) |
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433 | (26) |
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18 Thermal Properties of Adhesives |
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459 | (30) |
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19 Failure Strength Tests |
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489 | (34) |
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523 | (32) |
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555 | (38) |
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593 | (20) |
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613 | (264) |
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23 Constitutive Adhesive and Sealant Models |
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615 | (50) |
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665 | (36) |
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25 Numerical Approach: Finite Element Analysis |
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701 | (40) |
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26 Special Numerical Techniques to Joint Design |
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741 | (32) |
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27 Design Rules and Methods to Improve Joint Strength |
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773 | (38) |
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811 | (18) |
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29 Design for Impact Loads |
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829 | (24) |
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30 Vibration Damping of Adhesively Bonded Joints |
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853 | (24) |
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Volume 2 |
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877 | (152) |
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31 Effect of Water and Mechanical Stress on Durability |
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879 | (36) |
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32 Adhesives in Space Environment |
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915 | (26) |
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33 Fatigue Load Conditions |
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941 | (34) |
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975 | (34) |
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35 Durability of Nonstructural Adhesives |
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1009 | (20) |
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1029 | (98) |
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1031 | (20) |
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37 Preparation for Bonding |
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1051 | (40) |
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38 Equipment for Adhesive Bonding |
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1091 | (26) |
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39 Environment and Safety |
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1117 | (10) |
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Part VIII Quality Control |
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1127 | (106) |
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40 Quality Control of Raw Materials |
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1129 | (22) |
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41 Processing Quality Control |
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1151 | (20) |
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42 Nondestructive Testing |
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1171 | (24) |
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43 Techniques for Post-fracture Analysis |
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1195 | (38) |
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1233 | (324) |
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44 Adhesively Bonded Joints in Aircraft Structures |
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1235 | (50) |
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1285 | (48) |
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1333 | (34) |
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47 Adhesive Bonding for Railway Application |
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1367 | (24) |
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1391 | (28) |
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1419 | (30) |
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1449 | (34) |
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1483 | (50) |
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Jose Miguel Martin-Martinez |
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1533 | (24) |
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Carlos E. Reuther de Siqueira |
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1557 | (228) |
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53 Molecular Dynamics Simulation and Molecular Orbital Method |
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1559 | (38) |
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1597 | (44) |
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55 Biological Fibrillar Adhesives: Functional Principles and Biomimetic Applications |
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1641 | (36) |
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56 Adhesives with Nanoparticles |
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1677 | (26) |
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1703 | (26) |
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1729 | (22) |
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59 Recycling and Environmental Aspects |
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1751 | (24) |
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60 Adhesion Technology Recap: Current and Emerging Areas |
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1775 | (10) |
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Index |
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1785 | |
About the Editors:
ANDREAS OECHSNER, born 1970, is full Professor at Griffith University, Australia. He graduated 1997 at the Stuttgart University in Aviation and Aerospace Engineering and finished his PhD-studies in 2003 at the Erlangen University.
Awards
- Book-Award from the Chemical Industry Fund in Frankfurt, Germany, 1987 -Award for best High School Graduation, Germany, 1990 - State Parliament's Award, Germany, 1993
LUCAS FILIPE MARTINS DA SILVA is currently Professor at the Faculty of Engineering of the University of Porto. He received a PhD related to adhesive bonding in 2004 from the University of Bristol under the supervision of Prof RD Adams. Since then, he has been teaching and investigating structural adhesive joints. The work covers a wide range of engineering structural adhesives such as epoxies, acrylics and bismaleimides. Several test methods for adhesive joints are available at the FEUP including various jointconfigurations such as bulk specimens, lap shear joints and butt joints. In addition to the experimental expertise, detailed analytical models and finite element analysis of stresses and strains within the joints are also undertaken.
In 2005 he joined the editorial board of the "International Journal of Adhesion and Adhesives"
ROBERT DAVID ADAMS, born 1940 is Emeritus Professor of Applied Mechanics, Department of Mechanical Engineering at University of Bristol. 1967 Professor Adams became Lecturer, Reader 1975, Professor 1986. From 1994 to 1998 he headed the Department. 1998 he became Graduate Dean of the Faculty of Engineering, University of Bristol and kept this position until 2004.
He is active member in the Institution of Mechanical Engineers, Institute of Materials
Institute of Physics, British Standards Institute and the Engineering Science Data Unit.
Professor Adams is Joint Editor-in-Chief of the "International Journal of Adhesion and Adhesives" and member of the Editorial board of: Journal of Adhesion, Nondestructive Testing and Evaluation International, Series A : Japan Society of Mechanical Engineers International Journal. Journal of Materials: Design & Applications, Proc. IMechE Part L.
Degrees and awards:
State Scholarship, 1958 Clothworkers' Scholarship (awarded to the student who stands highest in the Imperial College Entrance Scholarship Examination), 1959
BSc (Eng), First Class Honours, Imperial College, University of London, 1962
PhD, University of Cambridge, St John's College, 1967
DSc (Eng), University of London, 1986
Visiting Foreign Francqui Chair and Medal at the Free University of Brussels (VUB), 1991
Honorary Professorship of the Huazhong (Wuhan) University of Science & Technology (PRC), 1995.