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    1. Naturvetenskap och teknik
    2. Teknik och industri
    3. Maskinteknik och material

    Polymer Surface Modification to Enhance Adhesion

    Techniques and Applications

    AvK. L. Mittal,Anil N. Netravali

    Inbunden, Engelska, 2024

    2 384 kr

    Beställningsvara. Skickas inom 5-8 vardagar. Fri frakt över 249 kr.

    Beskrivning

    POLYMER SURFACE MODIFICATION TO ENHANCE ADHESION This unique, comprehensive and groundbreaking book is the first on this important subject. Polymer Surface Modification to Enhance Adhesion comprises 13 chapters and is divided into two parts: Part 1: Energetic Treatments; and Part 2: Chemical Treatments. Topics covered include atmospheric pressure plasma treatment of polymers to enhance adhesion; corona treatment of polymer surfaces to enhance adhesion; flame surface treatment of polymers to enhance adhesion; vacuum UV photo-oxidation of polymer surfaces to enhance adhesion; optimization of adhesion of polymers using photochemical surface modification UV/Ozone surface treatment of polymers to enhance adhesion; adhesion enhancement of polymer surfaces by ion beam treatment; polymer surface modification by charged particles; laser surface modification of polymeric materials; competition in adhesion between polysort and monosort functionalized polyolefinic surfaces; amine-terminated dendritic materials for polymer surface modification; arginine-glycine-aspartic acid (RGD) modification of polymer surfaces; and adhesion promoters for polymer surfaces. Audience The book will be of great interest to polymer scientists, surface scientists, adhesionists, materials scientists, plastics engineers, and to those involved in adhesive bonding, packaging, printing, painting, metallization, biological adhesion, biomedical devices, and polymer composites.

    Produktinformation

    • Utgivningsdatum:2024-03-13
    • Mått:158 x 230 x 36 mm
    • Vikt:694 g
    • Format:Inbunden
    • Språk:Engelska
    • Antal sidor:592
    • Förlag:John Wiley & Sons Inc
    • ISBN:9781394231003

    Utforska kategorier

    • Maskinteknik och material inom Naturvetenskap och teknik
    • Tillverkningsteknik inom Naturvetenskap och teknik

    Mer om författaren

    Kashmiri Lal Mittal was employed by the IBM Corporation from 1972 through 1993. Currently, he is teaching and consulting worldwide in the broad areas of adhesion as well as surface cleaning. He has received numerous awards and honors including the title of doctor honoris causa from Maria Curie-Sk³odowska University, Lublin, Poland. He is the editor of more than 160 books dealing with adhesion measurement, adhesion of polymeric coatings, polymer surfaces, adhesive joints, adhesion promoters, thin films, polyimides, surface modification surface cleaning, and surfactants.Anil N. Netravali was the Jean and Douglas McLean Professor of Fiber Science and Apparel Design in the Department of Fiber Science and Apparel Design at Cornell University until his retirement in 2023. Since 1984 he has been working in the field of polymer composites. He has published widely in the area of fiber/resin interface characterization and control through fiber surface modification and resin modification using nanoparticles and nanofibrils. In the past 25 years, he has made significant contributions in the area of 'green' resins, composites and nanocomposites that are fully derived from plants. He was the recipient of the Fiber Society's Founders Award in 2012 and received the Green of the Crop award from the Creative Core (NY) in 2010.

    Innehållsförteckning

    • Preface xviiPart I: Energetic Treatments 11 Atmospheric Pressure Plasma Treatment of Polymers to Enhance Adhesion 3K. Lachmann, M. Omelan, T. Neubert, K. Hain and M. Thomas1.1 Introduction 41.2 Historical Development of APPTs 61.3 Functional Groups Produced by APPTs 81.4 Adhesion Improvement for Bonding 131.5 Targeted Adhesion for Biomedical Applications 181.6 Relevance of Adhesion in Additive Manufacturing 231.7 Summary 341.8 Acknowledgements 362 Corona Treatment of Polymer Surfaces to Enhance Adhesion 45N. Dole, K. Ahmadi, D. Solanki, V. Swaminathan, V. Keswani and M. Keswani2.1 Introduction 462.2 Mechanism of Corona Treatment 502.3 Factors Affecting Performance of Corona Treatment 562.4 Surface Effects of Corona Treatment 622.5 Adhesion Improvement by Corona Treatment 672.6 Summary 693 Flame Surface Treatment of Polymers to Enhance Their Adhesion 77Joseph DiGiacomo and LaWayne Johnson3.1 Introduction 783.2 Chemistry of Flame Treatment 833.3 Flame Treatment Equipment 853.4 Factors Controlling Flame Plasma Surface Treatment 883.5 Measurement of Treatment Level 1093.6 Safety and Other Considerations 1113.7 Adhesion Improvement 1133.8 Summary 1154 Vacuum UV (VUV) Photo-Oxidation of Polymer Surfaces to Enhance Adhesion 119Gerald A. Takacs and Massoud J. Miri4.1 Introduction 1194.2 Vacuum UV Photo-Oxidation Process 1214.3 Adhesion to VUV Surface Photo-Oxidized Polymers 1284.4 Sustainable Polymers 1404.5 Summary 1445 Application-Related Optimization of Adhesion of Polymers Using Photochemical Surface Modification 155Thomas Bahners, Jochen S. Gutmann and Jörg Müssig5.1 Introduction 1565.2 Photochemical Surface Modification 1595.3 Using Photo-Addition and Photo-Grafting to Promote the Adhesion Property of Hydrophobic Substrates 1695.4 Enhancing Adhesion of Hydrophobic Materials on Hydrophilic Substrates -- Biobased Composites as Case Study 1745.5 Biosystems: Cell and Protein Adhesion, Antifouling Surfaces 1795.6 Summary 1906 UV/Ozone Surface Treatment of Polymers to Enhance Their Adhesion 199Johannes A. Poulis and Adriaan Kwakernaak6.1 Introduction 1996.2 Historical Development of UV/Ozone Surface Treatment 2036.3 Parameters Controlling the UV/Ozone Surface Treatment Process 2046.4 Surface Changes of Polymeric Materials by UV/Ozone Treatment 2166.5 Surface Analysis of UV/Ozone Treated Polymeric Surfaces 2226.6 UV/Ozone Treatment of Polymers: Improved Wetting and Adhesion 2296.7 Prospects 2626.8 Summary 2637 Adhesion Enhancement of Polymer Surfaces by Ion Beam Treatment 273Endu Sekhar Srinadhu, Dinesh P. R. Thanu, Srilakshmi Putta, Mingrui Zhao, Bishwambhar Sengupta, Lakshmi Phani Arabandi, Jatinder Kumar, Radhey Shyam, Vinay H. Keswani and Manish Keswani7.1 Introduction 2747.2 Ion Beam Treatment of Polymers 2777.3 Analysis Techniques to Analyze Post Ion Beam Treatment 2807.4 Polymer Surface Modifications for Biomedical Applications 2887.5 Polymer Surface Modification for Microelectronics Applications 3027.6 Summary 3178 Polymer Surface Modification by Charged Particles from Plasma Using Plasma-Based Ion Implantation Technique 329Takeshi Tanaka, Koji Kakugawa and Katia Vutova8.1 Introduction 3308.2 Overview of Literature About Polymer Surface Modification by Charged Particles from Plasma Using Plasma-Based Ion Implantation 3318.3 Principle of PBII: Advantages and Limitations 3348.4 Equipment Needed 3358.5 Factors Influencing the Outcome/Results 3398.6 Results Showing Adhesion Improvement after PBII Treatment 3488.7 Prospects 3498.8 Summary 3499 Laser Surface Engineering of Polymeric Materials for the Modification of Wettability and Adhesion Characteristics 365D.G. Waugh and J. Lawrence9.1 Introduction 3669.2 Methods for Measuring Wettability and Adhesion Characteristics 3679.3 Laser Surface Engineering of Polymeric Materials 3709.4 Summary 38310 Competition in Adhesion between Polysort and Monosort Functionalized Polyolefin Surfaces Coated with Vacuum-Evaporated Aluminium 389Jörg Florian Friedrich10.1 Introduction 39010.2 Differences in Adhesion between Poly- and Monosort Functionalized Polyolefin Surfaces 39210.3 Bonding of Metal Coatings to Polysort and Monosort Functionalized Polyolefins 42610.4 Adhesion Results for Evaporated Aluminium Coating on Poly- and Monosort Functionalized Polyolefin Surfaces 43210.5 Realization of Ideal Covalently Bonded Interface 44310.6 Summary 447Part II: Chemical Treatments 45911 Amine-Terminated Dendritic Materials for Polymer SurfaceModification to Enhance Adhesion 461Zaynab Daneshzand, Kiana Karimi, Somaye Akbari andAtefeh Solouk11.1 Introduction 46211.2 Dendritic Materials 46311.3 Amine-Terminated Dendritic Materials as Adhesion Modifiers 46411.4 Applications of Amine-Terminated Dendritic Materials in Adhesion 46811.5 Summary 47812 Arginine--Glycine--Aspartic Acid (RGD) Modification of Polymer Surfaces to Enhance Cell Adhesion 487Yawen Li12.1 Introduction 48712.2 RGD Peptides 48812.3 RGD Immobilization Techniques 49212.4 Characterization 50512.5 Applications 50612.6 Summary 50913 Adhesion Promotors for Polymer Surfaces 517Thomas P. Schuman13.1 To Coat or Not to Coat Polymer Surfaces 51713.2 Theory of Adhesion: Adhesion Forces 51913.3 Plastics 52013.4 Polymer Adhesion Mechanisms 52313.5 Pretreatments 53413.6 Summary 553References 554Index 559