Destruction mechanisms, molecular bonding control, development of flexible tough polymers.
Pursuing the forefront of next-generation polymer material development that combines unprecedented strength, thinness, and flexibility. An overview of the latest research addressing the weaknesses of polymer materials, which tend to tear when made thinner and break when made thicker and harder. Packed with technologies to simultaneously achieve thinning and strengthening that surpass the traditional limits, meeting significant social needs.
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"Cutting-Edge Technology for Toughening Polymers ~Mechanisms of Fracture, Control of Molecular Bonds, Development of Flexible Tough Polymers~" Published: May 2020 Price: 45,000 yen (excluding tax) Format: B5 size, 318 pages Supervised by: Kozo Ito, Jun Takahara, Akira Harada Published by: NTS Corporation ISBN: 978-4-86043-668-1 ■Table of Contents Introduction Part 1: Molecular Mechanisms of Polymer Fracture Chapter 1: Elucidation of Fracture Mechanisms Chapter 2: Physical Property Analysis Chapter 3: Structural Analysis Part 2: Development of New Methods for Controlling Molecular Bonds Chapter 1: Design of Self-Healing Materials Chapter 2: Toughening and Material Creation Part 3: Application Development for Next-Generation Polymers Chapter 1: Toughening Film Technology for Polymer Materials in Batteries Chapter 2: Development of Toughening Technology for Polymer Materials Chapter 3: On-Site Polymerization CFRP Molding and Processing Technology Chapter 4: Development of Flexible Tough Polymers
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List price: 45,000 yen + tax
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Applications/Examples of results
Viscoelastic material sheet Non-rubber-based materials Tough polymer Colloidal crystal elastomer Polyurethane elastomer Glass-like polymer Transparent resin materials Nano-touch atomic force microscope Amphoteric polymer electrolyte gel Applications to polycarbonate Filler-filled elastomer Structural analysis of fuel cell electrolyte membranes Electron microscope Separator thin film Separator membrane Self-healing material design Supramolecules Cyclodextrin Rare earth catalysts Olefin-based self-healing materials Self-healing materials High toughness gel Polyrotaxane Elastomer Polylactic acid Silica aerogel Polyrotaxane glass Polymeric materials for batteries Electrolyte membranes for fuel cells Li battery separator High toughness resin for vehicle body structures Glass-reinforced polyamide Tires Automotive window glass Polyurethane Polystyrene CFRP Life cycle assessment
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