Arama Sonuçları - \ ((\\ east to feed materials.\\ ) OR ((\ fast OR \\ part) to based materials.\\ ))\

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  1. 1

    Fast Scanning Calorimetry

    Baskı/Yayın Bilgisi 2016
    İçindekiler: “…Part 1. Advanced Instrumentation, Techniques and Methods -- Concepts and Practice of Material Characterization Using Fast Scanning Calorimetry -- Non-adiabatic Scanning Calorimeter For Controlled Fast Cooling and Heating -- Quasi-adiabatic, Membrane-based, Highly Sensitive Fast Scanning Nanocalorimetry -- Fast Scanning Calorimetry- Fast Thermal Desorption Technique: The Thin Wire Approach -- Fast Scanning Calorimetry of Silk Fibroin Protein: Sample Mass and Specific Heat Capacity Determination -- Scanning AC Nano-calorimetry and its Applications -- Isoconversional Kinetics by Fast Scanning Calorimetry -- Reliable Absolute Vapor Pressures of Extremely Low Volatile Compounds From Fast Scanning Calorimetry -- Part 2. …”
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  2. 2

    Solid State Lighting Reliability Part 2 Components to Systems /

    Baskı/Yayın Bilgisi 2018
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  3. 3

    Handbook of Maleic Anhydride Based Materials Syntheses, Properties and Applications /

    Baskı/Yayın Bilgisi 2016
    İçindekiler: “…Part I: Introduction: Progress in Maleic Anhydride Production -- Part II: Reactions and Derivatives: Reactions Involving Maleic Anhydride -- Vegetable Oil-Maleic Anhydride and Maleimide Derivatives: Syntheses and Properties -- Part III: Maleic Anhydride-derived Polymers: The Quintessential Alternating Copolymer Family: Alkyl Vinyl Ether co-Maleic Anhydride Copolymers -- Industrially Significant Copolymers Containing Maleic Anhydride -- Ring-Opening Metathesis Polymerization (ROMP) using Maleic Anhydride based Monomers -- Colloidal and Physicochemical Properties of Maleic Anhydride Based Polymers -- Part IV Applications: Maleic Anhydride Applications in Personal Care -- Application of Maleic Anhydride in Adhesives and Coatings -- Application of Maleic Anhydride based Materials. .…”
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  4. 4

    Bio-aggregates Based Building Materials State-of-the-Art Report of the RILEM Technical Committee 236-BBM /

    Baskı/Yayın Bilgisi 2017
    İçindekiler: “…Effect of testing variables (method of production) -- 9.0 Introduction -- 9.1 Materials and methods -- 9.2 Results -- 9.3 Conclusion -- Acknowledgments -- References -- APPENDIX : Technical Commitee Report - Rilem TC 236 BBM - Bio based Building Materials - Round Robin test for hemp shiv Characterisation -- Round Robin Test For Hemp shiv Characterisation -- Part 1 : Evaluation Of Initial Water Content And Water Absorption -- 1 Introduction -- 2 Material -- 52% -- 18% -- 2.1 Microscopical description -- 3 Initial Water Content -- 3.1 Methods -- 3.2 Results -- 3.3 Concluding remarks on initial water content -- 4 Water Absorption -- 4.1 Description of the experimental methods -- 4.2 Results -- 4.3 Concluding remarks -- Summary of Findings -- Round Robin Test For Hemp shiv Characterisation -- Part 2: Bulk Density And Particle Size Distribution -- 5 Introduction -- 6 Material -- 52% -- 18% -- 7 Bulk Density -- 7.1 Methods -- 7.2 Results -- 7.3 Concluding remarks on bulk density -- 8 Particle Size Distribution -- 8.1 Sieving method -- 8.2 Image processing -- 8.3 Comparison between sieving and image analysis results -- 8.4 Concluding remarks on Particle Size Distribution -- Summary Of Findings -- Acknowledgements -- Round Robin Test For Hemp shiv Characterisation -- Part 3 : Thermal Conductivity -- 9 Introduction -- 10 Material -- 52% -- 18% -- 11 Thermal Conductivity -- 11.1 Experimental methods -- 11.2 Results -- 11.3 Concluding remarks -- Summary Of Findings -- Acknowledgements. .…”
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  5. 5

    Sustainable Jute-Based Composite Materials Mechanical and Thermomechanical Behaviour / Yazar: Jabbar, Abdul

    Baskı/Yayın Bilgisi 2017
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  6. 6

    Strain-Hardening Cement-Based Composites SHCC4 /

    Baskı/Yayın Bilgisi 2018
    İçindekiler: “…Leung -- Performance Enhancement of Concrete Structures through Multi-Scale Crack Control, by Gabriel Jen and Claudia Ostertag -- Strengthening and Repair with Carbon Concrete Composites - the First General Building Approval in Germany, by Silke Scheerer, Elisabeth Schütze and Manfred Curbach -- Performance of Fiber Reinforced Materials: Historic Perspective and Glance in the Future, by Surendra Shah and Yuan Gao,- Applications of SHCC in Japan - Tools and tips for promoting its use, by Keitetsu Rokugo -- Material Design of TRC and TRC Impact Resistance, by Alva Peled.- Part 1. …”
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  7. 7

    Catalytic process development for renewable materials /

    Baskı/Yayın Bilgisi 2013
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  8. 8

    Advanced textile engineering materials /

    Baskı/Yayın Bilgisi 2018
    İçindekiler: “…Intro; Title page; Copyright page; Preface; Part 1: Chemical Aspects; Chapter 1: Application of Stimuli-Sensitive Materials in Smart Textiles; 1.1 Introduction; 1.2 Phase Change Materials; 1.3 Shape Memory Materials; 1.4 Chromic Materials; 1.5 Conjugated Polymers; 1.6 Conductive Polymers; 1.7 Piezoelectricity; 1.8 Optical Fibers; 1.9 Hydrogels; 1.10 Smart Textiles and Nanotechnology; 1.11 Future Trends; References; Chapter 2: Functional Finishing of Textile Materials and Its Psychological Aspects; 2.1 Introduction; 2.2 Softeners; 2.3 Oil- and Water-Repellent Finishes; 2.4 Fire Retardants…”
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  12. 12

    Aerospace Materials and Material Technologies Volume 1: Aerospace Materials /

    Baskı/Yayın Bilgisi 2017
    İçindekiler: “…Part - I METALLIC MATERIALS -- Chapter 1: Magnesium Alloys -- Chapter 2: Aluminium Alloys for Aerospace Applications -- Chapter 3: Aluminium - Lithium Alloys -- Chapter 4: Titanium Sponge Production and Processing for Aerospace Applications -- Chapter 5: Titanium Alloys: Part A - Physical Metallurgy and Processing -- Chapter 6: Titanium Alloys: Part B - Alloy Development, Properties and Applications -- Chapter 7: Aero Steels: Part A - Low Alloy Steels -- Chapter 8: Aero Steels: Part B - High Alloy Steels -- Chapter 9: Nickel-based Superalloys -- Chapter 10: Structural Intermetallics -- Chapter 11: Bronzes for Aerospace Applications -- Chapter 12: Niobium and Other High Temperature Refractory Metals for Aerospace Applications -- Part - II COMPOSITES -- Chapter 13: GLARE®: A Versatile Fibre Metal Laminate (FML) Concept -- Chapter 14: Carbon Fibre Polymer Matrix Structural Composites -- Chapter 15: C/C and C/SiC Composites for Aerospace Applications -- Chapter 16: Ceramic Matrix Composites (CMCs) for Aerospace Applications -- Chapter 17: Nanocomposites Potential for Aero Applications -- Part - III SPECIAL MATERIALS -- Chapter 18 Monolithic Ceramics for Aerospace Applications -- Chapter 19: Nano-Enabled Multi-functional Materials for Aerospace Applications -- Chapter 20: MAX PHASES: New Class of Carbides & Nitrides for Aerospace Structural Applications -- Chapter 21: Shape Memory Alloys (SMAs) for Aerospace Applications -- Chapter 22: Detonation Sprayed Coatings for Aerospace Applications -- Chapter 23: Piezoceramic Materials and Devices for Aerospace Applications -- Chapter 24: Stealth Materials and Technology for Airborne Systems -- Chapter 25: Paints for Aerospace Applications -- Chapter 26: Elastomers and Adhesives for Aerospace Applications.…”
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  13. 13

    Aerospace Materials and Material Technologies Volume 2: Aerospace Material Technologies /

    Baskı/Yayın Bilgisi 2017
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  14. 14

    Biomimetic approaches for biomaterials development /

    Baskı/Yayın Bilgisi 2012
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  15. 15

    Handbook of mechanical nanostructuring /

    Baskı/Yayın Bilgisi 2015
    İçindekiler: “…Cover; Contents; List of Contributors; Preface; Volume 1; Part I Mechanical Properties of Nanostructured Materials; Chapter 1 Mechanical Properties of Nanocrystalline Materials; 1.1 Introduction; 1.2 Static Properties; 1.2.1 Tensile Behavior; 1.2.2 Nanoindentation; 1.3 Wear Properties; 1.4 Fatigue Properties; 1.5 Crack Behavior; 1.6 Conclusions; References; Chapter 2 Superior Mechanical Properties of Nanostructured Light Metallic Materials and Their Innovation Potential; 2.1 Introduction; 2.2 Nanostructuring of Light Metallic Materials Using SPD Methods.…”
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  16. 16

    Multifunctional nanocomposites for energy and environmental applications /

    Baskı/Yayın Bilgisi 2018
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  18. 18

    3D industrial printing with polymers / Yazar: Fink, Johannes Karl

    İçindekiler: “…Methods of 3D Printing -- History -- Recently Developed Materials for 3D Printing -- Shrinkage Compensation -- Basic Principles -- 3D Printing -- Uses and Applications -- Heat Exchangers -- 3D Plastic Model -- Gradient Refractive Index Lenses -- Photoformable Composition -- Comb Polymers -- Post-Processing Infiltration -- Sensors and Biosensors -- Magnetic Separation -- Rapid Prototyping -- Variants of Rapid Prototyping -- 3D Microfluidic Channel Systems -- Aluminum and Magnesium Cores -- Cellular Composites -- Powder Compositions -- Organopolysiloxane Compositions -- Thermoplastic Powder Material -- Plasticizer-Assisted Sintering -- Radiation-Curable Resin Composition -- Solution Mask Liquid Lithography -- Vat Polymerization -- Poly(dimethyl siloxane)-Based Photopolymer -- Hot Lithography -- Ambient Reactive Extrusion -- Micromanufacturing Engineering -- Analytical Uses -- Gas Sensors -- Chemical Engineering -- Gas Separation -- Hierarchical Monoliths for Carbon Monoxide Methanation -- Rotating Spinnerets -- Objects with Surface Microstructures -- Lightweight Cellular Composites -- Textiles -- 3D Printed Polymers Combined with Textiles -- Mechanical and Electrical Contacting -- Soft Electronic Textiles -- 3D Textiles Polymers -- Polymer Matrix Composites -- Biocomposite Filaments -- Nanocomposites -- Nanowires -- Fiber Reinforced Polymers -- Carbon Fiber Polymer Composites -- FDM Printing -- Powder Bed and Inkjet Head 3D Printing -- Stereolithography -- Selective Laser Sintering -- Sequential Interpenetrating Polymer Network -- 3D Printable Diamond Polymer Composite -- Adhesives for 3D Printing -- Voronoi-Based Composite Structures -- Graphene Oxide Reinforced Complex Architectures -- Multiwalled Carbon Nanotube Composites -- Multifunctional Polymer Nanocomposites -- Additive Manufacturing -- Thermosetting Polymers -- UV Curable Materials -- (Meth)acrylate Monomers -- Thiol-ene and Thiol-yne Systems -- Epoxides -- Visible Light-Curable and Visible Wavelength-Transparent Resin -- Poly(ether ether ketone) -- Lasers -- Ultra-High MolecularWeight PE -- Production of PP Polymer Powders -- Acrylate-Based Compositions -- Dimensionally Stable Acrylic Alloys -- Oligoester Acrylates -- Standards -- Biomedical Applications -- Color -- Particle-Free Emulsions -- Shape Memory Polymers -- Synthesis with Stereolithography -- Flexible Electronics -- Magnetically Responsive Shape Memory Polymer -- Sequential Self-Folding Structures -- Multi-shape Active Composites -- Radiation Sensitizers -- Shape Memory Alloy Actuating Wire -- Metal Electrode Fabrication -- 3D Printing -- Water-Soluble Polymer -- Water-Washable Resin Formulations -- Extremely Viscous Materials -- Tunable Ionic Control of Polymeric Films -- Photopolymer Compositions -- Mechanical Properties of UV Curable Materials -- High-Performance Photopolymer with Low-Volume Shrinkage -- Dual Initiation Wavelengths for 3D Printing -- Crosslinked Polymers -- Recycled Plastics -- 3D Printed Fiber Reinforced Portland Cement Paste -- Polymer-Derived Ceramics -- Photocurable Ceramic/Polymer Composites -- Ceramic Matrix Composite Structures -- Selective Laser Melting -- Stereolithography Resin for Rapid Prototyping of Ceramics and Metals Airplanes and Cars -- Airplanes -- Material Testing Standards -- Lightweight Aircraft Components -- Aircraft Spare Parts -- Polymer Laser Sintering -- Composites Part Production -- DeployableWing Designs -- Additive Manufacturing for Aerospace -- Fiber Reinforced Polymeric Components -- Manufacturing of Aircraft Parts -- Multirotor Vehicles -- Flame Retardant Aircraft Carpet -- Aircraft Cabins -- Additive Manufacturing of Solid Rocket Propellant Grains -- High Temperature Heating System -- Aerospace Propulsion Components -- Antenna RF Boxes -- Cyanate Ester Clay Nanocomposites -- Bionic Lightweight Design -- Cars -- Laser Sintering -- Automotive Repair Systems -- Improving Aerodynamic Shapes -- Common Automotive Applications -- Thermomechanical Pulp Fibers -- Polyamic Acid Salts -- Recycled Tempered Glass from the Automotive Industry Electric and Magnetic Uses -- Electric Uses -- Conductive Microstructures -- Modular Supercapacitors -- Active Electronic Materials -- Piezoelectric Materials -- Holographic Metasurface Antenna -- Waveguide -- Fuel Cell -- Batteries -- Magnetic Uses -- Polymer-Based Permanent Magnets -- Bonded Magnets -- Strontium Ferrite -- Soft-Magnetic Composite -- Discontinuous Fiber Composites by 3D Magnetic Printing Medical Applications -- Basic Procedures -- Image Acquisition -- 3D Printing -- Microvalve-Based Bioprinting -- 3D Printed Organ Models for Surgical Applications -- Organ Bioprinting -- Materials -- Liver -- Heart -- Cartilage -- Bionic Ears -- Skin -- Scaffolds -- Personalized Implants -- Neural Tissue Models -- Bioinks -- Cytocompatible Bioink -- Hydrogel Bioinks -- Dentin-Derived Hydrogel Bioink -- Decellularized Extracellular Matrix Materials -- Silk-Based Bioink -- Nanoengineered Ionic-Covalent Entanglement Bioinks -- Living Skin Constructs -- Cell-Laden Scaffolds -- Patient-Specific Bioinks -- Presurgical Simulation -- Models with Integrated Soft Tactile Sensors -- Dental Applications -- Prosthetics -- Fluidic Devices -- 3D Bioprinting of Tissues and Organs -- 3D Bioprinting Techniques -- Pigmented Human Skin Constructs -- Strategies for Tissue Engineering -- Bone Tissue -- Neuroregenerative Treatment -- 3D Tissues/Organs Combined with Microfl uidics -- 3D Microfi brous Constructs -- Biosynthetic Cellulose Implants -- Polysaccharides -- Corneal Transplants -- Hydrogels from Collagen -- Dissolved Cellulose -- Hydrogels from Hyaluronic Acid and Methylcellulose -- Stem Cells -- Autografts -- Drug-Eluting Coronary Stents -- Biomedical Devices -- Soft Somatosensitive Actuators Pharmaceutical Uses -- Drug Release -- Pharmaceutical 3D Printing -- Pharmaceutically Acceptable Amorphous Polymers -- Paracetamol Oral Tablets -- Patient-Specific Liquid Capsules -- Thermolabile Drugs -- Composite Tablets -- Transdermal Drug Delivery -- Chip Platforms for Microarray -- 3D Bioprinting -- Index --Acronyms --Chemicals --General Index.…”
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  19. 19

    Bioceramics with clinical applications /

    Baskı/Yayın Bilgisi 2014
    İçindekiler: “…""5.8 Organic Functionalization of Ordered Mesoporous Silicas""""References""; ""Chapter 6: Alumina, Zirconia, and Other Non-oxide Inert Bioceramics""; ""6.1 A Perspective on the Clinical Application of Alumina and Zirconia""; ""6.2 Novel Strategies Based on Alumina and Zirconia Ceramics""; ""6.3 Non-oxidized Ceramics""; ""References""; ""Chapter 7: Carbon-based Materials in Biomedicine""; ""7.1 Introduction""; ""7.2 Carbon Allotropes""; ""7.3 Carbon Compounds""; ""References""; ""Part III: Material Shaping""; ""Chapter 8: Cements""; ""Abbreviations""; ""Glossary""; ""8.1 Introduction""…”
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  20. 20

    Energy Materials 2017

    Baskı/Yayın Bilgisi 2017
    İçindekiler: “…Part 1: Energy and Environmental Issues in Materials Manufacturing and Processing: Opportunities in the Steel Industry -- Waste Energy Recovery Technology of Iron and Steel Industry in China -- Green Manufacturing Process of Shougang Jingtang Steel Plant -- The Introduction and Process Optimization Research of Oxygen Blast Furnace Ironmaking Technology -- Prediction and optimal scheduling of byproduct gases in steel mill: Trends and challenges -- Processing Non-Oriented Electrical Steels Using Inclined/Skew Rolling Schemes -- A Possible Way for Efficient Utilization of Coal Energy: The Combined Process of Ironmaking with Gasoline Synthesis and Electricity Generation -- The influence of water vapour on the fuming rate in a ferromanganese system -- Part 2: Energy and Environmental Issues in Materials Manufacturing and Processing: Opportunities in Aluminum Production, Waste Heat and Water Recovery -- Approach for pyrolysis gas release modelling and its potential for enhanced energy efficiency of aluminium remelting furnaces -- Numerical approach for the implementation of the interaction of pyrolysis gases and combustion products in an aluminium melting furnace -- Fluoropolymer Coated Condensing Heat Exchangers for Low-grade Waste Heat Recovery -- Nitrate and other anion removal from waste water using the Hydroflex technology -- Mechanical Analysis of Raceway Formation in Bulk Bed of Blast Furnace -- Part 3: Materials for Coal-Based Power: Materials For Coal-Based Power: Session I -- Ni-Fe based alloy GH984G used for 700 coal-fired power plant -- Part 4: Materials for Coal-Based Power: Materials For Coal-Based Power: Session II -- Creep strength and oxidation resistance of industrially made G115 Steel pipe -- Accelerated creep test for new steels and welds -- Part 5: Materials for Coal-Based Power: Materials For Coal-Based Power: Session IV -- The Reliability Analysis of 12Cr1MoVG and T23 Used for USC Boilers Water Wall -- Part 6: Materials for Coal-Based Power: Poster Session -- Effect of high-frequency induction hardening on stress corrosion of a 12% Cr martensitic stainless steel -- Fireside corrosion behaviors of Inconel 740 H superalloy in various SO2 contents -- High Cycle Fatigue Behavior of HAYNES282 Superalloy -- Recent Development in the Characteristics of Alloy 625 for A-USC Steam Turbine Castings -- Part 7: Materials for Gas Turbines: Coatings -- EVOLUTION OF THE THERMAL CONDUCTIVITY OF Sm2Zr2O7 UNDER CMAS ATTACK -- Part 8: Materials for Gas Turbines: Hot Corrosion and New Materials -- Development of a new high strength and hot corrosion resistant directionally solidified superalloy DZ409 -- Part 9: Materials for Gas Turbines: Microstructure and Processing -- Modeling the Diffusion of Minor Elements in Different MCrAlY - Superalloy Substrates at High Temperature -- ON HEALING MECHANISM OF CAST POROSITIES IN CAST NI-BASED SUPERALLOY BY HOT ISOSTATIC PRESSING -- The Influence of Dendritic Segregation Degree to the Recrystallization Nucleation in U4720LI -- Part 10: Materials for Gas Turbines: Poster Session -- Stress Rupture Properties of Alloy 783 -- Study on the Undercoolability and Single Crystal Castability of Nickel-Based Superalloys -- Part 11: Materials for Nuclear Energy: Materials for Nuclear Applications I -- Enhancing the High-Cycle Fatigue Property of 316 Austenitic Stainless Steels through Introduction of Mechanical Twins by Cold-Drawing -- Part 12: Materials for Nuclear Energy: Materials for Nuclear Applications II -- Microstructure Evolution of a Reactor Pressure Vessel Steel during High-temperature Tempering -- Part 13: Materials for Nuclear Energy: Environmental Effects -- Effect of Steam Pressure on the Oxidation Behaviour of Alloy 625 -- Friction Stir Processing of Degraded Austenitic Stainless Steel Nuclear Fuel Dry Cask Storage System Canisters -- Part 14: Materials for Nuclear Energy: Accident Tolerant Fuels & Irradiation Effects -- The Mechanical Response of Advanced Claddings during Proposed Reactivity Initiated Accident Conditions -- First principles investigations of alternative nuclear fuels -- Comparative study of thermal conductivity of SiC and BeO from ab initio calculations -- Part 15: Materials for Oil and Gas and AMREE Oil & Gas III -- Anisotropic behaviors for X100 high grade pipeline steel under stress constraints -- Co-relation of microstructural features with tensile and toughness characteristics of X70 grade steel -- Development and applications of new generation Ni-containing cryogenic steels in China -- Microstructure analysis and weldability investigation of stainless steel clad plate -- Microstructure and Properties of High Performance Pipeline Steels -- Sensitivity variation of nanomaterials at different operating temperature conditions.…”
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