๐”– Scriptorium
โœฆ   LIBER   โœฆ

๐Ÿ“

Structural Materials: Behavior, Testing and Evaluation (Materials Horizons: From Nature to Nanomaterials)

โœ Scribed by Harvinder Singh


Publisher
Springer
Year
2021
Tongue
English
Leaves
275
Category
Library

โฌ‡  Acquire This Volume

No coin nor oath required. For personal study only.

โœฆ Synopsis


This book discusses the properties, characterization procedures, and analysis techniques of various structural materials. It presents the latest design considerations and uses of engineering materials as well as theories for fully understanding them through numerous worked mathematical examples. The book gradually builds the concept of materials and the principles of material classifications and their response to different physical disturbances, and finally, about the selection methods based upon the test results of the standard methods to choose appropriate materials for various engineering applications. The principles and related theories predicting the response of different structural materials are introduced in a concise and logical manner. A number of illustrations and examples are also given in all chapters for the help of potential readers. The book will be useful for practicing engineers, researchers, and students in the area of civil engineering, especially structural engineering and allied fields.

โœฆ Table of Contents


Preface
Contents
About the Author
1 Materials
1.1 Material Classification
1.1.1 Structural and Nonstructural Materials
1.2 Types of Material
1.3 Material Response
1.3.1 Elastic Response
1.3.2 Elasto-Plastic Response
1.3.3 Plastic Response
1.4 Material Properties
1.4.1 Mechanical Properties
1.4.2 Thermal Properties
1.4.3 Acoustical Properties
1.4.4 Electrical Properties
1.4.5 Magnetism
1.4.6 Chemical Properties
Bibliography
2 Material Behavior
2.1 Material Microstructure
2.1.1 Metals and Non-metals
2.1.2 Polymers
2.1.3 Composites
2.2 Material Behavior Under Different Stress Conditions
2.2.1 Tension
2.2.2 Compression
2.2.3 Shear and Bending
2.3 Parameters Affecting the Material Strength
2.3.1 Size and Shape of Specimen
2.3.2 Type of the Loading
2.3.3 Duration of Loading
2.3.4 Stress Conditions
2.4 Material Constitutive Models
2.4.1 Tension Models
2.4.1.1 Multi-linear Relationship
2.4.1.2 Bilinear Relationship
2.4.1.3 Linear Relationship
2.4.1.4 Drop-Constant Relationship
2.4.2 Compression Models
2.4.2.1 Parabolic Stress Block
2.4.2.2 Equivalent Rectangular Stress Block
2.5 Characteristics Strength of Materials
Bibliography
3 Characterizing Material Response
3.1 Different Equipments and Devices
3.1.1 Force Measurement
3.1.2 Strain Measurements
3.1.3 Displacement-Controlled Testing
3.1.4 Load-Controlled Testing
3.1.5 Data Acquisition System
3.2 Selection of Suitable Testing Equipments
3.3 Calibration of Equipments/Instruments/Sensors
3.4 Testing Operations
Bibliography
4 Material Testing and Evaluation
4.1 Sampling
4.2 Acceptance Criterion
4.3 Different Test Parameters
4.3.1 Strength and Stiffness
4.3.2 Toughness and Resilience
4.3.3 Fatigue
4.3.4 Crushing
4.3.5 Impact
4.3.6 Abrasion
4.3.7 Permeability
4.3.8 Time-Dependent Properties, Such as Shrinkage and Creep
4.3.9 Durability Considerations
4.4 Different Methods to Monitor the Quality of Materials
4.5 Nondestructive Testing Procedures
4.5.1 Rebound Hammer Test
4.5.2 Pulse Velocity Testing
4.5.3 Carbonation Depth Measurement
References and Bibliography
References
Bibliography
5 Documenting Test Results
5.1 Test Data
5.1.1 Data Generation
5.1.2 Data Collection
5.1.3 Compilation and Reporting
5.2 Method of Interpretation
5.3 Writing the Test Reports
5.4 Material Selection Process
Bibliography
6 Code of Practice and Guidelines
6.1 Quality Control and Importance
6.2 Different Materials
6.2.1 Cementitious Materials
6.2.1.1 Lime
6.2.1.2 Cements
6.2.1.3 Pozzolanic Materials
6.2.2 Aggregates
6.2.2.1 Fine Aggregates
6.2.2.2 Coarse Aggregates
6.2.3 Admixtures
6.2.4 Reinforcing Materials
6.2.4.1 Structural Steel
6.2.4.2 Fibers
6.2.4.3 Geotextiles and Geogrid
6.2.4.4 Carbon Composites
6.2.5 Concrete
6.2.5.1 Plain Concrete
6.2.5.2 Reinforced Concrete
6.2.5.3 Fiber-Reinforced Concrete
6.2.5.4 Self-Consolidating Concrete
6.2.5.5 Lightweight Concrete
6.2.5.6 Permeable Concrete
6.2.5.7 High-Performance Concrete
6.2.6 Timber
6.2.7 Glass
6.2.8 Aluminum
6.2.9 Asphaltic Materials
6.2.10 Soils
Conflict of Interest
References and Bibliography
References
Bibliography
7 Design of Materials
7.1 Introduction
7.2 Design Philosophy
7.3 Natural Materials
7.3.1 Stones
7.3.2 Timber
7.4 Metals and Alloys
7.5 Polymers
7.5.1 Changing the Processing Parameter
7.5.2 Addition of Other Chemicals
7.6 Composites
7.6.1 Mortar
7.6.2 Concrete
7.7 Annexure
References
8 Correction to: Material Testing and Evaluation
Correction to: Chapter 4 in: H. Singh, Structural Materials, Materials Horizons: From Nature to Nanomaterials, https://doi.org/10.1007/978-981-16-3211-2_4
502443_1_En_BookBackmatter_OnlinePDF.pdf
Index
502443_1_En_8_Chapter_OnlinePDF.pdf
8 Correction to: Material Testing and Evaluation
Correction to: Chapter 4 in: H. Singh, Structural Materials, Materials Horizons: From Nature to Nanomaterials, https://doi.org/10.1007/978-981-16-3211-2_4


๐Ÿ“œ SIMILAR VOLUMES


Recent Advances in Layered Materials and
โœ Sarmila Sahoo (editor) ๐Ÿ“‚ Library ๐Ÿ“… 2021 ๐Ÿ› Springer ๐ŸŒ English

<span>This book provides topical information on innovative, structural and functional materials and composites with applications in various engineering fields covering the structure, properties, manufacturing process, and applications of these materials. It covers various topics in layered structure

Carbon Nanothreads Materials (Materials
โœ Kim Meow Liew, Wei-Ming Ji, Lu-Wen Zhang ๐Ÿ“‚ Library ๐Ÿ“… 2022 ๐Ÿ› Springer ๐ŸŒ English

<span>This book describes carbon nanothreads with complete and comprehensive knowledge covering theories, numerical methods, and properties comparisons with other carbon-based nanomaterials. For one thing, the main theoretical aspects in this book include: First-Principle Calculation, Density Functi

Nanostructured Biomaterials: Basic Struc
โœ Bibhu Prasad Swain (editor) ๐Ÿ“‚ Library ๐Ÿ“… 2022 ๐Ÿ› Springer ๐ŸŒ English

<span>This book presents recent advances in nanostructured biomaterials. It covers the structures and applications of advanced nanostructured biomaterials. The topics covered include overview on biological activities of thiazole derivatives, imidazole derivatives, pyrazole derivatives, tetrazole der

Structural Materials: Behavior, Testing
โœ Harvinder Singh ๐Ÿ“‚ Library ๐Ÿ“… 2021 ๐Ÿ› Springer ๐ŸŒ English

<p>This book discusses the properties, characterization procedures, and analysis techniques of various structural materials. It presents the latest design considerations and uses of engineering materials as well as theories for fully understanding them through numerous worked mathematical examples.

Green Composites (Materials Horizons: Fr
โœ Sabu Thomas (editor), Preetha Balakrishnan (editor) ๐Ÿ“‚ Library ๐Ÿ“… 2021 ๐Ÿ› Springer ๐ŸŒ English

<p><span>This book presents important developments in green chemistry, with a particular focus on composite materials chemistry. In recent years, natural polymers have generated much interest due to their unique morphology and physical properties. The book gives an introductory overview of green com

Multiscale Modelling of Advanced Materia
โœ Runa Kumari (editor), Balamati Choudhury (editor) ๐Ÿ“‚ Library ๐Ÿ“… 2020 ๐Ÿ› Springer ๐ŸŒ English

<span>This volume covers the recent advances and research on the modeling and simulation of materials. The primary aim is to take the reader through the mathematical analysis to the theories of electricity and magnetism using multiscale modelling, covering a variety of numerical methods such as fini