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A Review of N Subramanian's Design of Steel Structures: Limit States Method
Design of Steel Structures: Limit States Method is a comprehensive textbook written by N Subramanian, a consulting engineer and former professor of civil engineering. The book is intended for undergraduate students of civil and structural engineering, as well as postgraduate students and practicing engineers who want to learn the limit state design of steel structures.
The book covers the design of steel structures in accordance with the latest code of practice for general construction in steel (IS 800 : 2007). The book is based on the modern limit state approach to design, which considers the uncertainties in the material properties, loads, and geometry, and provides a rational and consistent basis for design. The book also incorporates the latest research findings and design recommendations from various sources, such as Eurocode 3, AISC, and CISC.
The book consists of 12 chapters, covering topics such as properties of steel, types of steel structures, important areas of structural steel technology, bolted connections, welded connections, design of trusses, design of plate girders, gantry girders, design of beam-columns, and design of industrial buildings. Each chapter features solved examples, review questions, and practice problems, as well as ample illustrations to supplement the text. The book also provides appendices with useful information on steel sections, properties, specifications, and design aids.
The book is well-written and organized, with clear explanations and derivations of the design formulas and procedures. The book also provides practical guidance and tips for designing efficient and economical steel structures. The book is suitable for both classroom teaching and self-study, as it covers the theoretical and practical aspects of steel design in a comprehensive manner.
Design of Steel Structures: Limit States Method is a valuable resource for students and engineers who want to learn the state-of-the-art design of steel structures. The book is available in paperback format from Oxford University Press[^1^], as well as in PDF format from various online sources[^2^] [^4^].
In this section, we will review some of the key features and topics covered in the book. We will also highlight some of the strengths and limitations of the book, and provide some suggestions for improvement.
Key Features and Topics
The book has several features that make it a useful and comprehensive textbook for steel design. Some of these features are:
The book covers the design of steel structures in accordance with the latest code of practice for general construction in steel (IS 800 : 2007), which is based on the limit state method. The book also compares and contrasts the design provisions of IS 800 with those of other codes, such as Eurocode 3, AISC, and CISC.
The book provides a clear and logical presentation of the design principles and procedures, with detailed explanations and derivations of the design formulas and equations. The book also uses consistent notation and terminology throughout the text.
The book includes numerous solved examples, review questions, and practice problems, covering various types of steel structures and design situations. The book also provides solutions to selected problems at the end of each chapter.
The book contains ample illustrations, diagrams, tables, charts, and graphs to support the text and enhance the understanding of the concepts and applications. The book also provides appendices with useful information on steel sections, properties, specifications, and design aids.
The book incorporates the latest research findings and design recommendations from various sources, such as journals, conferences, reports, and manuals. The book also cites relevant references for further reading and study.
Some of the topics covered in the book are:
Properties of steel: The book discusses the physical, mechanical, and chemical properties of structural steel, as well as the effects of temperature, corrosion, fatigue, and fire on steel behavior. The book also explains the various grades and specifications of steel available in the market.
Types of steel structures: The book introduces the different types of steel structures, such as simple beams, frames, trusses, arches, bridges, towers, tanks, shells, domes, etc. The book also describes the various methods of fabrication and erection of steel structures.
Important areas of structural steel technology: The book covers some of the important areas of structural steel technology, such as stability analysis, plastic analysis and design, seismic design, fire design, composite construction, cold-formed steel design, etc. The book also discusses some of the recent developments and innovations in steel design.
Bolted connections: The book explains the types, classifications, specifications, and behavior of bolted connections. The book also presents the design methods for various types of bolted connections, such as bearing-type connections, slip-critical connections,
shear connections,
tension connections,
eccentric connections,
moment connections,
splices,
etc. The book also provides examples of bolted connection design for different types of steel structures.
Welded connections: The book explains the types,
classifications,
specifications,
and behavior of welded connections. The book also presents the design methods for various types
of welded connections,
such as fillet welds,
partial penetration welds,
full penetration welds,
butt welds,
plug welds,
slot welds,
etc. The book also provides examples
of welded connection design for different types
of steel structures.
Design of trusses: The book covers the analysis
and design
of planar
and space trusses,
including methods
of determining member forces,
joint displacements,
support reactions,
etc. The book also discusses
the design
of truss members
and joints
for axial forces,
bending moments,
shear forces,
etc. The book also provides examples
of truss design
for different types
of applications.
Design
of plate girders: The book covers
the analysis
and design
of plate girders,
including methods
of determining shear force,
bending moment,
deflection,
etc. The book also discusses
the design
of plate girder components,
such as web,
flange,
stiffeners,
splices,
etc. The book also provides examples
of plate girder design
for different types
of applications.
Gantry girders: The book covers
the analysis
and design
of gantry girders,
which are used to support overhead cranes.
The book also discusses
the loading conditions,
design criteria,
failure modes,
etc.
of gantry girders.
The book also provides examples
of gantry girder design
for 9160f4acd4
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