Steel Connection Design by Inelastic Analysis

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A01=Ali Nassiri
A01=Frantisek Wald
A01=Halil Sezen
A01=IDEA StatiCa
A01=Mark D. Denavit
A01=Mark Denavit
A01=Martin Vild
A01=Mustafa Mahamid
Age Group_Uncategorized
Age Group_Uncategorized
AISC 360 specifications
Author_Ali Nassiri
Author_Frantisek Wald
Author_Halil Sezen
Author_IDEA StatiCa
Author_Mark D. Denavit
Author_Mark Denavit
Author_Martin Vild
Author_Mustafa Mahamid
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Category1=Non-Fiction
Category=TN
Category=TNC
Category=TNCJ
Component-Based Finite Element Method (CBFEM)
COP=United States
Delivery_Pre-order
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eq_isMigrated=2
eq_nobargain
eq_non-fiction
eq_tech-engineering
inelastic analysis
Language_English
PA=Not yet available
Price_€50 to €100
PS=Forthcoming
softlaunch
Structural steel connections

Product details

  • ISBN 9781394222155
  • Weight: 930g
  • Dimensions: 191 x 239mm
  • Publication Date: 10 Dec 2024
  • Publisher: John Wiley & Sons Inc
  • Publication City/Country: US
  • Product Form: Hardback
  • Language: English
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Comprehensive resource on the finite element method in structural steel connection design through verification with AISC 360 provisions

Steel Connection Design by Inelastic Analysis covers the use of the finite element method in structural steel connection design. Verification with AISC 360 provisions is presented, focusing on the Component-Based Finite Element Method (CBFEM), a novel approach that provides the global behavior and verification of resistance for the design of structural steel connections. This method is essential for fast and practical design and evaluation of connections with different levels of geometry and complexity.

Detailed modeling and verification examples with references to AISC and other relevant publications are included throughout the text, along with roughly 250 illustrations to aid in reader comprehension.

Readers of this text will benefit from understanding at least the basics of structural design, ideally through civil, structural, or mechanical engineering programs of study.

Written by a team of six highly qualified authors, Steel Connection Design by Inelastic Analysis includes information on:

  • T-stub connections, single plate shear connections, bracket plate connections, beam over column connections, and end-plate moment connections
  • Bolted wide flange splice connections, temporary splice connections, and chevron brace connection in a braced frame
  • Brace connections at beam-column connection in a braced frame and double angle simple beam-to-column connections
  • Semi-rigid beam-to-column connections, covering code design calculations and comparisons, IDEA StatiCa analysis, and ABAQUS analysis

Steel Connection Design by Inelastic Analysis is an authoritative reference on the subject for structural engineers, Engineers of Record (EORs), fabrications specialists, and connection designers involved in the structural design of steel connections in the United States or any territory using AISC 360 as the primary design code.

Mark Denavit is an Associate Professor in the Department of Civil and Environmental Engineering at the University of Tennessee, Knoxville, TN, USA.

Ali Nassiri is an Assistant Professor in the Department of Integrated Systems Engineering at the Ohio State University, Columbus, OH, USA.

Mustafa Mahamid is a Research Associate Professor at the University of Illinois at Chicago, IL, USA & an Associate Research Fellow at the Technion, Israel Institute of Technology, Haifa, Israel.

Martin Vild is a Product Owner at IDEA StatiCa and an Assistant Professor in Institute of Metal and Timber Structures at Brno University of Technology, Czech Republic.

Frantisek Wald is a Professor in Department of Steel and Timber Structures at the Czech Technical University in Prague, Czech Republic.

Halil Sezen is a Professor of Structural Engineering in the Department of Civil, Environmental and Geodetic Engineering at the Ohio State University, Columbus, OH, USA.

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