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Ductile Design of Steel Structures

Author: Michel Bruneau,Chia-Ming Uang,Rafael Sabelli | Size: 25.6 MB | Format: PDF | Quality: Original preprint | Publisher: McGraw-Hill Professional | Year: 2011 | pages: 928 | ISBN: 0071623957, 978-0071623957

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Comprehensive coverage of the background and design requirements for plastic and seismic design of steel structures

Thoroughly revised throughout, Ductile Design of Steel Structures, Second Edition, reflects the latest plastic and seismic design provisions and standards from the American Institute of Steel Construction (AISC) and the Canadian Standard Association (CSA). The book covers steel material, cross-section, component, and system response for applications in plastic and seismic design, and provides practical guidance on how to incorporate these principles into structural design.

Three new chapters address buckling-restrained braced frame design, steel plate shear wall design, and hysteretic energy dissipating systems and design strategies. Eight other chapters have been extensively revised and expanded, including a chapter presenting the basic seismic design philosophy to determine seismic loads. Self-study problems at the end of each chapter help reinforce the concepts presented. Written by experts in earthquake-resistant design who are active in the development of seismic guidelines, this is an invaluable resource for students and professionals involved in earthquake engineering or other areas related to the analysis and design of steel structures.

COVERAGE INCLUDES:

Structural steel properties
Plastic behavior at the cross-section level
Concepts, methods, and applications of plastic analysis
Building code seismic design philosophy
Design of moment-resisting frames
Design of concentrically braced frames
Design of eccentrically braced frames
Design of steel energy dissipating systems
Stability and rotation capacity of steel beams

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Mirror : Ductile Design of Steel Structures 2nd



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199 MB pdf


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2nd ED. - TRUE PDF - 25,5 Mb
25.5 MB



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Ductile Design of Steel Structures

Author: Michel Bruneau; Chia-Ming Uang; Rafael Sabelli | Size: 199.18 MB | Format: PDF | Quality: Unspecified | Publisher: McGraw-Hill Professional | Year: 2011 | pages: 918 | ISBN: 0071623957, 978-0071623957


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Ductile Design of Steel Structures + Errata

Author: Michel Bruneau,Chia-Ming Uang,Rafael Sabelli | Size: 24.5 MB | Format: PDF | Quality: Original preprint | Publisher: McGraw-Hill Professional | Year: 2011 | pages: 928 | ISBN: 0071623957, 978-0071623957

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[Image: info.png]

Comprehensive coverage of the background and design requirements for plastic and seismic design of steel structures

Thoroughly revised throughout, Ductile Design of Steel Structures, Second Edition, reflects the latest plastic and seismic design provisions and standards from the American Institute of Steel Construction (AISC) and the Canadian Standard Association (CSA). The book covers steel material, cross-section, component, and system response for applications in plastic and seismic design, and provides practical guidance on how to incorporate these principles into structural design.

Three new chapters address buckling-restrained braced frame design, steel plate shear wall design, and hysteretic energy dissipating systems and design strategies. Eight other chapters have been extensively revised and expanded, including a chapter presenting the basic seismic design philosophy to determine seismic loads. Self-study problems at the end of each chapter help reinforce the concepts presented. Written by experts in earthquake-resistant design who are active in the development of seismic guidelines, this is an invaluable resource for students and professionals involved in earthquake engineering or other areas related to the analysis and design of steel structures.

COVERAGE INCLUDES:

Structural steel properties
Plastic behavior at the cross-section level
Concepts, methods, and applications of plastic analysis
Building code seismic design philosophy
Design of moment-resisting frames
Design of concentrically braced frames
Design of eccentrically braced frames
Design of steel energy dissipating systems
Stability and rotation capacity of steel beams

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