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Design of Flexural Steel Member · LearnSpace
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Design of Flexural Steel Member

Курс от L&T EduTech
Средний≈ 12.5 чАнглийский
О курсеНавыкиПрограммаПреподаватели

О курсе

Design of Steel Beams for Flexure is a practical engineering course focused on how structural steel elements resist bending, shear, and complex combined stresses. It bridges structural theory with code-compliant design for members carrying transverse loads—vital for frameworks in high-rises, industrial platforms, and crane runways. Learners will progress from beam classification and lateral-torsional buckling to the design of laterally supported and unsupported sections. The curriculum covers specialized heavy-duty components like plate girders and gantry girders (handling web crippling and buckling), and culminates in the analysis of beam-columns under combined axial force and bending. Learning Objectives By the end of this course, learners will be able to: Evaluate Flexural Stability: Classify cross-sections and analyze critical stability limits, including plastic hinge formation, torsion, warping, and lateral-torsional buckling. Prevent Local Web Failures: Assess and design against localized structural failures, specifically web buckling, web crippling, and shear failure modes. Size Heavy-Duty Girders: Proportion and engineer large-scale plate girders and industrial gantry girders according to standard code provisions and wheel-load criteria. Design Beam-Columns: Apply interaction equations ($P\text{--}M$ relationships) to safely design structural members subjected to simultaneous axial loads and bending moments. Deliver Complete Designs: Use systematic engineering procedures to select, analyze, and detail standard steel beams, purlins, and complex flexural systems. Target Learners & Background: Civil & Structural Engineering Students Early-Career Structural Engineers Industrial Plant Designers & Fabricators

Навыки, которые вы освоите

Structural EngineeringFailure AnalysisEngineering Design ProcessStructural AnalysisEngineering CalculationsTorque (Physics)Technical StandardCivil EngineeringConstruction EngineeringEngineering AnalysisMechanicsBuilding CodesDesign Specifications

Программа курса

4 модулей · 94 учебных материалов

01Beams - Types and Behaviour19 материалов

Welcome to the Course

About the SpecializationВидеоAbout the CourseВидео

Beams - Types and Behaviour

Introduction to BeamsВидеоModel Demonstration - Cross section and its Stiffness ВидеоTypes of Beams

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Design of Flexural Steel Member
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Обучение на Coursera

≈ 12.5 ч

4 модулей

Язык: Английский

Часть программы вашего университета
Видео
Classification of Beams and Types of LoadВидео
Basic plastic theory Видео
Section Classification Видео
Plastic Hinge and Shape FactorВидео
Shear centre and Lateral Stability Видео
Column and lateral Beam Buckling Видео
Lateral Torsional Buckling Видео
Factors affecting lateral torsional buckling Видео
Torsion and Warping in Beams Видео
Cases of Biaxial bending Видео
Section ClassicationВидео
Failure Modes of Beams Видео
UntitledDIALOGUE
Beams - Types and BehaviourЗадание
02Design of Beams34 материалов
Beam Design AspectsPLUGINBehaviour of Steel BeamPLUGINShear Strength of Steel BeamВидеоWeb Buckling and Web Crippling ВидеоEffective Length of Beams ВидеоDesign Strength of Laterally Supported BeamsВидеоDesign of Laterally Supported Beams – StepsPLUGINDesign of Laterally Supported Beams Problem statement ВидеоLoad calculationВидеоMaximum Bending moment and Shear forceВидеоCheck for Shear and Bending ВидеоCheck for deflectionВидеоCheck for Buckling and CripplingВидеоLaterally Unsupported BeamВидеоElastic lateral Torsional Buckling ВидеоCode ProvisionsВидеоDesign of Laterally Unsupported Beams – StepsВидеоDesign Strength of Laterally Unsupported Beams Problem statement ВидеоLoad, Shear and Bending momentВидеоTrial sectionВидеоCheck for shear and bending ВидеоCheck for design bending capacity ВидеоCheck for Deflection, Buckling and CripplingВидеоPurlinsPLUGINDesign of Purlins - Steps ВидеоDesign of Purlins -Problem statementВидеоDetermination of factored LoadВидеоShear and Bending momentВидеоTrial sectionВидеоCheck for Shear and Bending ВидеоCheck for Deflection ВидеоWind suctionВидеоCheck for wind suctionВидеоDesign of BeamsЗадание
03Design of Plate Girder 22 материалов
Introduction to Plate GirderВидеоTypes of Plate Girder SectionsВидеоElements of Plate Girder ВидеоDesign Considerations of Plate GirderВидеоPreliminary Design Requirements ВидеоLateral Torsional Buckling & Shear StrengthВидеоWeb Panel Subjected to Shear ВидеоIS 800 : 2007 provisions for Design ВидеоProportioning of Section ВидеоDesign of Plate Girder - Steps ВидеоDesign of Plate Girder - Problem statement ВидеоNominal Shear StrengthВидеоFactored Shear ForceВидеоProblem Statement 2ВидеоNominal shear strength 2ВидеоProvision of Web stiffenerВидеоWithout stiffener ВидеоIntroduction to Gantry Girder ВидеоForces on Gantry GirderВидеоFeatures and Selection of Gantry Girder ВидеоGantry Girder - Design StepsВидеоDesign of Plate Girder Задание
04Design of Beam-Column (Compression member with combined Axial and Bending force)19 материалов
Introduction to Beam-ColumnВидеоShort and Long Beam-Column ВидеоBeam-Column BehaviourВидеоP-M Interaction of Steel SectionsВидеоP-Δ Effects and Equivalent Moment FactorВидеоModes of FailureВидеоDesign Strength of Beam-ColumnВидеоIS 800 : 2007 Provisions for Design ВидеоDesign of Beam-Column - Initial steps in designВидеоFinal steps in design ВидеоProblem statement ВидеоFactored loadВидеоTrial section ВидеоListing and Classifying the cross section ВидеоEstimating Resistance of the cross sectionВидеоResistance for Biaxial Bending ВидеоBuckling Resistance for Bending ВидеоDesign of Beam-ColumnЗаданиеDesign of Beam ColumnsDIALOGUE