SlideShare a Scribd company logo
1 of 14
Download to read offline
Design of Flat Slab
S.Nancy Debora
Assistant Professor (Civil)
Karunya University
FLAT SLAB
Flat slab are also known as beamless slab, is a
type of slab in which the flooring slab is directly
supported on columns without the agency of
beam or girders.
For span from 5 to 9m thin flat slabs are the
preferred solution for the construction of in- situ
concrete frame building, where a square or near
square grid is used.
They are provided in theatres, factories, and mills,
shopping complex and other buildings.
Flat Slab
Types of Flat slab
Uses of Components of Flat slab
Benefits of Flat Slab
• Flexibility in room layout
• Saving in building height
• Shorter construction time
• Prefabricated welded mesh
Building Height
Form work
Welded mesh
PUNCHING SHEAR
• always a critical consideration in flat plate design
around the columns
• instead of using thicker section, shear reinforcement
in the form of shear heads, shear studs or stirrup
cages may be embedded in the slab to enhance shear
capacity at the edges of walls and columns
Shear Studs
Column Strip and Middle strip
• Column Strip means a design
strip having a width of 0.25L1 or
0.25L2,whichever is less.
• The remaining middle portion
which is bound by the column
strips is called middle strip.
General Design Considerations (CL 31.2)
1. Thickness of Flat Slab (31.2.1 )
• The thickness of the flat slab shall be generally controlled by considerations of
span to effective depth ratios given in 23.2.
= 40,if mild steel is used
= 32, if HYSD bars are used
• For slabs with drops the span to effective depth ratios obtained in accordance
with provisions in 23.2 shall be multiplied by 0.9.
= 40x0.9 = 36,if mild steel is used
= 32x0.9 = 28.8, if HYSD bars are used
• For this purpose, the longer span shall be considered.
• The minimum thickness of slab shall be 125
2. Drop (31.2.2 )
• The drops when provided shall be rectangular in plan, and have a length in each
direction not less than one third of the panel length in that direction.
• For exterior panels, the width of drops at right angles to the non continuous edge
and measured from the centre line of the columns shall be equal to one-half the
width of drop for interior panels.
• Minimum thickness of Drop
> ¼ of Slab thickness or
> 100 mm
3. Column Heads (31.2.3)
• Where column heads are provided, that portion of a column head which lies
within the largest right circular cone or pyramid that has a vertex angle of
90°and can be included entirely within the outlines of the column and the
column head, shall be considered for design purposes.
Determination of Bending Moment (CL 31.3)
Methods of Analysis and Design (31.3.1.)
It shall be permissible to design the slab system by one of the
following methods:
a) The direct design method as specified in 31.4
b) b) The equivalent frame method as specified in 31.5. In each case
the applicable limitations given in 31.4 and 31.5 shall be met.
Direct Design Method (31.4)
A. Limitations : 31.4.1
Slab system designed by the direct design method shall fulfil the following
conditions:
a) There shall be minimum of three continuous spans in each direction
b) The panels shall be rectangular, and the ratio of the longer span to the shorter
span within a panel shall not be greater than 2.0
c) It shall be permissible to offset columns to a maximum of 10percent of the
span in the direction of the offset not withstanding the provision in (b)
d) The successive span lengths in each direction shall not differ by more than one-
third of the longer span.
e) The end spans may be shorter but not longer than the interior spans
f) The design live load shall not exceed three times the design dead load.

More Related Content

What's hot

Cable strucutres(presentation)
Cable strucutres(presentation)Cable strucutres(presentation)
Cable strucutres(presentation)Waseem Akbar
 
Composite construction or Composite Structure/Frame
Composite construction or Composite Structure/FrameComposite construction or Composite Structure/Frame
Composite construction or Composite Structure/FrameAbdul Rahman
 
Flat Grid / Waffle Slab
Flat Grid / Waffle SlabFlat Grid / Waffle Slab
Flat Grid / Waffle SlabAkshay Gawade
 
Diaphragm walls
Diaphragm wallsDiaphragm walls
Diaphragm wallsNeha Vivek
 
Prefabrication​ structure ppt
Prefabrication​ structure pptPrefabrication​ structure ppt
Prefabrication​ structure pptAbhishekM45
 
Advance structural system. pptx
Advance structural system. pptxAdvance structural system. pptx
Advance structural system. pptxShivani Nandgowle
 
Speedy construction presentation
Speedy construction presentationSpeedy construction presentation
Speedy construction presentationsomitra bhardwaj
 
Diagrid structural system
Diagrid structural systemDiagrid structural system
Diagrid structural systemvivek bhathee
 
Flat slab and it's importance
Flat slab and it's importanceFlat slab and it's importance
Flat slab and it's importanceGEOMIND
 
Introduction to prestressed concrete structures
Introduction to prestressed concrete structuresIntroduction to prestressed concrete structures
Introduction to prestressed concrete structuresPraveenKumar Shanmugam
 
Precast concrete construction
Precast concrete constructionPrecast concrete construction
Precast concrete constructionMadan Mohan Jana
 
Flat plate slab design (10.01.03.052)
Flat plate slab design (10.01.03.052)Flat plate slab design (10.01.03.052)
Flat plate slab design (10.01.03.052)Yeasir Gerrard
 
Cavity walls, Building construction, passive cooling
Cavity walls, Building construction, passive coolingCavity walls, Building construction, passive cooling
Cavity walls, Building construction, passive coolingDhvaniR2
 

What's hot (20)

Shells
ShellsShells
Shells
 
Waffle slab
Waffle slabWaffle slab
Waffle slab
 
Cable strucutres(presentation)
Cable strucutres(presentation)Cable strucutres(presentation)
Cable strucutres(presentation)
 
Composite construction or Composite Structure/Frame
Composite construction or Composite Structure/FrameComposite construction or Composite Structure/Frame
Composite construction or Composite Structure/Frame
 
Foundations
FoundationsFoundations
Foundations
 
Flat Grid / Waffle Slab
Flat Grid / Waffle SlabFlat Grid / Waffle Slab
Flat Grid / Waffle Slab
 
Diaphragm walls
Diaphragm wallsDiaphragm walls
Diaphragm walls
 
Prefabrication​ structure ppt
Prefabrication​ structure pptPrefabrication​ structure ppt
Prefabrication​ structure ppt
 
Advance structural system. pptx
Advance structural system. pptxAdvance structural system. pptx
Advance structural system. pptx
 
Speedy construction presentation
Speedy construction presentationSpeedy construction presentation
Speedy construction presentation
 
Diagrid structural system
Diagrid structural systemDiagrid structural system
Diagrid structural system
 
ONE WAY SLAB DESIGN
ONE WAY SLAB DESIGNONE WAY SLAB DESIGN
ONE WAY SLAB DESIGN
 
Flat slab and it's importance
Flat slab and it's importanceFlat slab and it's importance
Flat slab and it's importance
 
Introduction to prestressed concrete structures
Introduction to prestressed concrete structuresIntroduction to prestressed concrete structures
Introduction to prestressed concrete structures
 
Slabs and types
Slabs and typesSlabs and types
Slabs and types
 
Combined footing 1-1-18
Combined footing 1-1-18Combined footing 1-1-18
Combined footing 1-1-18
 
Precast concrete construction
Precast concrete constructionPrecast concrete construction
Precast concrete construction
 
Flat plate slab design (10.01.03.052)
Flat plate slab design (10.01.03.052)Flat plate slab design (10.01.03.052)
Flat plate slab design (10.01.03.052)
 
Cavity walls, Building construction, passive cooling
Cavity walls, Building construction, passive coolingCavity walls, Building construction, passive cooling
Cavity walls, Building construction, passive cooling
 
Slipform
SlipformSlipform
Slipform
 

Viewers also liked

Design and detailing of flat slabs
Design and detailing of flat slabs Design and detailing of flat slabs
Design and detailing of flat slabs Godfrey James
 
Civil structural engineering - Flat slab design
Civil structural engineering -  Flat slab designCivil structural engineering -  Flat slab design
Civil structural engineering - Flat slab designSatish Narayan
 
Experimental study of precast portal frame
Experimental study of precast portal frameExperimental study of precast portal frame
Experimental study of precast portal frameSatish Kambaliya
 
Chapter 1 introduction of building construction
Chapter 1 introduction of building constructionChapter 1 introduction of building construction
Chapter 1 introduction of building constructionKHUSHBU SHAH
 
Retaining wall - design of reinforced concrete structure
Retaining wall - design of reinforced concrete structureRetaining wall - design of reinforced concrete structure
Retaining wall - design of reinforced concrete structureKavin Raval
 
Foot bridge presentation
Foot bridge presentationFoot bridge presentation
Foot bridge presentationTausif Kauswala
 
introduction of intze tank
introduction of intze tankintroduction of intze tank
introduction of intze tankjenish patel
 
Counterfort Retaining Wall
Counterfort Retaining WallCounterfort Retaining Wall
Counterfort Retaining WallKaizer Dave
 
basic structural system in architecture
basic structural system in architecturebasic structural system in architecture
basic structural system in architectureshahul130103
 
Design of overhead RCC rectangular water tank
Design of overhead RCC rectangular water tankDesign of overhead RCC rectangular water tank
Design of overhead RCC rectangular water tankShoaib Wani
 
Reinforced slab bridge design(AASHTO allowable stress design method)
Reinforced slab bridge design(AASHTO allowable stress design method)Reinforced slab bridge design(AASHTO allowable stress design method)
Reinforced slab bridge design(AASHTO allowable stress design method)Shekh Muhsen Uddin Ahmed
 
Collapse propagation in bridge structures. A semi-analytical model
Collapse propagation in bridge structures. A semi-analytical modelCollapse propagation in bridge structures. A semi-analytical model
Collapse propagation in bridge structures. A semi-analytical modelDCEE2017
 

Viewers also liked (20)

DESIGN OF FLAT SLABS
DESIGN OF FLAT SLABSDESIGN OF FLAT SLABS
DESIGN OF FLAT SLABS
 
Design and detailing of flat slabs
Design and detailing of flat slabs Design and detailing of flat slabs
Design and detailing of flat slabs
 
9 design-of-flat-slabs
9 design-of-flat-slabs9 design-of-flat-slabs
9 design-of-flat-slabs
 
Civil structural engineering - Flat slab design
Civil structural engineering -  Flat slab designCivil structural engineering -  Flat slab design
Civil structural engineering - Flat slab design
 
Experimental study of precast portal frame
Experimental study of precast portal frameExperimental study of precast portal frame
Experimental study of precast portal frame
 
Chapter 1 introduction of building construction
Chapter 1 introduction of building constructionChapter 1 introduction of building construction
Chapter 1 introduction of building construction
 
Retaining wall - design of reinforced concrete structure
Retaining wall - design of reinforced concrete structureRetaining wall - design of reinforced concrete structure
Retaining wall - design of reinforced concrete structure
 
Ppv ppt
Ppv pptPpv ppt
Ppv ppt
 
Foot bridge presentation
Foot bridge presentationFoot bridge presentation
Foot bridge presentation
 
introduction of intze tank
introduction of intze tankintroduction of intze tank
introduction of intze tank
 
Hollow core slabs
Hollow core slabsHollow core slabs
Hollow core slabs
 
Hollow Floor Slab
Hollow Floor SlabHollow Floor Slab
Hollow Floor Slab
 
Counterfort Retaining Wall
Counterfort Retaining WallCounterfort Retaining Wall
Counterfort Retaining Wall
 
Watertank
WatertankWatertank
Watertank
 
Flat bottom Overhead Water tank
Flat bottom Overhead Water tankFlat bottom Overhead Water tank
Flat bottom Overhead Water tank
 
basic structural system in architecture
basic structural system in architecturebasic structural system in architecture
basic structural system in architecture
 
Design of overhead RCC rectangular water tank
Design of overhead RCC rectangular water tankDesign of overhead RCC rectangular water tank
Design of overhead RCC rectangular water tank
 
235562808 coffered-slab
235562808 coffered-slab235562808 coffered-slab
235562808 coffered-slab
 
Reinforced slab bridge design(AASHTO allowable stress design method)
Reinforced slab bridge design(AASHTO allowable stress design method)Reinforced slab bridge design(AASHTO allowable stress design method)
Reinforced slab bridge design(AASHTO allowable stress design method)
 
Collapse propagation in bridge structures. A semi-analytical model
Collapse propagation in bridge structures. A semi-analytical modelCollapse propagation in bridge structures. A semi-analytical model
Collapse propagation in bridge structures. A semi-analytical model
 

Similar to Flat slab ppt

Design of two way slabs(d.d.m.)
Design of two way slabs(d.d.m.)Design of two way slabs(d.d.m.)
Design of two way slabs(d.d.m.)Malika khalil
 
Design of concrete Structure 2
Design of concrete Structure 2Design of concrete Structure 2
Design of concrete Structure 2SHARIQUE AHMAD
 
Design Of Flat Slab
Design Of Flat Slab Design Of Flat Slab
Design Of Flat Slab Abdul Sahid
 
Medium span rcc flooring systems
Medium span rcc flooring systemsMedium span rcc flooring systems
Medium span rcc flooring systemsRishikesh Kalal
 
A Critical Review of Flat Slabs under different parameters
A Critical Review of Flat Slabs under different parametersA Critical Review of Flat Slabs under different parameters
A Critical Review of Flat Slabs under different parametersIRJET Journal
 
Lec05 Design of Rectangular Beams with Tension Steel only (Reinforced Concret...
Lec05 Design of Rectangular Beams with Tension Steel only (Reinforced Concret...Lec05 Design of Rectangular Beams with Tension Steel only (Reinforced Concret...
Lec05 Design of Rectangular Beams with Tension Steel only (Reinforced Concret...Hossam Shafiq II
 
Slabs -Design steps
Slabs -Design steps Slabs -Design steps
Slabs -Design steps rohinibjn
 
Basic rules for rcc design
Basic rules for rcc designBasic rules for rcc design
Basic rules for rcc designMandar Nadgaundi
 
Introduction to design of rcc column
Introduction to design of rcc columnIntroduction to design of rcc column
Introduction to design of rcc columnPHURTSHERINGSHERPA
 
Long span structures
Long span structures  Long span structures
Long span structures Aroh Thombre
 

Similar to Flat slab ppt (20)

flat Slab
flat Slabflat Slab
flat Slab
 
Design of two way slabs(d.d.m.)
Design of two way slabs(d.d.m.)Design of two way slabs(d.d.m.)
Design of two way slabs(d.d.m.)
 
Design of concrete Structure 2
Design of concrete Structure 2Design of concrete Structure 2
Design of concrete Structure 2
 
Design Of Flat Slab
Design Of Flat Slab Design Of Flat Slab
Design Of Flat Slab
 
Flat_slab.pptx
Flat_slab.pptxFlat_slab.pptx
Flat_slab.pptx
 
Medium span rcc flooring systems
Medium span rcc flooring systemsMedium span rcc flooring systems
Medium span rcc flooring systems
 
Floor systems
Floor systemsFloor systems
Floor systems
 
A Critical Review of Flat Slabs under different parameters
A Critical Review of Flat Slabs under different parametersA Critical Review of Flat Slabs under different parameters
A Critical Review of Flat Slabs under different parameters
 
Lec05 Design of Rectangular Beams with Tension Steel only (Reinforced Concret...
Lec05 Design of Rectangular Beams with Tension Steel only (Reinforced Concret...Lec05 Design of Rectangular Beams with Tension Steel only (Reinforced Concret...
Lec05 Design of Rectangular Beams with Tension Steel only (Reinforced Concret...
 
Slabs -Design steps
Slabs -Design steps Slabs -Design steps
Slabs -Design steps
 
Design of One-Way Slab
Design of One-Way SlabDesign of One-Way Slab
Design of One-Way Slab
 
Ductile detailing
Ductile detailingDuctile detailing
Ductile detailing
 
Basic rules for rcc design
Basic rules for rcc designBasic rules for rcc design
Basic rules for rcc design
 
Design of floor slab
Design of floor slabDesign of floor slab
Design of floor slab
 
Introduction to design of rcc column
Introduction to design of rcc columnIntroduction to design of rcc column
Introduction to design of rcc column
 
slab
slabslab
slab
 
Lecture note on column design
Lecture note on column designLecture note on column design
Lecture note on column design
 
Long span structures
Long span structures  Long span structures
Long span structures
 
Reinforced column design
Reinforced column design Reinforced column design
Reinforced column design
 
Reinforced concrete column
Reinforced concrete columnReinforced concrete column
Reinforced concrete column
 

Recently uploaded

Python Programming for basic beginners.pptx
Python Programming for basic beginners.pptxPython Programming for basic beginners.pptx
Python Programming for basic beginners.pptxmohitesoham12
 
Module-1-Building Acoustics(Introduction)(Unit-1).pdf
Module-1-Building Acoustics(Introduction)(Unit-1).pdfModule-1-Building Acoustics(Introduction)(Unit-1).pdf
Module-1-Building Acoustics(Introduction)(Unit-1).pdfManish Kumar
 
SOFTWARE ESTIMATION COCOMO AND FP CALCULATION
SOFTWARE ESTIMATION COCOMO AND FP CALCULATIONSOFTWARE ESTIMATION COCOMO AND FP CALCULATION
SOFTWARE ESTIMATION COCOMO AND FP CALCULATIONSneha Padhiar
 
Robotics Group 10 (Control Schemes) cse.pdf
Robotics Group 10  (Control Schemes) cse.pdfRobotics Group 10  (Control Schemes) cse.pdf
Robotics Group 10 (Control Schemes) cse.pdfsahilsajad201
 
tourism-management-srs_compress-software-engineering.pdf
tourism-management-srs_compress-software-engineering.pdftourism-management-srs_compress-software-engineering.pdf
tourism-management-srs_compress-software-engineering.pdfchess188chess188
 
Triangulation survey (Basic Mine Surveying)_MI10412MI.pptx
Triangulation survey (Basic Mine Surveying)_MI10412MI.pptxTriangulation survey (Basic Mine Surveying)_MI10412MI.pptx
Triangulation survey (Basic Mine Surveying)_MI10412MI.pptxRomil Mishra
 
The Satellite applications in telecommunication
The Satellite applications in telecommunicationThe Satellite applications in telecommunication
The Satellite applications in telecommunicationnovrain7111
 
TEST CASE GENERATION GENERATION BLOCK BOX APPROACH
TEST CASE GENERATION GENERATION BLOCK BOX APPROACHTEST CASE GENERATION GENERATION BLOCK BOX APPROACH
TEST CASE GENERATION GENERATION BLOCK BOX APPROACHSneha Padhiar
 
Theory of Machine Notes / Lecture Material .pdf
Theory of Machine Notes / Lecture Material .pdfTheory of Machine Notes / Lecture Material .pdf
Theory of Machine Notes / Lecture Material .pdfShreyas Pandit
 
Comprehensive energy systems.pdf Comprehensive energy systems.pdf
Comprehensive energy systems.pdf Comprehensive energy systems.pdfComprehensive energy systems.pdf Comprehensive energy systems.pdf
Comprehensive energy systems.pdf Comprehensive energy systems.pdfalene1
 
Immutable Image-Based Operating Systems - EW2024.pdf
Immutable Image-Based Operating Systems - EW2024.pdfImmutable Image-Based Operating Systems - EW2024.pdf
Immutable Image-Based Operating Systems - EW2024.pdfDrew Moseley
 
Novel 3D-Printed Soft Linear and Bending Actuators
Novel 3D-Printed Soft Linear and Bending ActuatorsNovel 3D-Printed Soft Linear and Bending Actuators
Novel 3D-Printed Soft Linear and Bending ActuatorsResearcher Researcher
 
70 POWER PLANT IAE V2500 technical training
70 POWER PLANT IAE V2500 technical training70 POWER PLANT IAE V2500 technical training
70 POWER PLANT IAE V2500 technical trainingGladiatorsKasper
 
FUNCTIONAL AND NON FUNCTIONAL REQUIREMENT
FUNCTIONAL AND NON FUNCTIONAL REQUIREMENTFUNCTIONAL AND NON FUNCTIONAL REQUIREMENT
FUNCTIONAL AND NON FUNCTIONAL REQUIREMENTSneha Padhiar
 
STATE TRANSITION DIAGRAM in psoc subject
STATE TRANSITION DIAGRAM in psoc subjectSTATE TRANSITION DIAGRAM in psoc subject
STATE TRANSITION DIAGRAM in psoc subjectGayathriM270621
 
multiple access in wireless communication
multiple access in wireless communicationmultiple access in wireless communication
multiple access in wireless communicationpanditadesh123
 
Indian Tradition, Culture & Societies.pdf
Indian Tradition, Culture & Societies.pdfIndian Tradition, Culture & Societies.pdf
Indian Tradition, Culture & Societies.pdfalokitpathak01
 
Substation Automation SCADA and Gateway Solutions by BRH
Substation Automation SCADA and Gateway Solutions by BRHSubstation Automation SCADA and Gateway Solutions by BRH
Substation Automation SCADA and Gateway Solutions by BRHbirinder2
 
Robotics-Asimov's Laws, Mechanical Subsystems, Robot Kinematics, Robot Dynami...
Robotics-Asimov's Laws, Mechanical Subsystems, Robot Kinematics, Robot Dynami...Robotics-Asimov's Laws, Mechanical Subsystems, Robot Kinematics, Robot Dynami...
Robotics-Asimov's Laws, Mechanical Subsystems, Robot Kinematics, Robot Dynami...Sumanth A
 

Recently uploaded (20)

Python Programming for basic beginners.pptx
Python Programming for basic beginners.pptxPython Programming for basic beginners.pptx
Python Programming for basic beginners.pptx
 
Module-1-Building Acoustics(Introduction)(Unit-1).pdf
Module-1-Building Acoustics(Introduction)(Unit-1).pdfModule-1-Building Acoustics(Introduction)(Unit-1).pdf
Module-1-Building Acoustics(Introduction)(Unit-1).pdf
 
SOFTWARE ESTIMATION COCOMO AND FP CALCULATION
SOFTWARE ESTIMATION COCOMO AND FP CALCULATIONSOFTWARE ESTIMATION COCOMO AND FP CALCULATION
SOFTWARE ESTIMATION COCOMO AND FP CALCULATION
 
Robotics Group 10 (Control Schemes) cse.pdf
Robotics Group 10  (Control Schemes) cse.pdfRobotics Group 10  (Control Schemes) cse.pdf
Robotics Group 10 (Control Schemes) cse.pdf
 
tourism-management-srs_compress-software-engineering.pdf
tourism-management-srs_compress-software-engineering.pdftourism-management-srs_compress-software-engineering.pdf
tourism-management-srs_compress-software-engineering.pdf
 
Triangulation survey (Basic Mine Surveying)_MI10412MI.pptx
Triangulation survey (Basic Mine Surveying)_MI10412MI.pptxTriangulation survey (Basic Mine Surveying)_MI10412MI.pptx
Triangulation survey (Basic Mine Surveying)_MI10412MI.pptx
 
The Satellite applications in telecommunication
The Satellite applications in telecommunicationThe Satellite applications in telecommunication
The Satellite applications in telecommunication
 
TEST CASE GENERATION GENERATION BLOCK BOX APPROACH
TEST CASE GENERATION GENERATION BLOCK BOX APPROACHTEST CASE GENERATION GENERATION BLOCK BOX APPROACH
TEST CASE GENERATION GENERATION BLOCK BOX APPROACH
 
Theory of Machine Notes / Lecture Material .pdf
Theory of Machine Notes / Lecture Material .pdfTheory of Machine Notes / Lecture Material .pdf
Theory of Machine Notes / Lecture Material .pdf
 
Comprehensive energy systems.pdf Comprehensive energy systems.pdf
Comprehensive energy systems.pdf Comprehensive energy systems.pdfComprehensive energy systems.pdf Comprehensive energy systems.pdf
Comprehensive energy systems.pdf Comprehensive energy systems.pdf
 
Immutable Image-Based Operating Systems - EW2024.pdf
Immutable Image-Based Operating Systems - EW2024.pdfImmutable Image-Based Operating Systems - EW2024.pdf
Immutable Image-Based Operating Systems - EW2024.pdf
 
Novel 3D-Printed Soft Linear and Bending Actuators
Novel 3D-Printed Soft Linear and Bending ActuatorsNovel 3D-Printed Soft Linear and Bending Actuators
Novel 3D-Printed Soft Linear and Bending Actuators
 
Designing pile caps according to ACI 318-19.pptx
Designing pile caps according to ACI 318-19.pptxDesigning pile caps according to ACI 318-19.pptx
Designing pile caps according to ACI 318-19.pptx
 
70 POWER PLANT IAE V2500 technical training
70 POWER PLANT IAE V2500 technical training70 POWER PLANT IAE V2500 technical training
70 POWER PLANT IAE V2500 technical training
 
FUNCTIONAL AND NON FUNCTIONAL REQUIREMENT
FUNCTIONAL AND NON FUNCTIONAL REQUIREMENTFUNCTIONAL AND NON FUNCTIONAL REQUIREMENT
FUNCTIONAL AND NON FUNCTIONAL REQUIREMENT
 
STATE TRANSITION DIAGRAM in psoc subject
STATE TRANSITION DIAGRAM in psoc subjectSTATE TRANSITION DIAGRAM in psoc subject
STATE TRANSITION DIAGRAM in psoc subject
 
multiple access in wireless communication
multiple access in wireless communicationmultiple access in wireless communication
multiple access in wireless communication
 
Indian Tradition, Culture & Societies.pdf
Indian Tradition, Culture & Societies.pdfIndian Tradition, Culture & Societies.pdf
Indian Tradition, Culture & Societies.pdf
 
Substation Automation SCADA and Gateway Solutions by BRH
Substation Automation SCADA and Gateway Solutions by BRHSubstation Automation SCADA and Gateway Solutions by BRH
Substation Automation SCADA and Gateway Solutions by BRH
 
Robotics-Asimov's Laws, Mechanical Subsystems, Robot Kinematics, Robot Dynami...
Robotics-Asimov's Laws, Mechanical Subsystems, Robot Kinematics, Robot Dynami...Robotics-Asimov's Laws, Mechanical Subsystems, Robot Kinematics, Robot Dynami...
Robotics-Asimov's Laws, Mechanical Subsystems, Robot Kinematics, Robot Dynami...
 

Flat slab ppt

  • 1. Design of Flat Slab S.Nancy Debora Assistant Professor (Civil) Karunya University
  • 2. FLAT SLAB Flat slab are also known as beamless slab, is a type of slab in which the flooring slab is directly supported on columns without the agency of beam or girders. For span from 5 to 9m thin flat slabs are the preferred solution for the construction of in- situ concrete frame building, where a square or near square grid is used. They are provided in theatres, factories, and mills, shopping complex and other buildings.
  • 5.
  • 6. Uses of Components of Flat slab
  • 7. Benefits of Flat Slab • Flexibility in room layout • Saving in building height • Shorter construction time • Prefabricated welded mesh Building Height Form work Welded mesh
  • 8. PUNCHING SHEAR • always a critical consideration in flat plate design around the columns • instead of using thicker section, shear reinforcement in the form of shear heads, shear studs or stirrup cages may be embedded in the slab to enhance shear capacity at the edges of walls and columns Shear Studs
  • 9. Column Strip and Middle strip • Column Strip means a design strip having a width of 0.25L1 or 0.25L2,whichever is less. • The remaining middle portion which is bound by the column strips is called middle strip.
  • 10. General Design Considerations (CL 31.2) 1. Thickness of Flat Slab (31.2.1 ) • The thickness of the flat slab shall be generally controlled by considerations of span to effective depth ratios given in 23.2. = 40,if mild steel is used = 32, if HYSD bars are used • For slabs with drops the span to effective depth ratios obtained in accordance with provisions in 23.2 shall be multiplied by 0.9. = 40x0.9 = 36,if mild steel is used = 32x0.9 = 28.8, if HYSD bars are used • For this purpose, the longer span shall be considered. • The minimum thickness of slab shall be 125
  • 11. 2. Drop (31.2.2 ) • The drops when provided shall be rectangular in plan, and have a length in each direction not less than one third of the panel length in that direction. • For exterior panels, the width of drops at right angles to the non continuous edge and measured from the centre line of the columns shall be equal to one-half the width of drop for interior panels. • Minimum thickness of Drop > ¼ of Slab thickness or > 100 mm
  • 12. 3. Column Heads (31.2.3) • Where column heads are provided, that portion of a column head which lies within the largest right circular cone or pyramid that has a vertex angle of 90°and can be included entirely within the outlines of the column and the column head, shall be considered for design purposes.
  • 13. Determination of Bending Moment (CL 31.3) Methods of Analysis and Design (31.3.1.) It shall be permissible to design the slab system by one of the following methods: a) The direct design method as specified in 31.4 b) b) The equivalent frame method as specified in 31.5. In each case the applicable limitations given in 31.4 and 31.5 shall be met.
  • 14. Direct Design Method (31.4) A. Limitations : 31.4.1 Slab system designed by the direct design method shall fulfil the following conditions: a) There shall be minimum of three continuous spans in each direction b) The panels shall be rectangular, and the ratio of the longer span to the shorter span within a panel shall not be greater than 2.0 c) It shall be permissible to offset columns to a maximum of 10percent of the span in the direction of the offset not withstanding the provision in (b) d) The successive span lengths in each direction shall not differ by more than one- third of the longer span. e) The end spans may be shorter but not longer than the interior spans f) The design live load shall not exceed three times the design dead load.