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BUBBLE DECK SLAB
CONTENTS
 Introduction
 Materials
 Advantages
 Experimental Study
 Scope of Future
 Conclusion
BACKGROUND
Compression
zone
Tensile zone
Central portion of RCC solid slab
(simply supported)
Problems with inactive concrete:
additional weight,
span limitations,
material wastage,
energy consumption
 Pre fabricated one way spanning concrete elements with
hollow cylinders, replacing inactive concrete
HOLLOW CORE SLABS
Problems:
Strength in one direction only
Inflexibility
Reduced architectural possibilities
Lack of structural integrity
BUBBLE DECK SLAB
 The best solution for above two problems is Bubble
Deck Slab
 Bubble Deck Slab is a Biaxial voided concrete slab
in which high density polythene hollow spheres
replace the ineffective concrete in the centre of
concrete slab.
WHY BUBBLE DECK SLAB ?
Flat slab technology
(no need of beams )
Longer spans
Pre fabricated
&
cast in-situ
No compromise for strength&
serviceability
MATERIALS
PLASTIC SPHERES
hollow spheres made
from recycled high density
polyethylene
• Enough strength &
rigidity
• Not porous
• Doesn’t react
chemically with
concrete or steel
CONCRETE-the concrete is made of
standard Portland cement with max
aggregate size of
¾ inch.
STEEL –The steel
reinforcement is of MS or
HYSD can be used..
ADVANTAGES
Structural
Less weight
Increased strength
No need of beams
Only few columns required
Larger span
Free choice of Shape
Less foundation depth
Less excavation
required
15 m
ADVANTAGES
Construction
Light in weight less equipment is required
Easy incorporation of ducts and pipes into slab
Less work on construction site
Engineering
The biaxial flat slab system and columns are ideal
for structures with high resistance against
Explosions
These slabs and column system acts as an elastic
membrane which transfer horizontal forces to stiff
vertical structures which is used for Earthquake
resistant designs
ADVANTAGES
Environment
Less material and energy consumption
Reducing CO2 emission up to 40 kg/m2
1kg of plastic replaces 100kg of concrete
Every component can be recycled
Economy
Savings in materials
Transportation costs reduced
Faster construction time
Buildings can be more flexible and easy in
installations
EXPERIMENTAL STUDIES
1.Shear strength- 80% of solid deck slab
2.Deflections - same as solid deck
3.Weight - 40% less than a solid slab
4.Fire resistance - 65% of solid slab
MILLENNIUM TOWER
(ROTTERDAM)
First high rise building
erected with Bubble Deck
Height of the building is 131 m
Second Highest building in
Netherlands
34 stories were constructed
SCOPE OF FUTURE USE
 Used for constructing all types of building especially
sky scrapers
 Best for larger span halls like theatres and
auditoriums
 Pedestrian bridge decks
 Used in parking areas as less number of columns
are required
CONCLUSION
Obviously this intellectual slab design may
become the future of slab construction
which gives a tremendous contribution in
Sustainable development
THANK YOU
For your attention

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Bubble deck slab

  • 2. CONTENTS  Introduction  Materials  Advantages  Experimental Study  Scope of Future  Conclusion
  • 3. BACKGROUND Compression zone Tensile zone Central portion of RCC solid slab (simply supported) Problems with inactive concrete: additional weight, span limitations, material wastage, energy consumption
  • 4.  Pre fabricated one way spanning concrete elements with hollow cylinders, replacing inactive concrete HOLLOW CORE SLABS Problems: Strength in one direction only Inflexibility Reduced architectural possibilities Lack of structural integrity
  • 5. BUBBLE DECK SLAB  The best solution for above two problems is Bubble Deck Slab  Bubble Deck Slab is a Biaxial voided concrete slab in which high density polythene hollow spheres replace the ineffective concrete in the centre of concrete slab.
  • 6. WHY BUBBLE DECK SLAB ? Flat slab technology (no need of beams ) Longer spans Pre fabricated & cast in-situ No compromise for strength& serviceability
  • 7. MATERIALS PLASTIC SPHERES hollow spheres made from recycled high density polyethylene • Enough strength & rigidity • Not porous • Doesn’t react chemically with concrete or steel CONCRETE-the concrete is made of standard Portland cement with max aggregate size of ¾ inch. STEEL –The steel reinforcement is of MS or HYSD can be used..
  • 8. ADVANTAGES Structural Less weight Increased strength No need of beams Only few columns required Larger span Free choice of Shape Less foundation depth Less excavation required 15 m
  • 9. ADVANTAGES Construction Light in weight less equipment is required Easy incorporation of ducts and pipes into slab Less work on construction site Engineering The biaxial flat slab system and columns are ideal for structures with high resistance against Explosions These slabs and column system acts as an elastic membrane which transfer horizontal forces to stiff vertical structures which is used for Earthquake resistant designs
  • 10. ADVANTAGES Environment Less material and energy consumption Reducing CO2 emission up to 40 kg/m2 1kg of plastic replaces 100kg of concrete Every component can be recycled Economy Savings in materials Transportation costs reduced Faster construction time Buildings can be more flexible and easy in installations
  • 11. EXPERIMENTAL STUDIES 1.Shear strength- 80% of solid deck slab 2.Deflections - same as solid deck 3.Weight - 40% less than a solid slab 4.Fire resistance - 65% of solid slab
  • 12. MILLENNIUM TOWER (ROTTERDAM) First high rise building erected with Bubble Deck Height of the building is 131 m Second Highest building in Netherlands 34 stories were constructed
  • 13. SCOPE OF FUTURE USE  Used for constructing all types of building especially sky scrapers  Best for larger span halls like theatres and auditoriums  Pedestrian bridge decks  Used in parking areas as less number of columns are required
  • 14. CONCLUSION Obviously this intellectual slab design may become the future of slab construction which gives a tremendous contribution in Sustainable development
  • 15. THANK YOU For your attention