SlideShare a Scribd company logo
1 of 27
POLYMER ROAD TECHNOLOGY
PRESENTED BY
NIKHIL BHOLE (63020)
Guided By:
Prof. Anupama .A. Bellakki
ROAD-MAP
• Introduction
• Stabilization by Polymer products
• Polymer products used for stabilization and road technology
• Road Preliminaries
• Construction Overview
• Role of Plastic wastes in development
• Key Benefits of Polymer Road Technology
• Conclusion
• References
INTRODUCTION
• Road network plays important role in development of the country. Thus it should consist of best
possible infrastructure in all aspects.
• Therefore it is necessary to consider geological aspects and implement necessary modifications
in them.
• Modification in soil properties should be done in order to eliminate compatibility issues, and
make it economical and environmental friendly.
• Use of Plastic wastes in road construction will benefit the ecology.
1. STABILIZATION
What is stabilization?
• A process in which small quantities of additive(s) (polymers) is used and added to the existing
materials which can significantly improve the normal engineering properties of soils, crushed
rocks and gravels e.g. CBR, permeability and strength.
How to carry out stabilization?
• Usually carry out in-situ
• Sometimes in a centralized processing plant
Stabilization Technique :
• Stabilizing agent preserves strength of water susceptible gravels by creating a hydrophobic soil
matrix between the stones which reduces permeability and limits water ingress ( External
Water-proofing ).
• Also the softening and lubricating effect of any moisture that does enter the pavement is much
reduced ( Internal Water-proofing ).
Why stabilization must be carried out by polymer ?
• Cyclic load(repetitive & reversal) from traffic caused fatigue failures in pavement
• Above factors render original soil-stabilization less suitable today
• Conventional soil-stabilization susceptible to sulphate attack and proved inappropriate for
clayey soils containing excessive fines(> 35% passing the No. 200 sieve) and of high plasticity
(P.I. > 10)
• All these suggest modification(s) to original soil-stabilization is necessary in order to meet critical
needs of pavements today.
• Tests by renown laboratory, full-scale test pavements and in-service pavements have confirmed
the suitability of various polymer products / solutions as a modifier.
1.4 How Polymer modify Soil-Stabilization?
• Increase modulus of elasticity through connecting cement-coated soil particles by numerous
‘micro-rubber bands’
• The water-holding nature is useful during curing process
• Protect soil-stabilization against harmful effects of chemical compounds in soil, e.g. sulphate
• Prevent penetration and capillary rise of water within soil-stabilization
• Reduce the effects of moisture migration – a major cause of pavement deterioration
Polymer “micro rubberbands”
Advantages:
 Minimal use of chemical
 Efficient & rapid construction
 Reduced energy consumption
 Environmentally sound
 Existing materials can be used
 Reduces susceptibility to water
 Well proven process
Associated terms with Stabilization :
2. POLYMERS USED FOR STABILIZATION
• Compatibility Measures :
Polymer should be :
- Water based
- Non-toxic
- Non-flammable
- Non-leaching
- Economically preventive or EPA compliant
- No dangerous levels of volatile organic compounds
• Other physical properties are :
Boiling Point - 100 C
Specific Gravity @25C : 1.00 – 1.02
Viscosity @25C : 1,200 – 2,000 cps
Miscible in water
pH value @25C : 11.0 – 12.5
Some widely used polymer products in soil stabilization or
road technology are :
 CORCHEM 5510 Soil Polymer Enzyme
- CORCHEM Corporation ( USA )
 Water based Acrylic Polymers
- Constructive Innovations ( UK )
 IPPL :
a). IPPL SS-IX : Polymer soil stabilizer
b). IPPL AT-X : Polymer based asphalt
c). IPPL PT-V : Potholes repairing
d). IPPL DT-II : Eliminate dust, Dust suppressant
e). IPPL STA : Sealing and water-proofing
 Renolith :
- International Renolith Corporation Ltd. ( Thailand )
 TerraDura Polymer Emulsion : Soil stabilization Technology
- NCI Worldwide ( USA )
 Soiltech MK-III : Nano polymer stabilizer
- Polypavements ( South Africa ) and IPPL ( India )
 Terratech :
a). T-PRO 400HT : Soil stabilization Technology
b). T-PRO 500 : Soil stabilization Technology
Road Preliminaries
Polymer Pavement Construction Overview
• Pavement is outlined and pegged to get proper alignment.
• Modification of soil is undertaken (if required).
• Based on the resources established at site, add Polymer stabilizer to
the Water in the Browser.
• This Admixture of Polymer stabilizer and water is sprayed to the ripped pavement and
evenly distributed throughout the pavement material.
• Pulverization on the SSB Pavement after applying the stabilizer admixture.
• Pavement is profiled (to design alignment).
• Pavement compacted to min. 98% of maximum dry density (MDD) and verify in-situ.
• Pavement is open to traffic after 3 days.
• Wearing surface - Bitumen layer is added within 5-7 days.
Construction Machineries and Equipment's
• Hydraulic Motor Grader with back-end ripper
• Tractor with Ripper/Cultivator optional to Hydraulic Motor Grader
with back-end ripper or Pulveriser Machine
• Water Browser with min. carrying capacity of 4000/12000 litres
with attached sprinkler pump
• Vibratory soil compactor 11 ton capacity Survey equipment set
• D.C.P., N.D.G. testing equipment and Moisture meter
Grader and Spreader
Vibro Roller
Pavement Preparation
• Scarify the existing surface and remove tree roots, stumps and
vegetation.
• Remove loose debris if any.
• Dump & Spread the SSB Mix material over the Subgrade /GSB top
layers as required.
• Remove loose debris if any.
• Rip/Furrow the surface to desired depth.
• Remove all particles above the standard grading analysis
Tripper / dumper
Polymer sprinkler
Role of Plastic wastes in development
• Plastic wastes can also be used in construction
of roads in economical ways, leading to
environmental safety.
• They are processed by following basic
processes :
1. Segregation .
2. Cleaning process .
3. Shredding process .
4. Collection process .
Segregation process cleaning process
shredding process collected plastic
Key Benefits of Polymer Road Technology
• Reduce the need of bitumen by around 10%.
• Reduce the cost to around Rs. 5000/Km. of single lane road.
• Generate jobs for rag pickers.
• Substantial reduction in construction time
• Significant reduction in quarry materials
• Subsequent reduction in construction cost
• Environmental friendly technology
• Superior soil properties
• Toxicity effect is zero
CONCLUSION
• POLYMER modified soil-cement (or RC-Soils) are a well proven soil stabilization process.
• Plastic will increase the melting point of the bitumen .
• A change in today’s traffic loading conditions as compared to previous; notably high traffic
volume and heavy axle load have rendered modification of the conventional soil-cement most
necessary, if not a must.
• The technique is appropriate for new pavement construction, pavement rehabilitation and
recycling works for maintenance.
• Plastic road would be a boon for India’s hot and extremely humid climate where durable and
eco-friendly roads which will relive the earth from all type of plastic waste
• This method reduces the dependence and reliance on outside imported quarry
products and/or borrowed soil materials during pavement construction. Consequently,
it represents not only a time saving solution but also an environmental sustainable &
friendly construction and maintenance approach.
• Better homogeneity is achieved through more efficient mixing process and also higher and more
predictable output capacity are realizable. All these are necessary to ensure that desired design
outcomes are achieved.
References
• Kumar .V,”Design and construction of haul roads using polymer stabilizers University of
Alberta, MSc. Thesis (2000).
• Nabil Mustafa, “Plastics Waste Management”, Canadian Plastics Institute, Toronto, Canada,
Marcel Dekker, Inc. (1993).
• Vasudevan .R, “Utilisation of waste plastics for flexible pavement”, Indian Highways (Indian
Road Congress), Vol. 34, No. 7 (July 2006).
• Oliver, J.W.H., “Development of a Heavy Duty 14mm Mix for Main Roads”, WA. Contract
report for Main Roads Western Australia Report RC6052A ARRB Transport Research,
Australia (April 1998).
• Hagos, ET, “Characterisation of Polymer Modified Bitumen”, Dienst Weg, Netherland (2002).
• Marais, CM, “Advances in the Design and Application of Bituminous Materials in Road
Construction”, University of Natal, (November 1979) PhD.
THANK YOU

More Related Content

What's hot

use of waste plastics for road construction
use of waste plastics for road constructionuse of waste plastics for road construction
use of waste plastics for road construction
translateds
 
POLYMER MODIFIED BITUMEN
POLYMER MODIFIED BITUMENPOLYMER MODIFIED BITUMEN
POLYMER MODIFIED BITUMEN
Nitesh Jha
 

What's hot (20)

Ready mix concrete
Ready mix concreteReady mix concrete
Ready mix concrete
 
Project presentation on flexible pavement by Harshit Prakash Garg
Project presentation on flexible pavement by Harshit Prakash GargProject presentation on flexible pavement by Harshit Prakash Garg
Project presentation on flexible pavement by Harshit Prakash Garg
 
Design flexible and rigid pavements
Design flexible and rigid pavementsDesign flexible and rigid pavements
Design flexible and rigid pavements
 
Pervious concrete
Pervious concretePervious concrete
Pervious concrete
 
Unit 5
Unit 5Unit 5
Unit 5
 
Cement stabilization of soils ppt
Cement stabilization of soils pptCement stabilization of soils ppt
Cement stabilization of soils ppt
 
Pavement failures and maintenance
Pavement failures and maintenancePavement failures and maintenance
Pavement failures and maintenance
 
PARTIAL REPLACEMENT OF COARSE AGGREGATE WITH WASTE CERAMIC TILE IN CONCRETE
PARTIAL REPLACEMENT OF COARSE AGGREGATE WITH WASTECERAMIC TILE IN CONCRETEPARTIAL REPLACEMENT OF COARSE AGGREGATE WITH WASTECERAMIC TILE IN CONCRETE
PARTIAL REPLACEMENT OF COARSE AGGREGATE WITH WASTE CERAMIC TILE IN CONCRETE
 
ROAD CONSTRUCTION(BITUMEN) SUMMER TRAINING REPORT
ROAD CONSTRUCTION(BITUMEN) SUMMER TRAINING REPORTROAD CONSTRUCTION(BITUMEN) SUMMER TRAINING REPORT
ROAD CONSTRUCTION(BITUMEN) SUMMER TRAINING REPORT
 
Rigid pavements
Rigid pavements Rigid pavements
Rigid pavements
 
DESIGN PROJECT FOR PAVEMENT
DESIGN PROJECT FOR PAVEMENTDESIGN PROJECT FOR PAVEMENT
DESIGN PROJECT FOR PAVEMENT
 
BITUMINOUS ROAD PPT
BITUMINOUS ROAD PPTBITUMINOUS ROAD PPT
BITUMINOUS ROAD PPT
 
use of waste plastics for road construction
use of waste plastics for road constructionuse of waste plastics for road construction
use of waste plastics for road construction
 
Soil stabilization
Soil stabilizationSoil stabilization
Soil stabilization
 
Dowel bars, tie bars and their design
Dowel bars, tie bars and their designDowel bars, tie bars and their design
Dowel bars, tie bars and their design
 
POLYMER MODIFIED BITUMEN
POLYMER MODIFIED BITUMENPOLYMER MODIFIED BITUMEN
POLYMER MODIFIED BITUMEN
 
Irc 37-2018
Irc 37-2018Irc 37-2018
Irc 37-2018
 
PQC concrete road
PQC concrete roadPQC concrete road
PQC concrete road
 
Concrete technology
Concrete technologyConcrete technology
Concrete technology
 
Self curing concrete
Self curing concreteSelf curing concrete
Self curing concrete
 

Viewers also liked

Advancements In Tack Coats 2011
Advancements In Tack Coats 2011Advancements In Tack Coats 2011
Advancements In Tack Coats 2011
dvaught97
 
Characterization of limestone waste for construction of flexible pavement
Characterization of limestone waste for construction of flexible pavementCharacterization of limestone waste for construction of flexible pavement
Characterization of limestone waste for construction of flexible pavement
eSAT Journals
 
Building Services 1 - Ventilation in Heritage Building
Building Services 1 - Ventilation in Heritage BuildingBuilding Services 1 - Ventilation in Heritage Building
Building Services 1 - Ventilation in Heritage Building
Afiqah Zariful
 

Viewers also liked (18)

Advancements In Tack Coats 2011
Advancements In Tack Coats 2011Advancements In Tack Coats 2011
Advancements In Tack Coats 2011
 
Epav next generarion concrete surface (ingles)
Epav   next generarion concrete surface (ingles)Epav   next generarion concrete surface (ingles)
Epav next generarion concrete surface (ingles)
 
Estimating Highway Pavement Damage Costs Attributed to Truck Traffic
Estimating Highway Pavement Damage Costs Attributed to Truck TrafficEstimating Highway Pavement Damage Costs Attributed to Truck Traffic
Estimating Highway Pavement Damage Costs Attributed to Truck Traffic
 
Characterization of limestone waste for construction of flexible pavement
Characterization of limestone waste for construction of flexible pavementCharacterization of limestone waste for construction of flexible pavement
Characterization of limestone waste for construction of flexible pavement
 
Session 27 Björn Birgisson
Session 27 Björn BirgissonSession 27 Björn Birgisson
Session 27 Björn Birgisson
 
Porous Pavement in Cold Climates Part 2
Porous Pavement in Cold Climates Part 2Porous Pavement in Cold Climates Part 2
Porous Pavement in Cold Climates Part 2
 
Permeable Paving
Permeable PavingPermeable Paving
Permeable Paving
 
Bloody Pavement
Bloody PavementBloody Pavement
Bloody Pavement
 
Rock mechanics for engineering geology part 3
Rock mechanics for engineering geology part 3Rock mechanics for engineering geology part 3
Rock mechanics for engineering geology part 3
 
Ramesh kumar
Ramesh kumarRamesh kumar
Ramesh kumar
 
Soil Compaction: A case study of Anpara Thermal Power Plant, Uttar Pradesh
Soil Compaction: A case study of Anpara Thermal Power Plant, Uttar PradeshSoil Compaction: A case study of Anpara Thermal Power Plant, Uttar Pradesh
Soil Compaction: A case study of Anpara Thermal Power Plant, Uttar Pradesh
 
Learning Partnerships Asia Hrd 2011 Dys
Learning Partnerships   Asia Hrd 2011 DysLearning Partnerships   Asia Hrd 2011 Dys
Learning Partnerships Asia Hrd 2011 Dys
 
Cts rebranding object
Cts rebranding objectCts rebranding object
Cts rebranding object
 
Project 1 ICI & ITD Presentation
Project 1 ICI & ITD PresentationProject 1 ICI & ITD Presentation
Project 1 ICI & ITD Presentation
 
Building Services 1 - Ventilation in Heritage Building
Building Services 1 - Ventilation in Heritage BuildingBuilding Services 1 - Ventilation in Heritage Building
Building Services 1 - Ventilation in Heritage Building
 
PERMEABLE PAVEMENT SYSTEMS AND TOP MIX PERMEABLE PAVEMENT
PERMEABLE PAVEMENT SYSTEMS AND TOP MIX PERMEABLE PAVEMENTPERMEABLE PAVEMENT SYSTEMS AND TOP MIX PERMEABLE PAVEMENT
PERMEABLE PAVEMENT SYSTEMS AND TOP MIX PERMEABLE PAVEMENT
 
Manshu
ManshuManshu
Manshu
 
The road to work
The road to workThe road to work
The road to work
 

Similar to Polymer road technology

SHATEC Engineering Consultants - Graniterock dba FMG CIR Whitepaper
SHATEC Engineering Consultants - Graniterock dba FMG CIR WhitepaperSHATEC Engineering Consultants - Graniterock dba FMG CIR Whitepaper
SHATEC Engineering Consultants - Graniterock dba FMG CIR Whitepaper
Dennis McElroy
 
Utilization of polymer fiber reinforced concrete pavement
Utilization of polymer fiber reinforced concrete pavementUtilization of polymer fiber reinforced concrete pavement
Utilization of polymer fiber reinforced concrete pavement
HARSHIL PATEL
 
Mud concrete block using construction and demolition waste live
Mud concrete block using construction and demolition waste liveMud concrete block using construction and demolition waste live
Mud concrete block using construction and demolition waste live
aadesh dhoka
 

Similar to Polymer road technology (20)

SHATEC Engineering Consultants - Graniterock dba FMG CIR Whitepaper
SHATEC Engineering Consultants - Graniterock dba FMG CIR WhitepaperSHATEC Engineering Consultants - Graniterock dba FMG CIR Whitepaper
SHATEC Engineering Consultants - Graniterock dba FMG CIR Whitepaper
 
Usage of waste plastic materials in road construction
Usage of waste plastic materials in road constructionUsage of waste plastic materials in road construction
Usage of waste plastic materials in road construction
 
Utilization of polymer fiber reinforced concrete pavement
Utilization of polymer fiber reinforced concrete pavementUtilization of polymer fiber reinforced concrete pavement
Utilization of polymer fiber reinforced concrete pavement
 
Recycling of construction waste
Recycling of construction wasteRecycling of construction waste
Recycling of construction waste
 
IRJET- Study on Effect of Waste Glass as Partial Replacement for Coarse A...
IRJET-  	  Study on Effect of Waste Glass as Partial Replacement for Coarse A...IRJET-  	  Study on Effect of Waste Glass as Partial Replacement for Coarse A...
IRJET- Study on Effect of Waste Glass as Partial Replacement for Coarse A...
 
microsurfacing.pptx
microsurfacing.pptxmicrosurfacing.pptx
microsurfacing.pptx
 
geosynthetic_basic.ppt
geosynthetic_basic.pptgeosynthetic_basic.ppt
geosynthetic_basic.ppt
 
STANDARDS ON GEOSYNTHETICS.pptx
STANDARDS ON  GEOSYNTHETICS.pptxSTANDARDS ON  GEOSYNTHETICS.pptx
STANDARDS ON GEOSYNTHETICS.pptx
 
Seminarppt
SeminarpptSeminarppt
Seminarppt
 
W.A.R.(waterabsorbingroad): New technique for road construction using permeab...
W.A.R.(waterabsorbingroad): New technique for road construction using permeab...W.A.R.(waterabsorbingroad): New technique for road construction using permeab...
W.A.R.(waterabsorbingroad): New technique for road construction using permeab...
 
Mud concrete block using construction and demolition waste live
Mud concrete block using construction and demolition waste liveMud concrete block using construction and demolition waste live
Mud concrete block using construction and demolition waste live
 
IRJET- Comparative Study on the Use of Clay and Cemented Clay as Landfill Lin...
IRJET- Comparative Study on the Use of Clay and Cemented Clay as Landfill Lin...IRJET- Comparative Study on the Use of Clay and Cemented Clay as Landfill Lin...
IRJET- Comparative Study on the Use of Clay and Cemented Clay as Landfill Lin...
 
proof roads.pptx
proof roads.pptxproof roads.pptx
proof roads.pptx
 
Work based project KNE520_John Ghaly visual audio presentation
Work based project KNE520_John Ghaly visual audio presentationWork based project KNE520_John Ghaly visual audio presentation
Work based project KNE520_John Ghaly visual audio presentation
 
IRJET- An Experimental Study on Behaviour of Concrete with Coco-Peat
IRJET- An Experimental Study on Behaviour of Concrete with Coco-PeatIRJET- An Experimental Study on Behaviour of Concrete with Coco-Peat
IRJET- An Experimental Study on Behaviour of Concrete with Coco-Peat
 
Laboratory Investigations on Mechanical Properties of Subgrade Soil Stabilize...
Laboratory Investigations on Mechanical Properties of Subgrade Soil Stabilize...Laboratory Investigations on Mechanical Properties of Subgrade Soil Stabilize...
Laboratory Investigations on Mechanical Properties of Subgrade Soil Stabilize...
 
CIVIL_PROJECT_PPT_RECYCLED_AGGREGATE_CON.pptx
CIVIL_PROJECT_PPT_RECYCLED_AGGREGATE_CON.pptxCIVIL_PROJECT_PPT_RECYCLED_AGGREGATE_CON.pptx
CIVIL_PROJECT_PPT_RECYCLED_AGGREGATE_CON.pptx
 
PPT FINAL.pptx
PPT FINAL.pptxPPT FINAL.pptx
PPT FINAL.pptx
 
Evaluation of strength and performance characteristics of cold mix bitumen us...
Evaluation of strength and performance characteristics of cold mix bitumen us...Evaluation of strength and performance characteristics of cold mix bitumen us...
Evaluation of strength and performance characteristics of cold mix bitumen us...
 
porous and previous roads
porous and previous roadsporous and previous roads
porous and previous roads
 

Recently uploaded

Architecting Cloud Native Applications
Architecting Cloud Native ApplicationsArchitecting Cloud Native Applications
Architecting Cloud Native Applications
WSO2
 
Finding Java's Hidden Performance Traps @ DevoxxUK 2024
Finding Java's Hidden Performance Traps @ DevoxxUK 2024Finding Java's Hidden Performance Traps @ DevoxxUK 2024
Finding Java's Hidden Performance Traps @ DevoxxUK 2024
Victor Rentea
 

Recently uploaded (20)

Architecting Cloud Native Applications
Architecting Cloud Native ApplicationsArchitecting Cloud Native Applications
Architecting Cloud Native Applications
 
Repurposing LNG terminals for Hydrogen Ammonia: Feasibility and Cost Saving
Repurposing LNG terminals for Hydrogen Ammonia: Feasibility and Cost SavingRepurposing LNG terminals for Hydrogen Ammonia: Feasibility and Cost Saving
Repurposing LNG terminals for Hydrogen Ammonia: Feasibility and Cost Saving
 
TrustArc Webinar - Unlock the Power of AI-Driven Data Discovery
TrustArc Webinar - Unlock the Power of AI-Driven Data DiscoveryTrustArc Webinar - Unlock the Power of AI-Driven Data Discovery
TrustArc Webinar - Unlock the Power of AI-Driven Data Discovery
 
How to Troubleshoot Apps for the Modern Connected Worker
How to Troubleshoot Apps for the Modern Connected WorkerHow to Troubleshoot Apps for the Modern Connected Worker
How to Troubleshoot Apps for the Modern Connected Worker
 
Apidays New York 2024 - Scaling API-first by Ian Reasor and Radu Cotescu, Adobe
Apidays New York 2024 - Scaling API-first by Ian Reasor and Radu Cotescu, AdobeApidays New York 2024 - Scaling API-first by Ian Reasor and Radu Cotescu, Adobe
Apidays New York 2024 - Scaling API-first by Ian Reasor and Radu Cotescu, Adobe
 
CNIC Information System with Pakdata Cf In Pakistan
CNIC Information System with Pakdata Cf In PakistanCNIC Information System with Pakdata Cf In Pakistan
CNIC Information System with Pakdata Cf In Pakistan
 
Corporate and higher education May webinar.pptx
Corporate and higher education May webinar.pptxCorporate and higher education May webinar.pptx
Corporate and higher education May webinar.pptx
 
Elevate Developer Efficiency & build GenAI Application with Amazon Q​
Elevate Developer Efficiency & build GenAI Application with Amazon Q​Elevate Developer Efficiency & build GenAI Application with Amazon Q​
Elevate Developer Efficiency & build GenAI Application with Amazon Q​
 
Finding Java's Hidden Performance Traps @ DevoxxUK 2024
Finding Java's Hidden Performance Traps @ DevoxxUK 2024Finding Java's Hidden Performance Traps @ DevoxxUK 2024
Finding Java's Hidden Performance Traps @ DevoxxUK 2024
 
presentation ICT roal in 21st century education
presentation ICT roal in 21st century educationpresentation ICT roal in 21st century education
presentation ICT roal in 21st century education
 
Apidays New York 2024 - APIs in 2030: The Risk of Technological Sleepwalk by ...
Apidays New York 2024 - APIs in 2030: The Risk of Technological Sleepwalk by ...Apidays New York 2024 - APIs in 2030: The Risk of Technological Sleepwalk by ...
Apidays New York 2024 - APIs in 2030: The Risk of Technological Sleepwalk by ...
 
Apidays New York 2024 - The Good, the Bad and the Governed by David O'Neill, ...
Apidays New York 2024 - The Good, the Bad and the Governed by David O'Neill, ...Apidays New York 2024 - The Good, the Bad and the Governed by David O'Neill, ...
Apidays New York 2024 - The Good, the Bad and the Governed by David O'Neill, ...
 
AWS Community Day CPH - Three problems of Terraform
AWS Community Day CPH - Three problems of TerraformAWS Community Day CPH - Three problems of Terraform
AWS Community Day CPH - Three problems of Terraform
 
Exploring Multimodal Embeddings with Milvus
Exploring Multimodal Embeddings with MilvusExploring Multimodal Embeddings with Milvus
Exploring Multimodal Embeddings with Milvus
 
DEV meet-up UiPath Document Understanding May 7 2024 Amsterdam
DEV meet-up UiPath Document Understanding May 7 2024 AmsterdamDEV meet-up UiPath Document Understanding May 7 2024 Amsterdam
DEV meet-up UiPath Document Understanding May 7 2024 Amsterdam
 
Navigating the Deluge_ Dubai Floods and the Resilience of Dubai International...
Navigating the Deluge_ Dubai Floods and the Resilience of Dubai International...Navigating the Deluge_ Dubai Floods and the Resilience of Dubai International...
Navigating the Deluge_ Dubai Floods and the Resilience of Dubai International...
 
Boost Fertility New Invention Ups Success Rates.pdf
Boost Fertility New Invention Ups Success Rates.pdfBoost Fertility New Invention Ups Success Rates.pdf
Boost Fertility New Invention Ups Success Rates.pdf
 
Web Form Automation for Bonterra Impact Management (fka Social Solutions Apri...
Web Form Automation for Bonterra Impact Management (fka Social Solutions Apri...Web Form Automation for Bonterra Impact Management (fka Social Solutions Apri...
Web Form Automation for Bonterra Impact Management (fka Social Solutions Apri...
 
Platformless Horizons for Digital Adaptability
Platformless Horizons for Digital AdaptabilityPlatformless Horizons for Digital Adaptability
Platformless Horizons for Digital Adaptability
 
Biography Of Angeliki Cooney | Senior Vice President Life Sciences | Albany, ...
Biography Of Angeliki Cooney | Senior Vice President Life Sciences | Albany, ...Biography Of Angeliki Cooney | Senior Vice President Life Sciences | Albany, ...
Biography Of Angeliki Cooney | Senior Vice President Life Sciences | Albany, ...
 

Polymer road technology

  • 1. POLYMER ROAD TECHNOLOGY PRESENTED BY NIKHIL BHOLE (63020) Guided By: Prof. Anupama .A. Bellakki
  • 2. ROAD-MAP • Introduction • Stabilization by Polymer products • Polymer products used for stabilization and road technology • Road Preliminaries • Construction Overview • Role of Plastic wastes in development • Key Benefits of Polymer Road Technology • Conclusion • References
  • 3. INTRODUCTION • Road network plays important role in development of the country. Thus it should consist of best possible infrastructure in all aspects. • Therefore it is necessary to consider geological aspects and implement necessary modifications in them. • Modification in soil properties should be done in order to eliminate compatibility issues, and make it economical and environmental friendly. • Use of Plastic wastes in road construction will benefit the ecology.
  • 4. 1. STABILIZATION What is stabilization? • A process in which small quantities of additive(s) (polymers) is used and added to the existing materials which can significantly improve the normal engineering properties of soils, crushed rocks and gravels e.g. CBR, permeability and strength. How to carry out stabilization? • Usually carry out in-situ • Sometimes in a centralized processing plant Stabilization Technique : • Stabilizing agent preserves strength of water susceptible gravels by creating a hydrophobic soil matrix between the stones which reduces permeability and limits water ingress ( External Water-proofing ). • Also the softening and lubricating effect of any moisture that does enter the pavement is much reduced ( Internal Water-proofing ).
  • 5. Why stabilization must be carried out by polymer ? • Cyclic load(repetitive & reversal) from traffic caused fatigue failures in pavement • Above factors render original soil-stabilization less suitable today • Conventional soil-stabilization susceptible to sulphate attack and proved inappropriate for clayey soils containing excessive fines(> 35% passing the No. 200 sieve) and of high plasticity (P.I. > 10) • All these suggest modification(s) to original soil-stabilization is necessary in order to meet critical needs of pavements today. • Tests by renown laboratory, full-scale test pavements and in-service pavements have confirmed the suitability of various polymer products / solutions as a modifier.
  • 6. 1.4 How Polymer modify Soil-Stabilization? • Increase modulus of elasticity through connecting cement-coated soil particles by numerous ‘micro-rubber bands’ • The water-holding nature is useful during curing process • Protect soil-stabilization against harmful effects of chemical compounds in soil, e.g. sulphate • Prevent penetration and capillary rise of water within soil-stabilization • Reduce the effects of moisture migration – a major cause of pavement deterioration
  • 8. Advantages:  Minimal use of chemical  Efficient & rapid construction  Reduced energy consumption  Environmentally sound  Existing materials can be used  Reduces susceptibility to water  Well proven process Associated terms with Stabilization :
  • 9.
  • 10. 2. POLYMERS USED FOR STABILIZATION • Compatibility Measures : Polymer should be : - Water based - Non-toxic - Non-flammable - Non-leaching - Economically preventive or EPA compliant - No dangerous levels of volatile organic compounds • Other physical properties are : Boiling Point - 100 C Specific Gravity @25C : 1.00 – 1.02 Viscosity @25C : 1,200 – 2,000 cps Miscible in water pH value @25C : 11.0 – 12.5
  • 11. Some widely used polymer products in soil stabilization or road technology are :  CORCHEM 5510 Soil Polymer Enzyme - CORCHEM Corporation ( USA )  Water based Acrylic Polymers - Constructive Innovations ( UK )  IPPL : a). IPPL SS-IX : Polymer soil stabilizer b). IPPL AT-X : Polymer based asphalt c). IPPL PT-V : Potholes repairing d). IPPL DT-II : Eliminate dust, Dust suppressant e). IPPL STA : Sealing and water-proofing  Renolith : - International Renolith Corporation Ltd. ( Thailand )
  • 12.  TerraDura Polymer Emulsion : Soil stabilization Technology - NCI Worldwide ( USA )  Soiltech MK-III : Nano polymer stabilizer - Polypavements ( South Africa ) and IPPL ( India )  Terratech : a). T-PRO 400HT : Soil stabilization Technology b). T-PRO 500 : Soil stabilization Technology
  • 14. Polymer Pavement Construction Overview • Pavement is outlined and pegged to get proper alignment. • Modification of soil is undertaken (if required). • Based on the resources established at site, add Polymer stabilizer to the Water in the Browser. • This Admixture of Polymer stabilizer and water is sprayed to the ripped pavement and evenly distributed throughout the pavement material. • Pulverization on the SSB Pavement after applying the stabilizer admixture. • Pavement is profiled (to design alignment). • Pavement compacted to min. 98% of maximum dry density (MDD) and verify in-situ. • Pavement is open to traffic after 3 days. • Wearing surface - Bitumen layer is added within 5-7 days.
  • 15. Construction Machineries and Equipment's • Hydraulic Motor Grader with back-end ripper • Tractor with Ripper/Cultivator optional to Hydraulic Motor Grader with back-end ripper or Pulveriser Machine • Water Browser with min. carrying capacity of 4000/12000 litres with attached sprinkler pump • Vibratory soil compactor 11 ton capacity Survey equipment set • D.C.P., N.D.G. testing equipment and Moisture meter Grader and Spreader Vibro Roller
  • 16. Pavement Preparation • Scarify the existing surface and remove tree roots, stumps and vegetation. • Remove loose debris if any. • Dump & Spread the SSB Mix material over the Subgrade /GSB top layers as required. • Remove loose debris if any. • Rip/Furrow the surface to desired depth. • Remove all particles above the standard grading analysis Tripper / dumper Polymer sprinkler
  • 17.
  • 18.
  • 19.
  • 20.
  • 21.
  • 22. Role of Plastic wastes in development • Plastic wastes can also be used in construction of roads in economical ways, leading to environmental safety. • They are processed by following basic processes : 1. Segregation . 2. Cleaning process . 3. Shredding process . 4. Collection process . Segregation process cleaning process shredding process collected plastic
  • 23. Key Benefits of Polymer Road Technology • Reduce the need of bitumen by around 10%. • Reduce the cost to around Rs. 5000/Km. of single lane road. • Generate jobs for rag pickers. • Substantial reduction in construction time • Significant reduction in quarry materials • Subsequent reduction in construction cost • Environmental friendly technology • Superior soil properties • Toxicity effect is zero
  • 24. CONCLUSION • POLYMER modified soil-cement (or RC-Soils) are a well proven soil stabilization process. • Plastic will increase the melting point of the bitumen . • A change in today’s traffic loading conditions as compared to previous; notably high traffic volume and heavy axle load have rendered modification of the conventional soil-cement most necessary, if not a must. • The technique is appropriate for new pavement construction, pavement rehabilitation and recycling works for maintenance. • Plastic road would be a boon for India’s hot and extremely humid climate where durable and eco-friendly roads which will relive the earth from all type of plastic waste
  • 25. • This method reduces the dependence and reliance on outside imported quarry products and/or borrowed soil materials during pavement construction. Consequently, it represents not only a time saving solution but also an environmental sustainable & friendly construction and maintenance approach. • Better homogeneity is achieved through more efficient mixing process and also higher and more predictable output capacity are realizable. All these are necessary to ensure that desired design outcomes are achieved.
  • 26. References • Kumar .V,”Design and construction of haul roads using polymer stabilizers University of Alberta, MSc. Thesis (2000). • Nabil Mustafa, “Plastics Waste Management”, Canadian Plastics Institute, Toronto, Canada, Marcel Dekker, Inc. (1993). • Vasudevan .R, “Utilisation of waste plastics for flexible pavement”, Indian Highways (Indian Road Congress), Vol. 34, No. 7 (July 2006). • Oliver, J.W.H., “Development of a Heavy Duty 14mm Mix for Main Roads”, WA. Contract report for Main Roads Western Australia Report RC6052A ARRB Transport Research, Australia (April 1998). • Hagos, ET, “Characterisation of Polymer Modified Bitumen”, Dienst Weg, Netherland (2002). • Marais, CM, “Advances in the Design and Application of Bituminous Materials in Road Construction”, University of Natal, (November 1979) PhD.