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Composite applications in concrete structures Professor John L Clarke The Concrete Society
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Composite applications in concrete structures Professor John L Clarke The Concrete Society.

Dec 24, 2015

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Page 1: Composite applications in concrete structures Professor John L Clarke The Concrete Society.

Composite applications in concrete structures

Professor John L Clarke

The Concrete Society

Page 2: Composite applications in concrete structures Professor John L Clarke The Concrete Society.

Why use FRP reinforcement?

• Corrosion of steel reinforcement in concrete structures in aggressive environments is a major problem

• Current concrete approaches are often inadequate

• Stainless steel reinforcement is expensive

• FRP should offer a viable alternative

Page 3: Composite applications in concrete structures Professor John L Clarke The Concrete Society.

Japanese road bridge

Page 4: Composite applications in concrete structures Professor John L Clarke The Concrete Society.

Bridge with FRP prestressing

Page 5: Composite applications in concrete structures Professor John L Clarke The Concrete Society.

Japanese foot and cycle bridge

Page 6: Composite applications in concrete structures Professor John L Clarke The Concrete Society.

Berlin Footbridge

Page 7: Composite applications in concrete structures Professor John L Clarke The Concrete Society.

Oslo Footbridge

Page 8: Composite applications in concrete structures Professor John L Clarke The Concrete Society.

Herning Bridge,Denmark

Page 9: Composite applications in concrete structures Professor John L Clarke The Concrete Society.

Casting ‘steel-free’ deck

Page 10: Composite applications in concrete structures Professor John L Clarke The Concrete Society.

Fender support beam, Qatar

Page 11: Composite applications in concrete structures Professor John L Clarke The Concrete Society.

Non-magnetic fencing

Page 12: Composite applications in concrete structures Professor John L Clarke The Concrete Society.

Summary - FRP reinforcement

• Correctly specified FRP materials are suitable for use in concrete

• Initial design guidance is now available

• Initial conservative safety factors will be modified as experience grows

• Demonstration structures world-wide show that the material is viable

Page 13: Composite applications in concrete structures Professor John L Clarke The Concrete Society.

Reasons for strengthening

• Requirement for increased load capacity (e.g. change of use or regulations)

• Insufficient/incorrectly located reinforcement

• Change of structural form (e.g. cutting holes through slabs or removal of supports)

• Damage (e.g. corrosion or impact)

Page 14: Composite applications in concrete structures Professor John L Clarke The Concrete Society.

Types of strengthening

• Beams and slabs– Bending– Shear

• Columns– Axial load– Bending– Shear (impact)– Seismic loading

Page 15: Composite applications in concrete structures Professor John L Clarke The Concrete Society.

Types of materials

• Pultruded composite plates

• Fabrics– Sheet materials – Tapes

• Pre-formed shells

• Pre-formed shear straps

Page 16: Composite applications in concrete structures Professor John L Clarke The Concrete Society.

Coil of carbon plate

Page 17: Composite applications in concrete structures Professor John L Clarke The Concrete Society.

Strengthening concrete with FRP

• Advantages– Cost effective solution - rapid installation and

hence limited possession time– Limited preparation - no bolts required

• Disadvantages– Lack of agreed design approaches– Lack of long term experience– Approach appears to be too easy (!!)

Page 18: Composite applications in concrete structures Professor John L Clarke The Concrete Society.

Strengthening canal bridge

Page 19: Composite applications in concrete structures Professor John L Clarke The Concrete Society.

Installing FRP strips on bridge deck

Page 20: Composite applications in concrete structures Professor John L Clarke The Concrete Society.

Bridge strengthened with FRP

Page 21: Composite applications in concrete structures Professor John L Clarke The Concrete Society.

Strengthening Glade Bridge

Page 22: Composite applications in concrete structures Professor John L Clarke The Concrete Society.

Applying adhesive to fabric

Page 23: Composite applications in concrete structures Professor John L Clarke The Concrete Society.

Fabric impregnation machine

Page 24: Composite applications in concrete structures Professor John L Clarke The Concrete Society.

Wrapping column

Page 25: Composite applications in concrete structures Professor John L Clarke The Concrete Society.

Wrapping column

Page 26: Composite applications in concrete structures Professor John L Clarke The Concrete Society.

Column wrapping machine

Page 27: Composite applications in concrete structures Professor John L Clarke The Concrete Society.

Bridge over Bodmin Bypass

Page 28: Composite applications in concrete structures Professor John L Clarke The Concrete Society.

Contents of Concrete Society Technical Report 55

• Introduction • Background

• Material types and properties

• Review of applications

• Structural design - flexure, shear, columns

• Detailing

• Workmanship

• Available materials • Quality control