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Advanced cementitious material High strength, high

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Page 1: Advanced cementitious material High strength, high
Page 2: Advanced cementitious material High strength, high

Advanced cementitious material

High strength, high stiffness

Exceptional durability

Internal steel fiber reinforcement for added ductility

Self-consolidating

UHPC, UHPFRC, RPC

Ductal, CoreTUFF, BSI,

Densit, Cemtec, …

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Compressive Strength – 18 to 35 ksi

Modulus of Elasticity – 6200 to 8000 ksi

Creep Coefficient – 0.3 to 0.8

Sustained Tensile Capacity – 0.9 to 1.5 ksi

Rapid Chloride Permeability – 20 to 360 Coulombs

Freeze/Thaw Resistance – RDM > 95%

Source: FHWA Report FHWA-HRT-06-103Material Property Characterization of Ultra-High Performance Concrete

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• Deck-to-Deck• Deck-to-Girder• Deck Beam-to-Deck Beam• Column-to-Footing/Cap• Girder-to-Girder• Deck-to-Barrier• Headers for Expansion Joint

Page 9: Advanced cementitious material High strength, high

#4 BARS (BLACK & EPOXY) – 3” EMBEDMENT#5 BARS (BLACK & EPOXY) – 4” EMBEDMENT#6 BARS (BLACK & EPOXY) – 5” EMBEDMENT

Page 10: Advanced cementitious material High strength, high

Simple Lap-Splice Cxn.

Smaller Grout Volumes

Shortened Bar Lengths

Emulates MonolithicComponent

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PrecastDeck Panelsand Slabs

61 in. 6 in.

Closure Pour (UHPC)

Deck Bulb Tee Prestressed Girder

41 in.

6 in.

UHPC Closure Pour Precast Deck Panel

8 in.

96 in.

Deck Bulb Tee Girders

Page 12: Advanced cementitious material High strength, high

8” THICK PANEL - #4 EPOXY COATED HAIRPIN BARS8” THICK PANEL - #5 GALV. STRAIGHT BARS (6” LAP)8” THICK PANEL - #5 BLACK STRAIGHT BARS (6” LAP)8” THICK PANEL - #5 BLACK HEADED BAR (3 ½” LAP)6” THICK PANEL - #5 BLACK STRAIGHT BARS (6” LAP)6” THICK PANEL - #5 BLACK HEADED BARS (3 ½” LAP)

Page 13: Advanced cementitious material High strength, high

1. Joint system emulates or surpasses C I P monolithic decks hence can be designed similar to CIP decks

2. No interface de-bonding during testing was observed

3. No de-bonding of reinforcing bars during testing

Page 14: Advanced cementitious material High strength, high

14

NYSDOT collaborated with the industry , trade associations and the FHWA in developing and testing field cast UHPC joints for precast deck systems. The results are documented in the following report:

Development of a Field-Cast Ultra-High Performance Concrete Composite Connection Detail for Precast Concrete Bridge Decks

NTIS Accession No. PB2012-101995

FHWA Publication No. FHWA-HRT-12-038

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Rte 23 over Otego Creek

Page 18: Advanced cementitious material High strength, high

Precast Deck

Grout

Steel GirderA

Precast DeckGrout

Concrete Girder

C

Precast Deck

UHPC

Steel GirderB

Precast DeckUHPC

Concrete Girder

D

Page 19: Advanced cementitious material High strength, high

Steel Girder Connection Concrete Girder Connection

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• Simple Connection

• No Interference

• Hidden Connection

• Emulates Cast-in-Place

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NYSDOT collaborated with the industry, trade associations and the FHWA in developing and testing Composite Connections between Precast Decks and steel/concrete girders using UHPC. The results are documented in the following report:

Composite Connections for Precast Concrete Bridge Decks.

NTIS Accession No. PB2012-107569

FHWA Publication No. FHWA-HRT-12-041

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Underside of the deck

panel with hidden

haunch pocket

Long studs to engage

transverse bars

UHPC Composite Cxn Cyclic Testing at FHWA.wmv

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Deck Link Slab

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Finished Link Slab

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Finished Link Slab

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The latest generation of precast deck system for accelerated construction used by NYSDOT has:

a) Exposed stud pockets

b) No Studs

c) Hidden haunches with studs

d) Hidden haunches without studs

Page 52: Advanced cementitious material High strength, high

Precast post-tensioned deck systems are:

a) More complex to design

b) Thicker than C I P decks

c) Construction is complex

d) All of the above

Page 53: Advanced cementitious material High strength, high

PBES using UHPC connections:

a) Results in high quality structures

b) Usually cost more conventional construction

c) Drastic reduction in construction time

d) All of the above

Page 54: Advanced cementitious material High strength, high