Engineer's Responsibility for Detailing Reinforced Concrete Structures

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Jun 11, 2008 ... 2. What is Rebar Detailing? ▫ The art of placing reinforcing in a concrete member to follow the design intent. ▫ Thou shall follow the design &.
6/11/2008

Engineer’s Responsibility for Detailing Reinforced Concrete Structures Neal S. Anderson, PE, SE, FACI Vice President of Engineering

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Dilbert !!

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What is Rebar Detailing? ƒ The art of placing reinforcing in a concrete member to follow the design intent

ƒ Thou shall follow the design & placing rules of ACI , AASHTO, and CRSI . . . . 3

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Why is Detailing Important? ƒ It is how the project gets built ƒ Not everything gets caught ƒ It makes the SE think ƒ When problems occur . . . » Delays in the project » Cost implications » Possible finger pointing 4

U.S. Detailing Practice Structural Design – A/E Building

Bridge

Drawings / Specs

Structural – Placing Drawings

Placing Drawings 5

Detailing of Rebar in Concrete ƒ Buildings ƒ Bridges ƒ Role of SE & Detailer ƒ Two Case Studies ƒ What can we (SEs) do?

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Buildings

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Building Deliverables ƒ Drawings » Structural » Architectural

ƒ Project Specifications » Section 03200 - Reinforcing

ƒ General Notes 8

ACI 318 – Building Code ƒ Dawn of time ƒ Current version is 2008 ƒ Governs building g design ƒ Contains info on reinforcing

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ACI 318, Section 1.2.1 – Drawings, Details & Specs ƒ Specified strength / grade of reinforcement ƒ Size and location of all » Structural elements » Reinforcement » Anchors

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ACI 318, Section 1.2.1 – Drawings, Details & Specs ƒ Reinforcement anchorage lengths ƒ Lap splices » Location » Length

ƒ Mechanical & welded splices » Type » Location 11

Building Drawings ƒ Beams / girders ƒ Columns ƒ Walls ƒ Foundations ƒ Plans, sections, & details

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Building Drawings Many elements are shown TYPICAL ƒ Beam / g girder table ƒ Column schedule

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Typical Beam Detail

Typical Colu umn Details

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Building Drawings ƒ Structural (& arch) drawings ƒ Many typical details » Schedules, tables » Bar size & spacing (#5 @ 12” o.c.)

ƒ Detailer’s role » Placing plans development » Bill of material for fabrication 16

Bridges

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Bridge Deliverables ƒ Drawings » Structural – rebar placing » Rebar schedules » Civil

ƒ General / structural notes ƒ Project special provisions » Rebar covered in Std Specs. 18

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Plans – Bar Schedule A. B. C. D D.

A

B C

D

E

Bar ID (unique) Quantity (or #) Rebar size Total length (including bends) E. Depiction of shape

(E) = Epoxy coated 19

Plans – Bend Diagrams Stirrups

L-bars Straight with 180° hook

Bar ID from schedule

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Rebar Markings for Deck

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Plans – splices Bridge deck plan

Splice locations & length

Contact lap splice length

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Bridge Drawings ƒ Structural & placing drawings ƒ Very prescriptive by DOT » a(E) & b(E) bars ~ deck » h(E) & v(E) bars ~ wall

ƒ Detailer’s role » Check engineers layout » Bill of materials 23

Buildings vs. Bridges Buildings - Private

Bridges - Public

ƒ Bidding package

ƒ Bidding package

» Lump sum

ƒ ƒ ƒ ƒ

Furnish and install Rebar lumped in Change orders RFIs

ƒ Unique nature - not cookie cutter

» Unit prices » Itemized

ƒ Rebar » Weight ~ plain & (E) » Placing unit

ƒ Not many COs / RFIs ƒ Bridges are more typical 24

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Detailing Practice – The Roles

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Detailing Responsibilities ƒ Admittedly, this is more focused on the building side ƒ What are the issues / concerns? ƒ Why worry? » Costs » Project delays » Structural issues 26

Meet Mr. Detailer . . . ƒ Detailer » Technically trained individual » Interprets contract documents

ƒ Responsible for » Placing plans development » Bill of material for fabrication

They are not design professionals 27

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Meet Mr. SE . . . ƒ Structural Engineer » BSCE, MSCE, or PhD » FE (EIT), PE, or SE

ƒ Responsible for » Design of concrete » Preparing design plans & specifications » Placing / shop drawing review » Anything else to ensure our designs get built properly

We are licensed design professionals28

SE Point of View . . . . ƒ What are the perceived “normal” relationships between SE and detailer? ƒ How can this relationship be improved? ƒ How do we solve the problems? ƒ Who takes the lead to avoid problems? 29

SE Relationship Perception ƒ Detailer prepares placing drawings » SE and architectural drawings » CRSI “Manual of Standard Practice”

ƒ SE provides background drawings to Detailer to “assist” in starting plans » Detailer verifies their scale & redraws if necessary

ƒ SE expectations: » Detailer to be properly trained or » Working under the supervision of an experienced detailer

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SE Relationship Perception ƒ SE expects interpretation questions during the preparation stage & prior to reviewing placing drawings » SE will provide quick response to questions

ƒ Placing drawings to be complete with unanswered issues clouded ƒ SE will review promptly and clearly mark comments 31

SE Relationship Perception ƒ SE will not transmit design changes during the placing drawing preparation » During mark-ups

ƒ Detailer addresses mark-ups prior to fabricating & issuing final drawings 32

How Can SEs Get Better?

Part 1

ƒ Recognize the tools available » Publications

ƒ Get familiar with rebar detailing » Make buildable designs » Aids in placing drawing review

ƒ Field issues cannot always be solved with a BFH 33

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CRSI – Manual of Std. Practice ƒ First published by CRSI in 1927 ƒ Industry “Standard Practices” for all activities related to steel reinforcing bars ƒ Essential reference for the A / E

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ACI Committee 315 Report

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ACI Detailing Manual ƒ ƒ ƒ ƒ

Current Edition ~ 2004 Contains ACI 315 report Illustrative standards Example drawings » » » » »

Slabs Walls Footings Bridges Etc. 36

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Typical Bar Bends

Typical Bar Bends

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Typical Stirrups

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Typical Column Ties

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End Hook Dimensions

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Stirrups and Ties

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Two “What Went Wrongs” ƒ Continuous beams ƒ Slab folds

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Continuous Beam

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SE Typical “Screw Ups” ƒ Conflicting reinforcing over support » Different sizes called on adj. beams

ƒ Too many bars for beam width » Specify layers

ƒ No direction on rebar location at intersecting beams ƒ Full length bars not taken into account ƒ Congestion over columns » Take column reinforcing into consideration 45

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Slab Folds

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Slab Folds Again ƒ Two Way Slabs ƒ Difficult for detailers ƒ Slab elevation differences and the complexity of a two-way slab

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SE Typical “Screw Ups” ƒ ƒ ƒ ƒ

Detail is not cut on plan Extent of fold not clearly shown Fold not coordinated with architectural No inst instructions uctions are provided when fold depth exceeds “maximum fold allowed” ƒ Fold location – many bar lengths » Framing bars » Fill bars spliced to longer bars

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Typ. Detailer “Screw-Ups” ƒ Slab reinforcing is “replaced” by fold reinforcing » Two-way reinf. not considered

ƒ Other structural components in vicinity are effected ƒ Incorrect laps » Location , length 49

Problem Resolution ƒ Identify issues ASAP & communicate to all parties ƒ Share possible solutions ƒ Document, Document but “do not point fingers” ƒ Implement best solution ASAP » Keeps job moving

ƒ Learn from problems & don’t repeat » At least not on the same job 50

Improving the Relationship ƒ Allow communication between parties ƒ Provide Detailer with latest set of contract documents » Including architectural drawings

ƒ Encourage detailer to contact SE during placing drawing preparation ƒ Share “lesson learned” experience from previous projects 51

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Improving the Relationship ƒ Identify potential problems ahead of time ƒ Simplify and standardize details ƒ Follow latest codes & practices ƒ Keep Detailers trained and current 52

Meetings !! ƒ If needed, call early project meeting » Detailer, Subs, & GC » Discuss project “misunderstandings”

ƒ Sub / Detailer may request meeting » Details confusing or not clear » He/she proposes alternate detail » Without changing intent, if these have worked previously 53

Stretch Time . . . .

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How Can SEs Get Better?

Part 2

ƒ Take the lead !! ƒ Identify potential issues in design phase » Draw details to scale to visualize » Detail / think out the “tuffys” » Go beyond dots & lines » Recognize congestion issues 55

SE Takes the Lead . . . ƒ Design process begins with EOR / SE ƒ In-house training of young engineers » Starts ASAP upon hiring from college » Mentoring from experienced engineers » In-house seminars, site visits, lessons learned

ƒ Clarify intent at pre-constr. meeting ƒ Contact detailer early » Initial placing drawings indicate a lack of understanding of design intent 56

U.S. Bar Sizes Bar Size [metric] #

Nominal Weight, lb/ft [Nominal Mass, kg/m ]

Diameter, in. [ mm ]

Cross Sectional Area, in.2 [mm2]

3 [10]

0.376 [0.560]

0.375 [9.5]

0.11 [71]

4 [13]

0.668 [0.994]

0.500 [12.7]

0.20 [129]

5 [16]

1 043 [1 1.043 [1.552] 552]

0 625 [15 0.625 [15.9] 9]

0 31 [199] 0.31

6 [19]

1.502 [2.235]

0.750 [19.1]

0.44 [284]

7 [22]

2.044 [3.042]

0.875 [22.2]

0.60 [387]

8 [25]

2.670 [3.973]

1.000 [25.4]

0.79 [510]

9 [29]

3.400 [5.060]

1.128 [28.7]

1.00 [645]

10 [32]

4.303 [6.404]

1.270 [32.3]

1.27 [819]

11 [36]

5.313 [7.907]

1.410 [35.8]

1.56 [1006]

14 [43]

7.650 [11.38]

1.693 [43.0]

2.25 [1452]

18 [57]

13.60 [20.24]

2.257 [57.3]

4.00 [2581]

ƒ Diameter approx. ƒ Based on weight

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U.S. Bar Sizes Bar Size

Nominal Diameter ( in. )

Outside Diameter ( in. )

3

3/8

4

1/2

7/16 9/16

5

5/8

11/16

6

3/4

7/8

7

7/8

1

8

1

1-1/8

9

1.128

1-1/4

10

1 270

1-7/16

11

1.410

1-5/8

14

1 693

1-7/8

18

2 257

2-1/2

ƒ Figure 6-1 from CRSI’s Manual of Standard Practice

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Common Problem Areas ƒ Beam – column joints ƒ Brackets / haunches / ledges ƒ Integrity steel ƒ T-Joints ƒ Top of columns

Avoid Congestion 59

Beam-Column Joints

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Beam-Column Joints Perimeter of Column Reinf.

Think curtains or planes of steel reinforcing 61

Beam-Column Joints ƒ Congestion is a given ƒ Consider making beams wider » By 4 in , 2 in each side » Corner beam bars don’t interfere

ƒ Consider ⊥ beams » Different depths or elevations » Top & bottom bar interferences 62

Beam-Column Joint

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Column Brackets ƒ Where located on column? ƒ What is the size? ƒ Bar spacing? ƒ How does this effect the strutand-tie model?

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Bottom Integrity Rebar

ƒ Lap outside column to avoid congestion 65

Retaining Wall T-Joints

Easier for contractor

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Retaining Wall T-Joints

Performs better

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Coupling Beams

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Scale Drawing of Rebar

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Final Con nfiguration

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Shear Wall Ends – L to M

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Shear Wall Ends – L to M

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Shear Wall Ends – Special

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Shear Wall Ends – Special

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Shear Wall Ends – Special

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Column Ends – Headed Bars

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Punching Shear Studs

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SE Need to Knows - Rebar ƒ Standard rebar stock length » (40 to) 60 ft » Special lengths possible (coordinate with mill or fabricator)

ƒ Try to use same steel grade throughout project ƒ #14 & #18 may require lead time 78

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SE Need to Knows - Rebar ƒ Use largest bar size possible ƒ Repeat bar sizes & lengths ƒ Provide minimum 4 - 6 in. gap between top bars ƒ Follow ACI 315 for bending details ƒ Minimize bar bends & hooks ƒ Keep bars in one plane 79

SE Need to Knows - Columns ƒ Multi-story construction, usual practice » Limit column bar lengths to one story

ƒ For larger bars & couplers » Two and three story heights possible » Bar sizes of #9 & > have sufficient stiffness to use free standing two story heights. 80

SE Need to Knows - Columns ƒ Use same column size, vary » Bar size » Concrete strength g

ƒ Lap splices permitted up to #11 ƒ #14 & #18 bars have to be mechanically spliced or welded, if tension splice 81

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Rebar Splicing - Coupler ƒ Couplers are: » Grouted » Threaded » Screw type

ƒ Manufacturer’s literature

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Rebar Splicing - Couplers ƒ Couplers take up space » Greater diameter than rebar

ƒ Stagger gg couplers p ƒ Can they be installed? » Grouting » Set screws

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Better SEs - Review ƒ Identify potential issues » Draw details to scale to visualize » Detail / think out the “tuffys” y » Go beyond dots & lines » Recognize congestion issues

ƒ Get familiar with rebar detailing

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What Can Mr. CRSI Do? ƒ Manuals of Standard Practice » Keep current / up to date » Reflect latest Code changes

ƒ Encourage & promote detailer training ƒ Promote field experience importance » Young engineers

ƒ Work with college professors » Discuss importance of detailing » Properly expressing design in contract docs 85

Questions?

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