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Light-Gauge Steel Construction Chapter 17. Mehta, Scarborough, and Armpriest : Building Construction: Principles, Materials, and Systems © 2008 Pearson.

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Presentation on theme: "Light-Gauge Steel Construction Chapter 17. Mehta, Scarborough, and Armpriest : Building Construction: Principles, Materials, and Systems © 2008 Pearson."— Presentation transcript:

1 Light-Gauge Steel Construction Chapter 17

2 Mehta, Scarborough, and Armpriest : Building Construction: Principles, Materials, and Systems © 2008 Pearson Education, Upper Saddle River, NJ 07458. All Rights Reserved. Light-gauge steel framing Light gauge sheet steel Cold-formed to shapes that mimic wood light frame members Almost always hot-dip galvanized Light weight Noncombustable Primary uses Interior partition walls (Type I & II Construction) Exterior nonloadbearing walls (Type I & II Construction) Increased use in loadbearing applications where WLF has traditionally been used High seismic areas Warm-humid areas (termite & mold prone areas)

3 Mehta, Scarborough, and Armpriest : Building Construction: Principles, Materials, and Systems © 2008 Pearson Education, Upper Saddle River, NJ 07458. All Rights Reserved. Light gauge steel shapes Studs & joists (C-shaped) Tracks (U-shaped) Bridging channels Furring channels

4 Mehta, Scarborough, and Armpriest : Building Construction: Principles, Materials, and Systems © 2008 Pearson Education, Upper Saddle River, NJ 07458. All Rights Reserved. Steel studs & joists

5 Mehta, Scarborough, and Armpriest : Building Construction: Principles, Materials, and Systems © 2008 Pearson Education, Upper Saddle River, NJ 07458. All Rights Reserved. Typical framing configuration

6 Mehta, Scarborough, and Armpriest : Building Construction: Principles, Materials, and Systems © 2008 Pearson Education, Upper Saddle River, NJ 07458. All Rights Reserved. Furring channels

7 Mehta, Scarborough, and Armpriest : Building Construction: Principles, Materials, and Systems © 2008 Pearson Education, Upper Saddle River, NJ 07458. All Rights Reserved. Load-bearing applications

8 Mehta, Scarborough, and Armpriest : Building Construction: Principles, Materials, and Systems © 2008 Pearson Education, Upper Saddle River, NJ 07458. All Rights Reserved. Interior shear walls and temporary bracing

9 Mehta, Scarborough, and Armpriest : Building Construction: Principles, Materials, and Systems © 2008 Pearson Education, Upper Saddle River, NJ 07458. All Rights Reserved. Tilting up preassembled wall

10 Mehta, Scarborough, and Armpriest : Building Construction: Principles, Materials, and Systems © 2008 Pearson Education, Upper Saddle River, NJ 07458. All Rights Reserved. Some walls in place, note preassembled panels in foreground

11 Mehta, Scarborough, and Armpriest : Building Construction: Principles, Materials, and Systems © 2008 Pearson Education, Upper Saddle River, NJ 07458. All Rights Reserved. Walls with temporary bracing in place

12 Mehta, Scarborough, and Armpriest : Building Construction: Principles, Materials, and Systems © 2008 Pearson Education, Upper Saddle River, NJ 07458. All Rights Reserved. Anchorage detail: wall to foundation

13 Mehta, Scarborough, and Armpriest : Building Construction: Principles, Materials, and Systems © 2008 Pearson Education, Upper Saddle River, NJ 07458. All Rights Reserved. Configuration at corner

14 Mehta, Scarborough, and Armpriest : Building Construction: Principles, Materials, and Systems © 2008 Pearson Education, Upper Saddle River, NJ 07458. All Rights Reserved. Intersecting tracks at top corner

15 Mehta, Scarborough, and Armpriest : Building Construction: Principles, Materials, and Systems © 2008 Pearson Education, Upper Saddle River, NJ 07458. All Rights Reserved. Solid blocking at each end of wall segment

16 Mehta, Scarborough, and Armpriest : Building Construction: Principles, Materials, and Systems © 2008 Pearson Education, Upper Saddle River, NJ 07458. All Rights Reserved. Details: header and sill

17 Mehta, Scarborough, and Armpriest : Building Construction: Principles, Materials, and Systems © 2008 Pearson Education, Upper Saddle River, NJ 07458. All Rights Reserved. Floor joist layout

18 Mehta, Scarborough, and Armpriest : Building Construction: Principles, Materials, and Systems © 2008 Pearson Education, Upper Saddle River, NJ 07458. All Rights Reserved. In-line framing, web stiffening

19 Mehta, Scarborough, and Armpriest : Building Construction: Principles, Materials, and Systems © 2008 Pearson Education, Upper Saddle River, NJ 07458. All Rights Reserved. Light gauge steel roof trusses

20 Mehta, Scarborough, and Armpriest : Building Construction: Principles, Materials, and Systems © 2008 Pearson Education, Upper Saddle River, NJ 07458. All Rights Reserved. Detail at eave: stick-built roof

21 Mehta, Scarborough, and Armpriest : Building Construction: Principles, Materials, and Systems © 2008 Pearson Education, Upper Saddle River, NJ 07458. All Rights Reserved. Holes in web of floor joists accommodate utilities

22 Mehta, Scarborough, and Armpriest : Building Construction: Principles, Materials, and Systems © 2008 Pearson Education, Upper Saddle River, NJ 07458. All Rights Reserved. Advantages & limitations of light gauge steel framing as compared with wood light framing Advantages Lighter weight Higher strength Dimensional stability Uniform quality Durability Noncombustability Waste recycling Limitations Corrosion Thermal bridging Bracing and web stiffening requirements Higher labor costs

23 Mehta, Scarborough, and Armpriest : Building Construction: Principles, Materials, and Systems © 2008 Pearson Education, Upper Saddle River, NJ 07458. All Rights Reserved. Stabilizing non-loadbearing interior partitions

24 Mehta, Scarborough, and Armpriest : Building Construction: Principles, Materials, and Systems © 2008 Pearson Education, Upper Saddle River, NJ 07458. All Rights Reserved. Exterior back- up wall in low- rise building

25 Mehta, Scarborough, and Armpriest : Building Construction: Principles, Materials, and Systems © 2008 Pearson Education, Upper Saddle River, NJ 07458. All Rights Reserved. Exterior back-up wall in high-rise building


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