The PBD panel is an exposed fastened panel system that can be used for roof and wall applications. The ribs in the PBD panel are symmetrical from top to bottom, which makes this panel ideal as a roof liner.
PBD – Section Properties
NEGATIVE BENDING | POSITIVE BENDING | |||||||
Panel Gauge | FY (KSI) | WEIGHT (PSF) | Ixe (IN.4/FT.) | Sxe (IN.3/FT.) | Maxo (KIP-IN.) | Ixe (IN.4/FT.) | Sxe (IN.3/FT.) | Maxo (KIP-IN.) |
29 | 60* | 0.84 | 0.0124 | 0.0345 | 1.2384 | 0.0124 | 0.0345 | 1.2384 |
26 | 60* | 1.06 | 0.0172 | 0.0496 | 1.7810 | 0.0172 | 0.0496 | 1.7810 |
24 | 50 | 1.28 | 0.0227 | 0.0681 | 2.0382 | 0.0227 | 0.0681 | 2.0382 |
22 | 50 | 1.62 | 0.0310 | 0.0915 | 2.7396 | 0.0310 | 0.0915 | 2.7396 |
Allowable Uniform Loads In Pounds Per Square Foot – 16″ Panels
>29 Gauge (Fy = 60 Ksi) | ||||||||
SPAN TYPE | LOAD TYPE | SPAN IN FEET | ||||||
3.0 | 4.0 | 5.0 | 6.0 | 7.0 | 8.0 | 9.0 | ||
SINGLE | NEGATIVE WIND LOAD | 91.7 | 51.6 | 33.0 | 22.9 | 16.8 | 12.9 | 10.2 |
LIVE LOAD / DEFLECTION |
40.1 | 16.9 | 8.7 | 5.0 | 3.2 | 2.1 | 1.5 | |
2-SPAN | NEGATIVE WIND LOAD | 91.7 | 51.6 | 33.0 | 22.9 | 16.8 | 12.9 | 10.2 |
LIVE LOAD / DEFLECTION |
79.9 | 40.8 | 20.9 | 12.1 | 7.6 | 5.1 | 3.6 | |
3-SPAN | NEGATIVE WIND LOAD | 114.7 | 64.5 | 41.3 | 28.7 | 21.1 | 16.1 | 12.7 |
LIVE LOAD / DEFLECTION |
75.8 | 32.0 | 16.4 | 9.5 | 6.0 | 4.0 | 2.8 | |
4-SPAN | NEGATIVE WIND LOAD | 107.1 | 60.2 | 38.5 | 26.8 | 19.7 | 15.1 | 11.9 |
LIVE LOAD / DEFLECTION |
80.4 | 33.9 | 17.4 | 10.1 | 6.3 | 4.2 | 3.0 | |
26 Gauge (Fy = 60 Ksi ) | ||||||||
SPAN TYPE | LOAD TYPE | SPAN IN FEET | ||||||
3.0 | 4.0 | 5.0 | 6.0 | 7.0 | 8.0 | 9.0 | ||
SINGLE | NEGATIVE WIND LOAD | 131.9 | 74.2 | 47.5 | 33.0 | 24.2 | 18.6 | 14.7 |
LIVE LOAD / DEFLECTION |
55.7 | 23.5 | 12.0 | 7.0 | 4.4 | 2.9 | 2.1 | |
2-SPAN | NEGATIVE WIND LOAD | 131.9 | 74.2 | 47.5 | 33.0 | 24.2 | 18.6 | 14.7 |
LIVE LOAD / DEFLECTION |
112.0 | 56.6 | 29.0 | 16.8 | 10.6 | 7.1 | 5.0 | |
3-SPAN | NEGATIVE WIND LOAD | 164.9 | 92.8 | 59.4 | 41.2 | 30.3 | 23.2 | 18.3 |
LIVE LOAD / DEFLECTION |
105.1 | 44.3 | 22.7 | 13.1 | 8.3 | 5.5 | 3.9 | |
4-SPAN | NEGATIVE WIND LOAD | 154.0 | 86.6 | 55.4 | 38.5 | 28.3 | 21.7 | 17.1 |
LIVE LOAD / DEFLECTION |
111.5 | 47.1 | 24.1 | 13.9 | 8.8 | 5.9 | 4.1 | |
24 Gauge (Fy = 50 Ksi ) | ||||||||
SPAN TYPE |
LOAD TYPE |
SPAN IN FEET | ||||||
3.0 | 4.0 | 5.0 | 6.0 | 7.0 | 8.0 | 9.0 | ||
SINGLE | NEGATIVE WIND LOAD | 151.0 | 84.9 | 54.4 | 37.7 | 27.7 | 21.2 | 16.8 |
LIVE LOAD / DEFLECTION |
73.5 | 31.0 | 15.9 | 9.2 | 5.8 | 3.9 | 2.7 | |
2-SPAN | NEGATIVE WIND LOAD | 151.0 | 84.9 | 54.4 | 37.7 | 27.7 | 21.2 | 16.8 |
LIVE LOAD / DEFLECTION |
124.0 | 74.7 | 38.2 | 22.1 | 13.9 | 9.3 | 6.6 | |
3-SPAN | NEGATIVE WIND LOAD | 188.7 | 106.2 | 67.9 | 47.2 | 34.7 | 26.5 | 21.0 |
LIVE LOAD / DEFLECTION |
138.7 | 58.5 | 30.0 | 17.3 | 10.9 | 7.3 | 5.1 | |
4-SPAN | NEGATIVE WIND LOAD | 176.2 | 99.1 | 63.4 | 44.1 | 32.4 | 24.8 | 19.6 |
LIVE LOAD / DEFLECTION |
138.5 | 62.1 | 31.8 | 18.4 | 11.6 | 7.8 | 5.5 | |
22 Gauge (Fy = 50 Ksi ) | ||||||||
SPAN TYPE | LOAD TYPE | SPAN IN FEET | ||||||
3.0 | 4.0 | 5.0 | 6.0 | 7.0 | 8.0 | 9.0 | ||
SINGLE | NEGATIVE WIND LOAD | 202.9 | 114.2 | 73.1 | 50.7 | 37.3 | 28.5 | 22.5 |
LIVE LOAD / DEFLECTION |
100.4 | 42.3 | 21.7 | 12.5 | 7.9 | 5.3 | 3.7 | |
2-SPAN | NEGATIVE WIND LOAD | 202.9 | 114.2 | 73.1 | 50.7 | 37.3 | 28.5 | 22.5 |
LIVE LOAD / DEFLECTION |
164.1 | 100.2 | 52.2 | 30.2 | 19.0 | 12.7 | 9.0 | |
3-SPAN | NEGATIVE WIND LOAD | 253.7 | 142.7 | 91.3 | 63.4 | 46.6 | 35.7 | 28.2 |
LIVE LOAD / DEFLECTION |
189.4 | 79.9 | 40.9 | 23.7 | 14.9 | 10.0 | 7.0 | |
4-SPAN | NEGATIVE WIND LOAD | 236.9 | 133.2 | 85.3 | 59.2 | 43.5 | 33.3 | 26.3 |
LIVE LOAD / DEFLECTION |
182.7 | 84.8 | 43.4 | 25.1 | 15.8 | 10.6 | 7.4 |
The Engineering data contained herein is for the expressed use of customers and design professionals. Along w ith this data, it is recommended that the design professional have a copy of the most current version of the North American Specification for the Design of Cold-Formed Steel Structural Members published by the American Iron and Steel Institute to facilitate design. This Specification contains the design criteria for cold-formed steel components. Along with the Specification, the designer should reference the most current building code applicable to the project jobsite in order to determine environmental loads. If further information or guidance regarding cold-formed design practices is desired, please contact the manufacturer.
EFFECTIVE JANUARY, 2014 SUBJECT TO CHANGE WITHOUT NOTICE