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GIB® Bracing Calculator

    https://www.gib.co.nz/downloads-and-resources/bracing-calculator/
    GIB® Bracing Calculator GIB EzyBrace® 2016 Design Software has been updated to be more intuitive and even easier to operate than previous software versions. Download Software Here you will find design materials to calculate bracing for timber and steel framed buildings.

Bracing Supplement Document - GIB

    https://www.gib.co.nz/assets/Uploads/LiteratureFile/GIB-Bracing-Supplement-Dec-2016.pdf
    The angle to bracing line function in the GIB EzyBrace®calculation sheet does not need to be applied in this situation. Using a ‘stretched’ rectangular design will deliver the same outcome as doing two separate calculations. Again the important issue is to ensure that bracing provision and distribution is proportional to floor area.

GIB® Bracing Calculator | GIB®

    https://s4-gib.heyday.net.nz/downloads-and-resources/bracing-calculator/
    GIB® Bracing Calculator GIB EzyBrace® 2016 Design Software has been updated to be more intuitive and even easier to operate than previous software versions. Download Software Here you will find design materials to calculate bracing for timber and steel framed buildings.

GIB EzyBrace® Systems | GIB®

    https://www.gib.co.nz/systems/gib-ezybrace-systems/
    GIB EzyBrace® Systems Updated to offer improved design flexibility and further simplification of the bracing design and build process. Systems Bracing Calculator Download PDF Overview Technical Literature System Sheets CAD Files Archive GIB EzyBrace® Systems are fully compliant with NZS 3604:2011 and are BRANZ Appraised.

Downloads & Resources | GIB®

    https://www.gib.co.nz/downloads-and-resources/
    GIB® Bracing Calculator GIB® System Selector : Literature Library : CAD Library : GIB® Bracing Calculator : Earthquake Information : GIB® Plasterboard Alternatives : Contact us;

Bracing Example - Manual Calculation - Google Slides

    https://docs.google.com/presentation/d/1r_JVoPmeVYT2Yq7nrsMudJVwJQ4gD9LA70HmD7fuu64/edit#!
    Table 8.2 is used for determining the pressure on single or upper storey elevations where the wind direction is at 90o to a ridge and for wind speeds N1, N2, N3 & …

BLP-H | GIB®

    https://www.gib.co.nz/systems/gib-ezybrace-systems/blp-h/
    Lining: GIB Braceline® one side, structural plywood the other. Add to favourites. Overview Technical Literature. Failed to load PDF file. Download System Sheet.

EzyBrace Systems - GIB

    https://www.gib.co.nz/assets/Uploads/LiteratureFile/System-Brochures/EzyBrace/GIB-EzyBrace-Systems-2016-August.pdf
    Distribute bracing by drawing a grid pattern of bracing lines along and across the building. Bracing lines must coincide as much as possible with the wall bracing elements. Pairs of elements may be counted on a single line provided they are no more than 2 metres apart and parallel. See figure 4.

GS1-N | GIB®

    https://www.gib.co.nz/systems/gib-ezybrace-systems/gs1-n/
    Lining: Any 10mm or 13mm GIB® Standard plasterboard on side. Add to favourites.

BLG-H | GIB®

    https://www.gib.co.nz/systems/gib-ezybrace-systems/blg-h/
    Lining: 10mm GIB Braceline® one side, GIB® Standard plasterboard on the other. Add to favourites. Overview Technical Literature. Failed to load PDF file. Download System Sheet.

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