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GIB® Bracing Calculator | GIB®

    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 Bracing Unit rating of a 2.7 metre high wall is obtained by multiplying the values in Tables 1 and 2 by f = 2.4/2.7 = 0.89 The Bracing Unit rating of a 3.6 metre high wall is obtained by multiplying the values in Tables 1 and 2 by f = 2.4/3.6 = 0.67 The height of walls with a sloping top plate can be taken as the average height.

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.

EzyBrace Systems - GIB

    https://www.gib.co.nz/assets/Uploads/LiteratureFile/System-Brochures/EzyBrace/GIB-EzyBrace-Systems-2016-August.pdf
    — Includes the new GIB ® Bracing element GS2- NOM — ®Allows the GIBFix Framing System to be used in GIB EzyBrace® designs. NEW GIB® BRACING ELEMENT GS2-NOM — Allows internal walls lined with GIB® plasterboard on both sides and fastened off as per the standard fixing requirements of the current GIB® Site Guide to contribute

Wall Bracing Calculator - APA – The Engineered Wood ...

    https://www.apawood.org/calculator
    Welcome to the APA Wall Bracing Calculator. This tool is intended to simplify the design of residential structures that comply with 2009, 2012, 2015, 2018 or 2021 International Residential Code (IRC) wall bracing requirements. This calculator is intended for use by experienced designers that are familiar with wall bracing.

5.0 GIB PERFORMANCE SYSTEMS

    https://www.gib.co.nz/assets/Uploads/GIB-Site-Guide-2018-Performance.pdf
    1. ®Any 10mm or 13mm GIB plasterboard to one side of the wall 2. 7mm structural plywood to the other side 3. Corner fastening pattern applies (see p. 65) 4. 32 x 6g GIB®Grabber®screws or GIB®Grabber® Dual Thread screws at 150mm to perimeter (plasterboard side) 50 x 2.8mm FH nails at 150mm to perimeter.

ABA20051509 - Technical - Calculations

    https://docs.tcdc.govt.nz/store/default/1628559.pdf
    gib@ wall bracing calculation sheet a single storey abbott 20-sep-05 job details name street and number lot and dp number city/town/district designer and date buildin s ecification location of storey floor loading foundation type building height to apex (m) roof height above eaves (m) stud height (m) cladding weight (top or single) cladding …

CALCULATING BRACING DEMAND FOR WALLS Wall bracing

    https://www.buildmagazine.org.nz/assets/Uploads/Build-133-32-Design-Right-Wall-bracing.pdf
    As the roof pitch is over 25 degrees, when considering wind for the 2-storey part of the building, use the overall dimensions of the roof width and length. So, 2-storey section (upper and lower levels) are: length = 10.6 + 0.300 + 0.300 = 11.2 m width = 5.0 + 0.300 + 0.300 = 5.6 m

HOW TO Calculating bracing

    https://www.buildmagazine.org.nz/assets/PDF/Build-168-40-Design-Right-Calculating-Bracing-When-Renovating.pdf
    that also has a diagonal brace, the bracing rating of the wall is the sum of both bracing systems. For a wall lined on both sides with plasterboard, the bracing rating is twice the sum of a wall lined on one side only. Always reinstall at least equivalent bracing Not all renovation work requires a building consent. However, even if a consent is not

Bracing Example - Manual Calculation - Google Slides

    https://docs.google.com/presentation/d/1r_JVoPmeVYT2Yq7nrsMudJVwJQ4gD9LA70HmD7fuu64/edit#!
    The following method has been used in this example to calculate the area of elevation of the triangular roof section: 150 mm nominal allowance for …

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