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Introduction to Bracing Design for …

    https://www.pdhlibrary.com/sites/default/files/0007191-Introduction%20to%20Bracing%20Design%20For%20Cold-Formed%20Steel%20Structures.pdf
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Cold-Formed Steel Framing Design Guide, Second Edition

    https://scholarsmine.mst.edu/cgi/viewcontent.cgi?article=1160&context=ccfss-aisi-spec
    A universal designator system for Cold-Formed Steel Framing (CFSF) members has been used throughout the Guide. This product identification method is described in Appendix I. Changes from the 1 st Edition of the Design Guide The first edition of the Design Guide (AISI 2002a) has been completely rewritten to

BRACE FOR IMPACT! Bracing Design for Cold-Formed Steel Studs

    https://seblog.strongtie.com/2015/07/brace-for-impact-bracing-design-for-cold-formed-steel-studs/
    IBC Section 2211.4 permits Designers to design steel bracing for axially loaded studs using AISI S100 or S211. However, S100-07 requires the brace to be designed to resist not only 1% of the stud nominal axial compressive strength (S100-12 changes this to 1% of the required compressive axial strength), but also requires a certain brace stiffness.

Bracing Cold-Formed Steel Structures - Civil Engineering …

    https://www.civilax.com/bracing-cold-formed-steel-structures/
    This report is presented as a design guide and will assist the practicing engineer in designing cold-formed steel structures with greater levels of reliability, safety and economy. Content: 1. Introduction to Bracing Design 2. Cold-Formed Framing 3. Cold-Formed Steel in Metal Building Systems 4. Miscellaneous Cold-Formed Steel Elements and Systems

A Beginner’s Guide to Cold-Formed Steel Framing

    https://www.buildsteel.org/wp-content/uploads/2017/04/CFS_101_FINAL.pdf
    from structural quality sheet steel that are formed into C-sections and other shapes by roll forming the steel through a series of dies. No heat is required to form the shapes (unlike hot-rolled steel), hence the name cold-formed steel. A variety of steel thicknesses are available to meet a wide range of structural and non- structural applications.

Cold Formed Steel Bridging Design- The Steel Network

    https://steelnetwork.com/light-steel-framing-design-resources/cold-formed-steel-bridging/
    Load-rated positive mechanical attachment at each stud Utilizes only certified, 50ksi steel Accommodate most wall stud spacing, including 8″, 12″, 16″ & 24″ centers Value: Fast installation, where no clamping or welding is required Guide holes provided for …

Technical Guide for Cold-Formed Steel Framing Products

    https://www.cfsteel.org/assets/TechFiles/SFIATechSpec2018d1no5psf.pdf
    1. Where AISI S100-16 is referenced, it is the “North American Specifi cation for the Design of Cold-Formed Steel Structural Members”, 2016 Edition, with US provisions. 2. The strength increase from cold work of forming has been incorporated for fl exural strength per Section A7.2 of AISI S100-16. 3.

Cold-Formed Steel X-Brace Design - PDHonline.com

    https://pdhonline.com/courses/s181/s181_new.htm
    X-braces are one of the most commonly used lateral bracing systems for cold-formed steel structures. This course provides detailed guidance on the design and detailing of steel strap X-braces, from wind pressure calculations to lateral drift analysis to connection design.

General Cold-Formed Steel Framing FAQs - ClarkDietrich

    https://www.clarkdietrich.com/support/faqs/general-cold-formed-steel-framing-faqs
    Mechanical bracing can be either steel strapping or CRC (Cold-Rolled Channel) run horizontally through the stud punchouts and attached to each stud web. The maximum spacing for mechanical bracing of steel framing with combined loading is four (4) feet on center. See our lateral bracing details in our CAD Framing Details for more information.

Seismic Design of Cold-Formed Steel Lateral Load-Resisting …

    https://nvlpubs.nist.gov/nistpubs/gcr/2016/NIST.GCR.16-917-38.pdf
    Cold-formed steel (CFS) framing has been successfully used in a variety of construction applications for many years. Common uses include nonstructural partitions and ceilings, exterior curtain wall and façade support, and complete load-bearing structures, including lateral force-resisting systems (LFRS).

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