Webinar on Radiused Cold-Formed Steel Structure Design
$100.00
Continuing Education Credits Available – 1.5 PDH Credits
This presentation explores the challenges of designing radiused cold-formed steel (CFS) members from a practical engineering perspective. While traditionally used in straight applications, radiused CFS members offer a versatile, lightweight, and cost-effective option for radiused structures, but require careful analysis to ensure adequate strength and performance.
The session will focus on several key areas:
- Curving Cold-Formed Steel Members:Techniques such as stretch forming, crimping, and tabbed assemblies are required to curve CFS members, altering their strength and stiffness compared to standard designs. We’ll discuss each method’s benefits and limitations in various scenarios.
- Evaluating Projects for Radiused CFS Applications: Radiused layouts aren’t always practical or cost-effective. We’ll explore criteria like architectural intent, load paths, framing orientation, and fabrication constraints to assess when radiused CFS members are a good fit. Examples of successful projects will provide a decision-making framework.
- Capacity and Torsional Behavior: Understanding how radiused CFS members behave under bending and torsion is key to ensuring performance. While torsion can often be avoided, in some cases it’s the most efficient option. We’ll look at how curvature impacts forces, deflection, and member design, focusing on built-up sections.
- Delegating Design Responsibilities: Designing radiused members involves collaboration among engineers, delegated designers, and fabricators. We’ll address how to delegate radiused framing by establishing performance criteria and minimum properties to meet your design intent, considering how the manufacturing processes can affect strength and stiffness.
- Connection Detailing for Curved CFS Members: Detailing connections for curved members poses unique challenges, often exceeding standard detailing practices. We’ll discuss strategies for handling these non-standard loads and restraints, ensuring connection integrity.
- Design Examples (time permitting): A walk-through of the design process for a radiused CFS member will conclude the session, covering manufacturer capacity adjustments, torsional design, and connection detailing.
This presentation will provide practical guidance for engineers working with radiused CFS members, offering insights into design, evaluation, and detailing techniques.
Presenters
Josh Garton, P.E., S.E.
McClure
Josh is a Technical Manager for McClure and a licensed structural engineer with a decade of experience. His design expertise includes multi story load bearing cold formed steel (CFS) structures, industrial structural steel components, non bearing CFS systems, radiused and uniquely shaped structures framed with CFS. Josh oversees a team of design professionals within McClure’s Enclosures and Interiors group. In addition to his project work, Josh is on the Cold Formed Steel Engineers Institute (CFSEI) Executive committee and presented at various national conferences and seminars.
Daniel Linneman, P.E., S.E.
McClure
Daniel is a licensed structural project manager at McClure with nearly seven years of experience specializing in multi story, load bearing cold formed steel (CFS) structures. As a former lead designer on numerous projects, he has delivered innovative solutions to complex structural challenges and helped drive successful project outcomes. In addition to his deep expertise in CFS systems, Daniel brings significant experience in wood and steel design and a strong background in post tensioned concrete, giving him versatility across a wide range of building types. He is also skilled in developing advanced engineering tools, creating complex Excel based calculation and workflow systems that improve efficiency for project teams. Daniel is licensed as a Professional Engineer in six states, including California.
In order to receive credit for this course, you must complete the quiz at the end and pass with at least 80% for a certificate to be generated automatically







Presenter: Natasha Zamani, Ph.D., P.E.
Dr. Roger A. LaBoube is Curator’s Distinguished Teaching Professor Emeritus of Civil, Architectural and Environmental Engineering and Director of the Wei-Wen Yu Center for Cold-Formed Steel Structures at the Missouri University of Science & Technology (formerly University of Missouri-Rolla). Dr. LaBoube holds B.S., M.S., and Ph.D. in Civil Engineering from the University of Missouri-Rolla. Dr. LaBoube has an extensive background in the design and behavior of cold-formed steel structures. His research and design activities have touched on many facets of cold-formed steel construction to include: cold-formed steel beams, panels, trusses, headers, wall studs as well as bolt, weld, and screw connections. Dr. LaBoube is active in several professional organizations and societies, including a member of the American Iron and Steel Institute’s Committee on Specifications for the North American Specification for the Design of Cold-Formed Steel Structural Members and chairman of the AISI Committee on Framing Standards. He is a Registered Professional Engineer in Missouri.
Jon-Paul currently serves as a codes and standards engineer for the American Iron and Steel Institute (AISI). In this position, he represents the interests of the steel construction industry in the national codes and standards arenas. Specifically, Jon-Paul is active in the International Code Council (IBC, IRC), ASCE 7 and NFPA 5000, as well as the AISI Committee on Specifications and AISI Committee on Framing Standards. Prior to joining AISI, Jon-Paul served as the engineering manager for a steel framing manufacturer. He holds Bachelor of Science degrees in both Civil Engineering (Structural) and Mathematics from the University of Idaho.
Dr. Roger A. LaBoube is Curators’ Distinguished Teaching Professor Emeritus of Civil, Architectural and Environmental Engineering and former director of the Wei-Wen Yu Center for Cold-Formed Steel Structures (CCFSS) at the Missouri University of Science & Technology, formerly known as the University of Missouri-Rolla. Dr. LaBoube holds B.S., M.S., and Ph.D. degrees in Civil Engineering from the University of Missouri-Rolla. He has an extensive background in the design and behavior of cold-formed steel structures. His research and design activities have touched on many facets of cold-formed steel construction, including cold-formed steel beams; panels; trusses; headers; wall studs; and bolt, weld, and screw connections. Dr. LaBoube is active in several professional organizations and societies, including membership on the American Iron and Steel Institute’s (AISI) Committee on Specifications and as chairman of AISI’s Committee on Framing Standards. He is a registered Professional Engineer in Missouri. Dr. LaBoube is a frequent presenter of CFSEI webinars, answers questions from engineers through the CFSEI Hotline, and remains active in developing cold-formed steel standards through the AISI Committee on Framing Standards.