Abstract
Modular Construction Optimised (MCO) beams, cold-formed steel sections with rigid hollow-flanges tailored for prefabricated floor systems, require clear guidance when incorporating large unstiffened circular web openings (>38 % of clear web height). This study fills that gap by: (1) developing and validating detailed nonlinear finite-element (FE) models against thirteen experimental tests (mean FE/exp = 1.01, COV = 0.02 for plain and web-perforated sections); (2) conducting a systematic parametric study of 288 FE models varying section dimensions, material yield (300–600 MPa), and opening ratios (0.4–0.8); (3) quantifying that openings up to 60 % reduce ultimate moment capacity (Mu) by < 5 %, while 80 % openings incur a 10 % average reduction; and (4) deriving simple reduction-factor equations that predict Mu with mean = 1.00 and COV = 0.03. Comparative analyses demonstrate that MCO beams with 80 % openings outperform equivalent unperforated Lipped Channel Beams by an average of 32 % in Mu, highlighting their strength-to-weight advantage despite large hole sizes. These findings provide engineers with validated design rules and practical equations for integrating large service openings into modular cold-formed steel floors.
| Original language | English |
|---|---|
| Article number | e05220 |
| Journal | Case Studies in Construction Materials |
| Volume | 23 |
| Early online date | 26 Aug 2025 |
| DOIs | |
| Publication status | Published - 1 Dec 2025 |
Keywords
- Design guidelines
- Finite element analysis
- Modular construction optimised beam
- Ultimate moment capacity
- Web opening
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