Light-gauge steel framed (LSF) wall systems are made of cold-formed steel studs and tracks and lined with gypsum plasterboards. They are mostly cavity insulated to provide acoustic and thermal performance. Cavity insulation delays the temperature rise across the wall as it restrains the heat transfer. This delays the ambient plasterboard surface temperature rise and thus improves the insulation failure time of LSF walls. However, LSF walls are also used as load bearing walls. Having cavity insulation causes the fire side temperatures to increase rapidly, resulting in a higher temperature gradient across the stud depth. This leads to higher thermal bowing deflection and crack openings on the fire side plasterboard and exposing studs to highe...
Load-bearing Light Gauge Steel Frame (LSF) walls are made of cold-formed steel frames and lined with...
Recent research at the Queensland University of Technology has investigated the structural and therm...
Recent research at the Queensland University of Technology has investigated the structural and therm...
Light-gauge steel framed (LSF) wall systems are made of cold-formed steel studs and tracks and lined...
Light gauge steel framed (LSF) walls are used in fire compartmentation to prevent the spread of fire...
Light gauge steel framed (LSF) walls are used in fire compartmentation to prevent the spread of fire...
Light gauge steel framed (LSF) walls are used in fire compartmentation to prevent the spread of fire...
Fire resistance of Light Gauge Steel Frame (LSF) wall systems is important in the emerging mid-rise ...
Cold-formed steel stud walls are a major component of Light Steel Framing (LSF) building systems use...
Fire resistance of Light Gauge Steel Frame (LSF) wall systems is important in the emerging mid-rise ...
The load-bearing light-gauge steel-framed (LSF) wall systems used in buildings are protected against...
Cold-formed steel stud walls are an important component of Light Steel Framing (LSF) building system...
Cold-formed steel stud walls are an important component of Light Steel Framing (LSF) building system...
Light Gauge Steel Framing (LSF) walls are made of cold-formed, thin-walled steel lipped channel stud...
Light gauge steel frame (LSF) wall systems are increasingly used in residential and commercial build...
Load-bearing Light Gauge Steel Frame (LSF) walls are made of cold-formed steel frames and lined with...
Recent research at the Queensland University of Technology has investigated the structural and therm...
Recent research at the Queensland University of Technology has investigated the structural and therm...
Light-gauge steel framed (LSF) wall systems are made of cold-formed steel studs and tracks and lined...
Light gauge steel framed (LSF) walls are used in fire compartmentation to prevent the spread of fire...
Light gauge steel framed (LSF) walls are used in fire compartmentation to prevent the spread of fire...
Light gauge steel framed (LSF) walls are used in fire compartmentation to prevent the spread of fire...
Fire resistance of Light Gauge Steel Frame (LSF) wall systems is important in the emerging mid-rise ...
Cold-formed steel stud walls are a major component of Light Steel Framing (LSF) building systems use...
Fire resistance of Light Gauge Steel Frame (LSF) wall systems is important in the emerging mid-rise ...
The load-bearing light-gauge steel-framed (LSF) wall systems used in buildings are protected against...
Cold-formed steel stud walls are an important component of Light Steel Framing (LSF) building system...
Cold-formed steel stud walls are an important component of Light Steel Framing (LSF) building system...
Light Gauge Steel Framing (LSF) walls are made of cold-formed, thin-walled steel lipped channel stud...
Light gauge steel frame (LSF) wall systems are increasingly used in residential and commercial build...
Load-bearing Light Gauge Steel Frame (LSF) walls are made of cold-formed steel frames and lined with...
Recent research at the Queensland University of Technology has investigated the structural and therm...
Recent research at the Queensland University of Technology has investigated the structural and therm...