Permanent formwork for concrete walls load bearing to 30 floors afs logicwall is a permanent formwork system for the fast track construction of load bearing internal and external concrete walls.
Permanent formwork for concrete walls.
Permanent formwork systems have become an attractive alternative to conventional masonry block precast concrete and in situ building methods for both builders and designers in australia.
The panels remain in place as sacrificial formwork leaving a high quality clean straight surface with minimal.
Typically permanent formwork is used for the construction of low storey building walls or in the construction of frame buildings.
Afs logicwall is a permanent formwork system for internal and external concrete walling.
Afs rediwall is a permanent pvc formwork system.
A compliant permanent formwork for concrete walls internal and external applications.
Permanent formwork for concrete walls load bearing to 30 floors.
Afs logicwall is manufactured off site in ireland and consists of lightweight sandwich panels created by bonding hard wearing fibre cement.
Afs logicwall is a fibre cement permanent formwork solution for internal and external concrete walling.
A versatile pvc formwork system that is codemark certified and ncc compliant for above and below ground application.
Available in a range of thicknesses to suit most architectural and.
Made from durable pvc lightweight permaform panels clip and slide together and are core filled with concrete to form walls.
Permaform is a permanent formwork system used to rapidly build internal and external load bearing walls.
Many permanent formwork systems on the market use prefabricated lightweight hollow panels or blocks that join together to form walls that have steel reinforcement placed in them and are core.
Unlike removable formwork permanent structure is filled with concrete and remains a part of the building.
The extruded components simply clip or slide into place automatically interconnecting for rapid assembly and an attractive low maintenance wall surface.