Projects
System wählen:
Fassadenmaterial wählen:
Baths Quarter, Baden
Invisible fastening of the horizontal stone slabs in strips, so that each slab can be individually attached or detached
Extensive component testing to ensure optimal interaction between stone slabs and the substructure
Facade material: Natural stone slabs and fiber-reinforced concrete
Eiger Glacier Mountain Station
Structural design for increased wind and snow loads
Challenging installation and implementation at 2,320 meters above sea level.
Facade material: Fiber-reinforced concrete
Triad, Sursee
Optimizing the design in advance with all stakeholders to ensure a solution that can withstand high wind and seismic loads
Determining the optimal fastener design in advance based on component testing
Facade material: Fiber-reinforced concrete
Zurich City Police
Safe installation of curved GFB elements weighing up to 800 kg and measuring up to 5 m in length, with high ease of installation
Newly developed special stainless steel brackets and a new, very rigid T-profile designed to support heavy loads
Facade material: Fiber-reinforced concrete
Westbahnhofstrasse, Solothurn
Three-dimensional facade elements made of fiber-reinforced concrete, designed to be installed on-site as easily as possible using an optimal substructure
Factory pre-assembly for highly efficient installation; special brackets with a 20 mm Thermostop backing for maximum insulation performance
Facade material: Fiber-reinforced concrete
Labitzke, Zurich
Heavy facade elements and varying building depths
Development of an efficient solution in which the primary substructure consists, as far as possible, of a single level
Facade material: Fiber-reinforced concrete
Ziegelhof, Horn
Challenge posed by the heavy weight of the facade elements, which are positioned more than 300 mm in front
This places special emphasis on the " brackets" anchoring system and seismic safety
Facade material: fiber-reinforced concrete and plaster base panels
Schuppis, Zurich
Development of a new support profile to significantly reduce installation effort
Reduction in the number of clips required thanks to optimized plate geometry
Facade material: Fiber-reinforced concrete
Riedmatt Multipurpose Hall, Wollerau
High static loads due to large fiber-reinforced concrete elements and limited fastening options caused by the building's structural design
Development of a design based on flexible standardization to ensure high cost-effectiveness
Facade material: fiberglass-reinforced concrete
Falkeisenmatte, Zofingen
Invisible installation of vertically oriented GFB panels up to 2,845 mm in length
A customized system designed to significantly reduce the number of substructure components required
customized system
Facade material: Fiber-reinforced concrete
C&A, Zurich
Implementation of a precise joint pattern specified by the architect
Installation of additional brackets and vertical T-profiles to support heavy loads
Facade material: Fiber-reinforced concrete
Bank Linth, Rapperswil
Renovating Older Buildings on Unknown Soil Conditions: A Challenge
Custom solutions for the roof edge area, the vertical pilaster strips, and, in general, load transfer to the foundation
Facade material: Fiber-reinforced concrete
Allopa, Zurich
The relatively heavy weight and varying depths of the facade elements, which in many cases are not parallel to the building shell
An installation-friendly solution achieved through the development of a custom angle profile
Facade material: Fiber-reinforced concrete