Projects
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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
Structural design for increased wind and snow loads
Challenging installation and implementation at 2,320 meters above sea level.
Facade material: Fiber-reinforced concrete
A solution that seamlessly combines the substructure, fall protection, and precise geometries
Combination of the OM system with Thermo H-brackets , and custom design of an integrated aluminum window frame with railing
Facade material: Composite materials and profiled frames
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
An extreme challenge posed by the requirement for a high degree of perforation in the exterior facade
Shaping of the 3D elements just before assembly and just-in-time delivery to the construction site
customized system
Facade material: 3D composite material
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
Installation of photovoltaic panels in various configurations over an area of 1,210 square meters
Thanks to early communication, crucial adjustments are made to the steel structure, which make the optimal primary profile grid possible in the first place
Facade material: PV modules
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
Large-format, voluminous, three-dimensional elements made of ALUCOBOND, combined with limited space around the construction site
To ensure smooth logistics: Delivery of the elements in a flat state; unfolding only on site; bonding with prefabricated crossbars and riveting
Facade material: 3D composite material
Custom design for suspended ceilings with a wide span
High Efficiency Through Close Collaboration
Material of the soffits: plaster base with soundproofing panels
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
Challenges posed by a high dead load of 100 kg/m², high wind and seismic loads, and a large suspension distance
Facade material: glass tiles
Cost-effective and systematic installation of a facade featuring 730 photovoltaic modules
Material- and labor-efficient implementation
Facade material: Glass and PV modules
High demands on structural integrity, connection details, and dimensionally accurate installation
Development of a new solution for narrower parapet elements based on the UB system
Facade materials: natural stone slabs, fiber-reinforced concrete
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
Installation of solar panels on the existing main building facade using a custom version of our GH Solar mounting system
Facade material: PV modules
Adjustment and optimization of the force distribution of the pultruded profiles to accommodate wind loads on the company's in-house test wall
Development of special sliding supports for the unrestricted mounting of ceiling panels
customized system
Facade material: Plastic profiles
Limited options for attaching the substructure to the very large 3D elements
Substructure made of special, partially welded " brackets " and optimization of the visual design and drainage of the cladding on the mockup
Facade material: 3D composite material
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
The challenge posed by a facade consisting of closely spaced, trapezoidal-cross-section slats and curved elements
Maximizing the bracket spacing for minimal heat loss and improved rounding of the corner areas through a symmetrical U-profile
customized system
Facade material: slats made of aluminum profiles
Unknown load-bearing capacity of the sheet metal cassettes; therefore, the structurally feasible spans are unknown
Testing the load-bearing capacity and the resulting substructure using a wind load test with the original cladding on the Ecolite test wall
Facade material: perforated metal panels
Seamless transition of the balcony and window cladding into the horizontal profiles
Cost-effective manufacturing of components thanks to our efficient production processes
Facade material: Profiles, railings, composite material
Invisible mounting of the profile tubes using pre-assembled support brackets
Customization of the Thermo H brackets specifically for this building
Facade material: composite material
Challenges Posed by Different Materials and Construction Depths
Flexible, robust, and aesthetically pleasing
Facade Materials: Wood and Composite Materials
Vertical protective slats up to 11 meters long that must be installed without thermal bridges and with free expansion
Special slotted holes on the primary profiles to prevent creaking noises and binding
Facade material: Profiles
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
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
Lehner Dispatch, Schenkon
Installation of photovoltaic panels in various configurations over an area of 1,210 square meters
Thanks to early communication, crucial adjustments are made to the steel structure, which make the optimal primary profile grid possible in the first place
Facade material: PV modules
Kobiboden Industrial Building, Einsiedeln
Cost-effective and systematic installation of a facade featuring 730 photovoltaic modules
Material- and labor-efficient implementation
Facade material: Glass and PV modules
Unimail, Neuchâtel
Installation of solar panels on the existing main building facade using a custom version of our GH Solar mounting system
Facade material: PV modules