Strong hold for cutting-edge research

fischer fastening systems in the new biotechnology centre at the University of Bologna

Strong hold for cutting-edge research
The University of Bologna is expanding its research capacities: a state-of-the-art biotechnology centre for chemistry, pharmacy and applied sciences was built on the Plesso Navile campus. To reliably fasten the complex building services in the demanding laboratories, the project team relied on chemical and mechanical systems as well as digital engineering from fischer.

The challenge: Protection for sensitive laboratory technology

Research buildings for biotechnological and chemical applications place above-average requirements on the supporting structure and building services. 

  • Vibration protection: Highly sensitive measuring instruments in the laboratories must not be disturbed by vibrations from ventilation or utility lines.
  • Earthquake safety: The fastening concepts had to reliably meet the regulatory requirements for seismic protection in the region.
  • Complex routing: Large quantities of utility lines required installation-friendly, flexible suspensions.

Project profile

Building owner
Alma Mater Studiorum – Università di Bologna
Special requirements
Seismic fastening (seismic), vibration damping for vibration-sensitive analytical equipment, flexible cable routing for complex laboratory technology
Planning and execution
ITI Impresa Generale S.p.A. (construction execution) & Studio di Ingegneria Diana Giarola (structural and MEP planning)
Project
New construction of biotechnology center (Campus Plesso Navile)
Location
Bologna, Emilia-Romagna, Italy
fischer solutions
High-performance chemical mortars, heavy-duty mechanical anchors, concrete screws, modular channel and installation systems

The solution: Perfectly coordinated fastening systems

fischer supplied the right technical solution for every application.

  • Chemical anchorages: Approved fischer injection mortars and high-performance mortars were used where high loads had to be transferred into load-bearing concrete components without expansion pressure – particularly where edge distances and spacing were minimal in slab and column areas.
  • Mechanical fixings: For fast, high-load installations, fischer bolt anchors and directly cutting concrete screws were used, which are characterised by quick installation and immediate load-bearing capacity.

Modular installation systems

Pipe routes, cable trays and ventilation ducts were suspended using the fischer channel system. The system enabled cost-effective, adaptable routing and integrated sound- and vibration-decoupling elements to attenuate dynamic impulses.

Digitally planned: Efficient with BIM and software

The engineering team at fischer Italy supported the planners and installers from the very beginning. With the fischer design software, the anchorage points were precisely designed for static and dynamic load cases. Thanks to the integration of all fastening components into Building Information Modeling (BIM), planning errors were avoided at an early stage and workflows on the construction site were accelerated.

Universität Bologna
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