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Via Scuto Costarelli 99, Catania, IT

Operational offices

Via Franco Gorgone 4, Catania, IT

Via Alfredo Agosta SNC, Catania, IT

 

+39 095 429 0022

info@a4x.it

VAT: IT 05379160871
 

Registered office

Via Scuto Costarelli 99, Catania, IT

Operational offices

Via Franco Gorgone 4, Catania, IT

Via Alfredo Agosta SNC, Catania, IT

 

+39 095 429 0022

info@a4x.it

VAT: IT 05379160871
 

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Designs, builds, tests, manages and maintains projects in the field of telecommunications, civil and industrial.

Designs, builds, tests, manages and maintains projects in the field of telecommunications, civil and industrial.

A4X ENGINEERING - WORKS

Hendling system for INFN-LNS

www.a4x.it @ All Right Reserved 2022 | Website created by Flazio Experience

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assieme

Design studio

 

Hendling system for INFN-LNS

The National Institute of Nuclear Physics, abbreviated to INFN, is the Italian research institute that promotes, coordinates and carries out scientific research in the field of nuclear, subnuclear and astro particle and fundamental interactions, as well as the technological development necessary for activities in these sectors.

 

The client's request foresaw the executive design of an automatic handling system, by ion beam line, by means of a trolley on linear guides of a system of magnets.

 

The movement of the body with a mass of about three tons along a very specific trajectory involves a high complexity of the system being designed. In addition, the need to comply with very tight tolerances of coupling and position of the parts is of fundamental attention in order to ensure the optimal functioning of the cyclotron group.

 

A4x engineering's goal was to satisfy both the resistance and performance requirements of the mechanical and electronic parts designed.

 

For the dimensioning of the sections, the number of beams and the geometry to be assigned to the model, we relied on the criterion of maximum distortion energy or Von Mises, calculated using the "Solidworks simulation" type FEM (Finite Element Method).

 

Click the photos to view the gallery:

Activities carried out:

1. Definition of the optimal movement trajectory;
2. Support frames dimensioning;
3. Calculation of static and dynamic friction pairs;
4. Implementation of Handling automatism;
5. Electrical project;

6. Test and validation.

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