The aim of this work is the study of the geometry of the main superconducting dipole for the Large Hadron Collider from the manufacturing process throughout the pre-operative stages to predict the respect of the tight tolerance, imposed by the beam dynamic, in both nominal and chancy working conditions. Expected and unexpected situations have been approached through the development of dedicate models and tests with the purpose of evaluating their impact on magnet geometry. In our study we used structural models of different complexity for different purposes. For example we used analytical models in conjunction with the cold mass geometry database to simulate the overall effect of individual geometry corrections or to discriminate elastic fr...
We have measured the magnetic field at room temperature and at 1.8 K on more than twenty, 1-m long, ...
Practical experience has been attained on the LHC Test String (String~1), composed of one 3~m long s...
Field quality in superconducting magnets strongly depends on the geometry of the coil. Fiberglass sp...
In this work a detailed analysis of the influence of the mechanical components and the assembly proc...
The production of the dipole magnets for the Large Hadron Collider is at its final stage. Neverthele...
Based on criteria of different nature such as the control of the mechanical aperture or the preserva...
The superconducting dipole of the Large Hadron Collider (LHC) is a cylindrical structure made of a s...
In superconducting magnets for particle accelerators the mechanical accuracy along the length of the...
N° d'ordre : DU 1722, EDSF : 521The 1234 superconducting dipoles of the Large Hadron Collider, worki...
The stability of the geometry of the superconducting coils is essential to the field homogeneity of ...
The detailed shape of the 15 m long superconducting LHC dipole cold mass is of high importance as it...
In order to predict the mechanical behavior of the LHC dipole cold mass in situations such as handli...
A 3D finite element mechanical model has been developed to simulate the complex geometry of the extr...
After years of studies and observations, the mechanical stability of the LHC main dipole magnets sti...
The mechanical structure of the main LHC dipole is analysed. A finite element model is used to estim...
We have measured the magnetic field at room temperature and at 1.8 K on more than twenty, 1-m long, ...
Practical experience has been attained on the LHC Test String (String~1), composed of one 3~m long s...
Field quality in superconducting magnets strongly depends on the geometry of the coil. Fiberglass sp...
In this work a detailed analysis of the influence of the mechanical components and the assembly proc...
The production of the dipole magnets for the Large Hadron Collider is at its final stage. Neverthele...
Based on criteria of different nature such as the control of the mechanical aperture or the preserva...
The superconducting dipole of the Large Hadron Collider (LHC) is a cylindrical structure made of a s...
In superconducting magnets for particle accelerators the mechanical accuracy along the length of the...
N° d'ordre : DU 1722, EDSF : 521The 1234 superconducting dipoles of the Large Hadron Collider, worki...
The stability of the geometry of the superconducting coils is essential to the field homogeneity of ...
The detailed shape of the 15 m long superconducting LHC dipole cold mass is of high importance as it...
In order to predict the mechanical behavior of the LHC dipole cold mass in situations such as handli...
A 3D finite element mechanical model has been developed to simulate the complex geometry of the extr...
After years of studies and observations, the mechanical stability of the LHC main dipole magnets sti...
The mechanical structure of the main LHC dipole is analysed. A finite element model is used to estim...
We have measured the magnetic field at room temperature and at 1.8 K on more than twenty, 1-m long, ...
Practical experience has been attained on the LHC Test String (String~1), composed of one 3~m long s...
Field quality in superconducting magnets strongly depends on the geometry of the coil. Fiberglass sp...