The main busbar interconnection splices of the Large Hadron Collider are assembled by inductive soldering of the Rutherford type cables and the copper profiles of the stabilizer. Following the September 2008 incident, the assembly process and the quality assurance have been improved, with new measurement and diagnostics methods introduced. In the 2008-2009 shutdown the resistance both in the superconducting and in the normal conducting states have been the focus for improvements. The introduction of gamma radiography has allowed the visualization of voids between cable and stabilizer. It is now known that during the standard soldering heating cycle solder is lost from the busbar extremities adjacent to the splice profiles, leaving parts of ...
To eliminate the risk of thermal runaways in LHC interconnections a consolidation by placing shunts ...
Electrical splices between NbTi Rutherford type cables need to be made for the LHC IR inner triplet ...
The Large Hadron Collider (LHC) is designed to operate at a nominal energy of 14 TeV in the center o...
Following the QPS review in February 2009, a potential source of problems with the main circuit bus ...
Following the analysis of the September 2008 LHC incident, the assembly process and the quality assu...
Following the analysis of the September 2008 LHC incident, the assembly process and the quality assu...
The electrical interconnections between the LHC main magnets are made of soldered joints (splices) o...
The interconnections between the LHC main magnets are made of soldered joints (splices) of two super...
At each interconnection between LHC main magnets a low-resistance solder joint must be made between ...
During the 2008/2009 shutdown the so-called R-8/R-16 room temperature resistance test has been intro...
For the consolidation of the LHC main interconnection splices it is planned to solder shunts onto ea...
The different LHC main bus bar splice components (bus bar cable, splice U-piece and wedge and bus ba...
The main magnets of the Large Hadron Collider are powered by 13-kA superconducting bus-bars. The bus...
For the consolidation of the LHC 13 kA main interconnection splices, shunts will be soldered onto ea...
In 2008 a defective connection in one of the 13 kA dipole circuits of the LHC caused an electric bre...
To eliminate the risk of thermal runaways in LHC interconnections a consolidation by placing shunts ...
Electrical splices between NbTi Rutherford type cables need to be made for the LHC IR inner triplet ...
The Large Hadron Collider (LHC) is designed to operate at a nominal energy of 14 TeV in the center o...
Following the QPS review in February 2009, a potential source of problems with the main circuit bus ...
Following the analysis of the September 2008 LHC incident, the assembly process and the quality assu...
Following the analysis of the September 2008 LHC incident, the assembly process and the quality assu...
The electrical interconnections between the LHC main magnets are made of soldered joints (splices) o...
The interconnections between the LHC main magnets are made of soldered joints (splices) of two super...
At each interconnection between LHC main magnets a low-resistance solder joint must be made between ...
During the 2008/2009 shutdown the so-called R-8/R-16 room temperature resistance test has been intro...
For the consolidation of the LHC main interconnection splices it is planned to solder shunts onto ea...
The different LHC main bus bar splice components (bus bar cable, splice U-piece and wedge and bus ba...
The main magnets of the Large Hadron Collider are powered by 13-kA superconducting bus-bars. The bus...
For the consolidation of the LHC 13 kA main interconnection splices, shunts will be soldered onto ea...
In 2008 a defective connection in one of the 13 kA dipole circuits of the LHC caused an electric bre...
To eliminate the risk of thermal runaways in LHC interconnections a consolidation by placing shunts ...
Electrical splices between NbTi Rutherford type cables need to be made for the LHC IR inner triplet ...
The Large Hadron Collider (LHC) is designed to operate at a nominal energy of 14 TeV in the center o...