For electrical and thermal stability the Nb3Sn compound is distributed into fine filaments (up to about 50 micrometers diameter) and embedded in a resistive matrix. Nb3Sn formation requires a solid state diffusion reaction at high temperature, which causes transformation strains in each material during cool down. The energisation modifies this initial strain field because Lorentz forces act as bending loads on the strands inside the cable. In this work we present a thermo-mechanical model to compute the strand initial strain field and the distribution of strain due to the following bending. It is based on a generalized self-consistent like homogenisation, suitably developed to deal with the material non-linearity and the coupling between th...
The transport performance of Nb3 Sn cable-in- conduit conductors (CICCs) depends on the strain distr...
An accurate estimation of the strain state of a strand inside a coil is a crucial point in the predi...
After the last year\u2019s decision about the construction site, ITER (International Thermonuclear E...
For electrical and thermal stability the Nb3Sn compound is distributed into fine filaments (up to ab...
For electrical and thermal stability, in superconducting strands the Nb3Sn compound is distributed i...
For electrical and thermal stability, in superconducting strands the Nb3Sn compound is distributed i...
For electrical and thermal stability the Nb3Sn compound is distributed into fine filaments (up to ab...
In Nb3Sn CIC conductors, the superconducting compound is distributed into fine filaments and embedde...
The superconducting magnet structure of the future International Thermonuclear Experimental Reactor ...
The superconducting magnet structure of the future International Thermonuclear Experimental Reactor ...
Recent experimental results on the International Thermonuclear Experimental Reactor (ITER) Central S...
The ability to compute accurately the strain field in Nb3Sn filaments is a crucial point in cable de...
The transport performance of Nb3Sn cable-inconduit conductors (CICCs) depends on the strain distribu...
An accurate estimation of the strain state of a strand inside a coil is a crucial point in the predi...
The transport performance of Nb3 Sn cable-in- conduit conductors (CICCs) depends on the strain distr...
The transport performance of Nb3 Sn cable-in- conduit conductors (CICCs) depends on the strain distr...
An accurate estimation of the strain state of a strand inside a coil is a crucial point in the predi...
After the last year\u2019s decision about the construction site, ITER (International Thermonuclear E...
For electrical and thermal stability the Nb3Sn compound is distributed into fine filaments (up to ab...
For electrical and thermal stability, in superconducting strands the Nb3Sn compound is distributed i...
For electrical and thermal stability, in superconducting strands the Nb3Sn compound is distributed i...
For electrical and thermal stability the Nb3Sn compound is distributed into fine filaments (up to ab...
In Nb3Sn CIC conductors, the superconducting compound is distributed into fine filaments and embedde...
The superconducting magnet structure of the future International Thermonuclear Experimental Reactor ...
The superconducting magnet structure of the future International Thermonuclear Experimental Reactor ...
Recent experimental results on the International Thermonuclear Experimental Reactor (ITER) Central S...
The ability to compute accurately the strain field in Nb3Sn filaments is a crucial point in cable de...
The transport performance of Nb3Sn cable-inconduit conductors (CICCs) depends on the strain distribu...
An accurate estimation of the strain state of a strand inside a coil is a crucial point in the predi...
The transport performance of Nb3 Sn cable-in- conduit conductors (CICCs) depends on the strain distr...
The transport performance of Nb3 Sn cable-in- conduit conductors (CICCs) depends on the strain distr...
An accurate estimation of the strain state of a strand inside a coil is a crucial point in the predi...
After the last year\u2019s decision about the construction site, ITER (International Thermonuclear E...