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IIR document
Dynamic temperature measurement for magnetocaloric materials.
Phenomenological model for a first-order magnetocaloric material.
A test stand to measure the magnetization work of magnetocaloric materials.
Environment-assisted crack nucleation in La(Fe,Mn,Si)13-based magnetocaloric materials.
Using numerical methods to screen magnetocaloric materials in an active magnetic regenerative cycle.
A new model of first-order magnetocaloric materials with experimental validation.
Iron and manganese based magnetocaloric materials for near room temperature thermal management.
Power output of magnetocaloric materials during heat and cold decoupling by unidirectional fluid flow.
Experimental impact of magnet and regenerator design on the refrigeration performance of first-order magnetocaloric materials.
Modified mean-field theory with phenomenological model of volume effects for 1st order transition magnetocaloric materials.
Temperature dependent thermal conductivity of magnetocaloric materials: Impact assessment on the performance of active magnetic regenerative refrigerators.
Recent experimental results of first order LaFeSi-based magnetocaloric materials in an Active Magnetic Regeneration device.
Numerical investigation and performance evaluation of the MnFe-based composite magnetocaloric material with large magnetic entropy change over a wide temperature range.
Some aspects of scaling and universality in magnetocaloric materials.
Impact of magnetocaloric material specifications on machine design and performance.