Journal de la science des matériaux et des nanomatériaux

Accès libre

Notre groupe organise plus de 3 000 séries de conférences Événements chaque année aux États-Unis, en Europe et en Europe. Asie avec le soutien de 1 000 autres Sociétés scientifiques et publie plus de 700 Open Access Revues qui contiennent plus de 50 000 personnalités éminentes, des scientifiques réputés en tant que membres du comité de rédaction.

Les revues en libre accès gagnent plus de lecteurs et de citations
700 revues et 15 000 000 de lecteurs Chaque revue attire plus de 25 000 lecteurs

Abstrait

Using Thermal Strain to Create a Magnetically Graded Material In-Situ

Felicity Freeman

A key differentiator for additive manufacturing is spatially resolved functional grading, which enables a level of control not possible with conventional methods. Utilizing the solid-state austenite-martensite phase transformation, we create an in-situ microstructurally and magnetically graded single-composition material by utilizing the rapid solidification and thermal strain associated with selective laser melting. The thermal martensite start temperature is lowered by the fine grain sizes produced by high cooling rates, thereby increasing the proportion of retained austenite. Then, martensitic transformation driven by in-situ deformation is caused by the thermal strain that was added during the construction. We have been able to control the final ratio of austenite to martensite by controlling the thermal strain and the build parameters and geometry. Partially austenitic regions exhibit paramagnetic behavior, whereas dual-phase regions with an increasing proportion of martensite exhibit ferromagnetic behavior. This enables us to construct a magnetically graded rotor that is successfully utilized in a synchronous motor.