Background: The ambitious electrification targets set for the aeronautical sector are leading to a thorough research into improving the performance of different electromechanical components. In this regard, Additive Manufacturing is gaining strength due to the positive physical properties of the processed parts and the freedom in manufacturable geometries.
Methods: Thus, this article presents the design of an electric actuator for an aerospace active sidestick in which Additive Manufacturing is used with the aim of minimising the mass and power consumption of the device. The electromagnetic design of the actuator is detailed, considering 8 different permanent magnet machine topologies, and a mechanical design applying Topology Optimisation to reduce the overall mass of the component is carried out.
Results: Three prototypes involving the rotor, the stator and the casing are manufactured via Laser Powder Bed Fusion in stainless steel and Permendur (Fe Co V ) and the corresponding actuators are experimentally tested, showing a great agreement between tests and simulations and excellent repeatability in the electromagnetic behaviour of the prototypes.
Conclusions: The research results highlight the great potential of Additive Manufacturing to manufacture functional electrical machine components.
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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11897690 | PMC |
http://dx.doi.org/10.12688/openreseurope.17752.2 | DOI Listing |
Open Res Eur
February 2025
Egile Mechanics S.L., Polígono Industrial Kurutz-Gain, 12, Mendaro, 20850, Spain.
Background: The ambitious electrification targets set for the aeronautical sector are leading to a thorough research into improving the performance of different electromechanical components. In this regard, Additive Manufacturing is gaining strength due to the positive physical properties of the processed parts and the freedom in manufacturable geometries.
Methods: Thus, this article presents the design of an electric actuator for an aerospace active sidestick in which Additive Manufacturing is used with the aim of minimising the mass and power consumption of the device.
The present opinion deals with the re-evaluation of pullulan (E 1204) when used as a food additive and with the new application on the extension of use to several food categories. Pullulan (E 1204) is obtained by fermentation of a food-grade hydrolysed starch with non-genetically modified ■■■■■. Based on the available information, the Panel considered that the manufacturing process of pullulan (E 1204) using this microorganism does not raise a safety concern.
View Article and Find Full Text PDFFront Bioeng Biotechnol
February 2025
Wuxi People's Hospital, Wuxi, Jiangsu, China.
Porous titanium implants are becoming an important tool in orthopedic clinical applications. This review provides a comprehensive survey of recent advances in porous titanium implants for orthopedic use. First, the review briefly describes the characteristics of bone and the design requirements of orthopedic implants.
View Article and Find Full Text PDFMaterials (Basel)
March 2025
Jiangsu Key Laboratory of 3D Printing Equipment and Manufacturing, School of Electrical & Automation Engineering, Nanjing Normal University, Nanjing 210023, China.
Additive manufacturing (AM), often referred to as 3D printing, is a preferred technique for producing components that are challenging to manufacture through conventional methods [...
View Article and Find Full Text PDFMaterials (Basel)
March 2025
Department of Materials and Mineral Resources Engineering, National Taipei University of Technology, Taipei 10608, Taiwan.
In additive manufacturing (AM) metallic materials, heat treatment (HT) is a common process for modifying the unstable and anisotropic microstructure. Selective laser melting (SLM) Corrax maraging stainless steel is a novel material that has been applied in mold materials with conformal cooling channels in industry. However, the influences of HTs on the various mechanical properties of SLM Corrax steels are still not fully clarified.
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