Journal of Materials Science and Nanomaterials
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  • Opinion   
  • J Mater Sci Nanomater,

Utilizing Additive Manufacturing, Direct Energy Deposition is used with Soft Magnetic Materials

Leiza Zuores*
Center for Energy Harvesting Materials and Systems, Virginia Tech, Blacksburg, VA 24061, U.S.A
*Corresponding Author : Leiza Zuores, Center for Energy Harvesting Materials and Systems, Virginia Tech, Blacksburg, VA 24061, U.S.A, Email: leizauores@umich.edu

Received Date: Jan 02, 2023 / Published Date: Jan 31, 2023

Abstract

Laser- grounded cumulative manufacturing ( AM) is an arising fast prototyping technology with the point of a rapidfire cooling process, which is crucial to carrying unique microstructures. It’s possible to ameliorate the performance and reduce the cost of glamorous products by applying Ray- grounded AM because their microstructure plays a significant part. Direct energy deposit ( DED) for soft glamorous material is a promising system. This exploration verifies the feasibility of the idea. It designs and optimizes the printing parameters and processes by quality control trials inspired by the Taguchi system and analysis of friction models to gain published soft glamorous accoutrements with many blights and cracks [1]. Also, it presents the parcels of DED- published silicon iron samples by conducting optic and surveying electron microscopy and glamorous characterization.

Citation: Zuores L (2023) Utilizing Additive Manufacturing, Direct EnergyDeposition is used with Soft Magnetic Materials. J Mater Sci Nanomater 7: 060.

Copyright: © 2023 Zuores L. This is an open-access article distributed under theterms of the Creative Commons Attribution License, which permits unrestricteduse, distribution, and reproduction in any medium, provided the original author andsource are credited.

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