4.7 Review

Recent advances of electromagnetic interference shielding Mg matrix materials and their processings: A review

Journal

TRANSACTIONS OF NONFERROUS METALS SOCIETY OF CHINA
Volume 32, Issue 5, Pages 1385-1404

Publisher

ELSEVIER
DOI: 10.1016/S1003-6326(22)65881-3

Keywords

magnesium; electromagnetic interference shielding; alloying; heat treatment; plastic deformation; composite processing

Funding

  1. National Natural Science Foundation of China [51871068, 51771060, 51971071, 52011530025]
  2. Domain Foundation of Equipment Advance Research of 13th Five-year Plan, China [61409220118]
  3. Fundamental Research Funds for the Central Universities, China [3072020CFT1006]
  4. Fundamental Research Funds for the Heilongjiang Universities, China [2020-KYYWF-0532]
  5. PhD Student Research and Innovation Fund of the Fundamental Research Funds for the Central Universities, China [3072021GIP1002]
  6. Zhejiang Province Key Research and Development Plan, China [2021C01086]

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Mg matrix materials have emerged as the best lightweight electromagnetic interference (EMI) shielding structural materials due to their exciting properties and wide range of applications. This work provides an overview of the research on the EMI shielding properties of Mg matrix materials, focusing on the influence of alloying, heat treatment, plastic deformation, and composite processing, and concludes with future perspectives.
In terms of lightweight electromagnetic interference (EMI) shielding structural materials, Mg matrix materials have proven to be the best, due to their exciting properties (e.g. low density, high specific strength, good electrical conductivity and excellent EMI shielding properties) and their wide range of applications in lightweighting in electronics, automotive and aerospace industries. Through processing, such as alloying, heat treatment, plastic deformation and composite processing, Mg matrix materials can be obtained with tailorable properties which can play a key role in designing materials for EMI shielding. This work introduces an overview of the research on the EMI shielding properties of Mg matrix materials as well as their EMI shielding mechanisms over the past few decades, focused on the influence of alloying, heat treatment, plastic deformation and composite processing for the EMI shielding properties of Mg matrix materials. At the end, conclusions and future perspectives are provided.

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