4.7 Article

The coupling influences and corresponding mechanisms of high efficiency thermal-magnetic treatments on the dimensional stability of Al-Cu-Mg alloy

Journal

JOURNAL OF ALLOYS AND COMPOUNDS
Volume 928, Issue -, Pages -

Publisher

ELSEVIER SCIENCE SA
DOI: 10.1016/j.jallcom.2022.167187

Keywords

Al -Cu -Mg alloy; Dimensional change; Second phase; Microstructural defects

Funding

  1. National Natural Science Foundation of China [52005177, U21A20130, 51905166]
  2. Natural Science Foundation of Zhejiang Province [2021C01023]

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In this study, a thermal-magnetic field coupling treatment was applied to optimize the dimensional stability of Al-Cu-Mg alloys. The high-efficiency thermal-magnetic treatment rapidly reduced the thermal strain and promoted the nucleation of Al2CuMg phases and the annihilation of dislocations.
Al-Cu-Mg alloys are widely utilized as a key component of gyroscope navigation systems, since their di-mensional stability under different service environments (e.g., thermal or magnetic fields) is the de-terminant factor for reliable navigation. In this work, a preliminary treatment under the coupling of thermal-magnetic fields was applied to optimize the dimensional stability of the alloy by tailoring the microstructural defects and second phases. A lower thermal strain value of similar to 1.58 x 10(-3 )was rapidly achieved after 6 h by high-efficiency thermal-magnetic treatments (523 K and B = 0.3 T), in comparison with similar to 1.67 x 10(-3 )by thermal treatment. The dimensional variation was mainly attributed to the dislocation density, volume fraction and shape of the Al2CuMg phase. Furthermore, the nucleation rate of Al2CuMg phases and the annihilation of dislocations were promoted under the coupling effect of the thermal -magnetic treatments. These microstructural evolutions accelerated the reduction of the stored energy and lattice distortion, therefore rapidly decreasing the thermal strain. As a result, a thermal-magnetic field treatment may serve as an effective method to improve the dimensional stability of Al-Cu-Mg alloys for further application in the field of space exploration. (C) 2022 Elsevier B.V. All rights reserved.

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