Influence of rotating magnetic field (RMF)‎ on dendrite growth, mechanical and elastic properties of Sn-Cu-co lead-free solder alloy

Joint Authors

al-Tahir, A. M.
Masad, S.
Abd al-Munim, H. M.

Source

Arab Journal of Nuclear Sciences and Applications

Issue

Vol. 56, Issue 4 (31 Jul. 2023), pp.141-151, 11 p.

Publisher

The Egyptian Society of Nuclear Science and Applications

Publication Date

2023-07-31

Country of Publication

Egypt

No. of Pages

11

Main Subjects

Physics

Topics

Abstract EN

Dendritic microstructures are a common issue in casting applications, leading to subpar mechanical properties.

a new and innovative approach for combating this problem is through the application of mechanical stirring using an RMF.

the solidification microstructures, mechanical and elastic characteristics of Sn-0.7wt% Cu-xCo (where x = 0.05 and 0.5) alloys were analyzed with and without the application of an RMF.

the results revealed that, in the absence of an RMF, both solder alloys displayed extensive and undesirable columnar formations of the dendritic β-Sn phase.

however, the application of an RMF led to a significant modification of the solidification microstructure, transforming the dendritic β-Sn phase from columnar to equiaxed, resulting in fragmentation of the dendrites.

as well, the average size of (Cu,Co)6Sn5 IMCs was reduced, resulting in successful suppression of the growth rate of IMCs with the use of RMF.

tensile testing showed that the Sn-0.7wt% Cu-0.05 Co alloy with RMF exhibited the highest strength across a range of temperatures and strain rates.

additionally, the ultimate tensile strength, yield strength, yield modulus, and elongation percentage of the Sn-Cu-0.05Co alloy with RMF were approximately 29.2%, 31.8%, 29.2% and 7.1% at 25°C higher compared to that of the RMF-free Sn-Cu-0.05 Co alloy.

by evaluating the Poisson's ratio, young's modulus, shear modulus, and bulk modulus, it was determined with a high level of confidence that the application of RMF during solidification made the Sn-7Cu-0.5Co alloy more ductile, while the Sn-7Cu-0.05Co alloy demonstrated increased strength compared to their counterparts without RMF.

American Psychological Association (APA)

al-Tahir, A. M.& Abd al-Munim, H. M.& Masad, S.. 2023. Influence of rotating magnetic field (RMF) on dendrite growth, mechanical and elastic properties of Sn-Cu-co lead-free solder alloy. Arab Journal of Nuclear Sciences and Applications،Vol. 56, no. 4, pp.141-151.
https://search.emarefa.net/detail/BIM-1485896

Modern Language Association (MLA)

Abd al-Munim, H. M.…[et al.]. Influence of rotating magnetic field (RMF) on dendrite growth, mechanical and elastic properties of Sn-Cu-co lead-free solder alloy. Arab Journal of Nuclear Sciences and Applications Vol. 56, no. 4 (Jul. 2023), pp.141-151.
https://search.emarefa.net/detail/BIM-1485896

American Medical Association (AMA)

al-Tahir, A. M.& Abd al-Munim, H. M.& Masad, S.. Influence of rotating magnetic field (RMF) on dendrite growth, mechanical and elastic properties of Sn-Cu-co lead-free solder alloy. Arab Journal of Nuclear Sciences and Applications. 2023. Vol. 56, no. 4, pp.141-151.
https://search.emarefa.net/detail/BIM-1485896

Data Type

Journal Articles

Language

English

Notes

Includes bibliographical references : p. 150-151

Record ID

BIM-1485896