Influence of Sb2O3 nanoparticles addition on the thermal , microstructural and creep properties of hypoeutectic Sn – Bi solder alloy .

Shereen M. Abdelaziz; A.F.AbdElrehim; A.S.Mahmoud;

Abstract


Here we investigate the effects (thermal, microstructural, and creep properties) of adding Sb2O3 nanoparticles
to a hypoeutectic Sn-5 wt% Bi solder alloy. The Sb2O3-containing solder alloy was prepared by mechanically
incorporating 0.5 wt% Sb2O3 nanoparticles into the Sn-5 wt% Bi solder alloy. The addition of nano-sized
Sb2O3 particles to the Sn–Bi solder alloy increases the melting temperature, but only slightly. The main phases
of the investigated solder alloys include the -Sn and Bi-rich phases in addition to the crystalline phase of
Sb2O3 nanoparticles. No other intermetallic compounds were observed in the -Sn matrix. The tensile creep
experiments have been carried out in the 303–363 K temperature interval under constant stresses ranging
from 5.1 to 7.64 MPa. The creep parameters of both solders increased gradually with increasing creep
temperature up to 333 K, after which they increased rapidly with relatively higher values. The creep parameters
of the Sb2O3-containing solder alloys are smaller than that of Sb2O3-free solder alloys. The present
solder alloys exhibit class-M creep behavior. The calculated stress exponent values and activation energy
data for both solders could be related to dislocation climb through core diffusion as the dominant operating
mechanism.


Other data

Title Influence of Sb2O3 nanoparticles addition on the thermal , microstructural and creep properties of hypoeutectic Sn – Bi solder alloy .
Authors Shereen M. Abdelaziz ; A.F.AbdElrehim; A.S.Mahmoud 
Keywords Pb-Free Solder, Nanoparticle, Microstructure, Creep Properties.
Issue Date 30-Mar-2020
Publisher American scientific publisher
Journal Science of advanced materials 
Volume 12
Start page 1
End page 10

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