The Sn-Bi base lead-free solders are proposed as one of the most popular alloys due to the low melting temperature (eutectic point: 139°C) and low cost. However, they are not widely used because of the lower wettability, fatigue resistance, and elongation compared to traditional Sn-Pb solders. So the alloying is considered as an effective way to improve the properties of Sn-Bi solders with the addition of elements (Al, Cu, Zn, Ga, Ag, In, Sb, and rare earth) and nanoparticles. In this paper, the development of Sn-Bi lead-free solders bearing elements and nanoparticles was reviewed. The variation of wettability, melting characteristic, electromigration, mechanical properties, microstructures, intermetallic compounds reaction, and creep behav...
In the present study, various amounts of Bi were added to two groups of Sn-In-Zn lead-free solder al...
Lead-free solders based on Bi-Sn bimetallic nanoclusters with eutectic composition (Bi43Sn57) were s...
Until recently, lead-containing alloys were used widely in electronic and automotive industry. Howev...
SnAgCu solder alloys were considered as one of the most popular lead-free solders because of its goo...
With the miniaturization of solder joints and deterioration of serving environment, much effort had ...
Research on the lead-free solders has attracted wide attention, mostly as the result of the impleme...
In this study, we investigated the microstructure, mechanical properties, and thermal performance of...
Since the implementation of RoHS in avoidance to useof lead in electronic packaging, the development...
The electrochemical, mechanical, structural and thermal behavior of lead-free SnZn9, SnZn9Bi2, SnZn9...
Lead-based solder alloy has been used for a long time as solder material in electronic industry. How...
Sn-Ag-Cu lead free solder is a well-known studied material replacing the Sn-Pb solder which is prohi...
In the present study, various amounts of Bi were added to two groups of Sn-In-Zn lead-free solder al...
Because of environmental and health concerns, some alternative solder alloys, named lead-free ones, ...
Lead-free solders based on Bi-Sn bimetallic nanoclusters with eutectic composition (Bi43Sn57) were s...
In the present study, various amounts of Bi were added to two groups of Sn-In-Zn lead-free solder al...
In the present study, various amounts of Bi were added to two groups of Sn-In-Zn lead-free solder al...
Lead-free solders based on Bi-Sn bimetallic nanoclusters with eutectic composition (Bi43Sn57) were s...
Until recently, lead-containing alloys were used widely in electronic and automotive industry. Howev...
SnAgCu solder alloys were considered as one of the most popular lead-free solders because of its goo...
With the miniaturization of solder joints and deterioration of serving environment, much effort had ...
Research on the lead-free solders has attracted wide attention, mostly as the result of the impleme...
In this study, we investigated the microstructure, mechanical properties, and thermal performance of...
Since the implementation of RoHS in avoidance to useof lead in electronic packaging, the development...
The electrochemical, mechanical, structural and thermal behavior of lead-free SnZn9, SnZn9Bi2, SnZn9...
Lead-based solder alloy has been used for a long time as solder material in electronic industry. How...
Sn-Ag-Cu lead free solder is a well-known studied material replacing the Sn-Pb solder which is prohi...
In the present study, various amounts of Bi were added to two groups of Sn-In-Zn lead-free solder al...
Because of environmental and health concerns, some alternative solder alloys, named lead-free ones, ...
Lead-free solders based on Bi-Sn bimetallic nanoclusters with eutectic composition (Bi43Sn57) were s...
In the present study, various amounts of Bi were added to two groups of Sn-In-Zn lead-free solder al...
In the present study, various amounts of Bi were added to two groups of Sn-In-Zn lead-free solder al...
Lead-free solders based on Bi-Sn bimetallic nanoclusters with eutectic composition (Bi43Sn57) were s...
Until recently, lead-containing alloys were used widely in electronic and automotive industry. Howev...