首页> 外文期刊>Journal of Electronic Materials >Effect of Ag Content and the Minor Alloying Element Fe on the Mechanical Properties and Microstructural Stability of Sn-Ag-Cu Solder Alloy Under High-Temperature Annealing
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Effect of Ag Content and the Minor Alloying Element Fe on the Mechanical Properties and Microstructural Stability of Sn-Ag-Cu Solder Alloy Under High-Temperature Annealing

机译:Ag含量和次要元素Fe对高温退火Sn-Ag-Cu焊料合金力学性能和组织稳定性的影响

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摘要

This study compares the high-Ag-content Sn-3Ag-0.5Cu with the low-Ag-content Sn-1Ag-0.5Cu solder alloy and the three quaternary solder alloys Sn-1Ag-0.5Cu-0.1Fe, Sn-1Ag-0.5Cu-0.3Fe, and Sn-1Ag-0.5Cu-0.5Fe to understand the beneficial effects of Fe on the microstructural stability, mechanical properties, and thermal behavior of the low-Ag-content Sn-1Ag-0.5Cu solder alloy. The results indicate that the Sn-3Ag-0.5Cu solder alloy possesses small primary β-Sn dendrites and wide interdendritic regions consisting of a large number of fine Ag_3Sn intermetallic compound (IMC) particles. However, the Sn-1Ag-0.5Cu solder alloy possesses large primary β-Sn dendrites and narrow interdendritic regions of sparsely distributed Ag_3Sn IMC particles. The Fe-bearing SAC105 solder alloys possess large primary β-Sn dendrites and narrow interdendritic regions of sparsely distributed Ag_3Sn IMC particles containing a small amount of Fe. Moreover, the addition of Fe leads to the formation of large circular FeSn_2 IMC particles located in the interdendritic regions. On the one hand, tensile tests indicate that the elastic modulus, yield strength, and ultimate tensile strength (UTS) increase with increasing Ag content. On the other hand, increasing the Ag content reduces the total elongation. The addition of Fe decreases the elastic modulus, yield strength, and UTS, while the total elongation is still maintained at the Sn-1Ag-0.5Cu level. The effect of aging on the mechanical behavior was studied. After 720 h and 24 h of aging at 100℃ and 180℃, respectively, the Sn-1Ag-0.5Cu solder alloy experienced a large degradation in its mechanical properties after both of the aging conditions, whereas the mechanical properties of the Sn-3Ag-0.5Cu solder alloy degraded more dramatically after 24 h of aging at 180℃. However, the Fe-bearing SAC105 solder alloys exhibited only slight changes in their mechanical properties after both aging procedures. The inclusion of Fe in the Ag_3Sn IMC particles suppresses their IMC coarsening, which stabilizes the mechanical properties of the Fe-bearing SAC105 solder alloys after aging. The results from differential scanning calorimetry (DSC) tests indicate that the addition of Fe has a negligible effect on the melting behavior. However, the addition of Fe significantly reduces the solidification onset temperature and consequently increases the degree of undercooling. In addition, fracture surface analysis indicates that the addition of Fe to the Sn-1Ag-0.5Cu alloy does not affect the mode of fracture, and all tested alloys exhibited large ductile dimples on the fracture surface. Effect of Ag Content and the Minor Alloying Element Fe on the Mechanical Properties and Microstructural Stability of Sn-Ag-Cu Solder Alloy Under High-Temperature Annealing.
机译:本研究比较了高Ag含量的Sn-3Ag-0.5Cu和低Ag含量的Sn-1Ag-0.5Cu焊料合金以及三种四元焊料合金Sn-1Ag-0.5Cu-0.1Fe,Sn-1Ag- 0.5Cu-0.3Fe和Sn-1Ag-0.5Cu-0.5Fe,以了解铁对低Ag含量Sn-1Ag-0.5Cu焊料合金的组织稳定性,力学性能和热行为的有益影响。结果表明,Sn-3Ag-0.5Cu钎料合金的β-Sn初生枝晶较小,由大量Ag_3Sn金属间化合物(IMC)细颗粒组成的枝晶间区域宽。但是,Sn-1Ag-0.5Cu焊料合金具有较大的初级β-Sn枝晶和稀疏分布的Ag_3Sn IMC颗粒的狭窄的枝晶间区域。含铁的SAC105焊料合金具有较大的初级β-Sn树枝状晶体和稀疏分布的含少量Fe的Ag_3Sn IMC颗粒的狭窄的树枝状区域。而且,Fe的添加导致形成位于树突间区域的大的圆形FeSn_2IMC颗粒。一方面,拉伸试验表明,弹性模量,屈服强度和极限拉伸强度(UTS)随着Ag含量的增加而增加。另一方面,增加Ag含量会降低总伸长率。 Fe的添加降低了弹性模量,屈服强度和UTS,而总伸长率仍保持在Sn-1Ag-0.5Cu水平。研究了时效对机械性能的影响。 Sn-1Ag-0.5Cu钎料合金分别在100℃和180℃分别进行720h和24h时效后,在两种时效条件下其机械性能均出现较大的下降,而Sn-3Ag的机械性能却有所下降。 -0.5Cu焊料合金在180℃时效24小时后降解更为明显。然而,在两次时效处理之后,含铁SAC105焊料合金的机械性能仅表现出细微的变化。 Ag_3Sn IMC颗粒中包含Fe会抑制其IMC粗化,从而使时效后含Fe SAC105焊料合金的机械性能稳定。差示扫描量热法(DSC)测试的结果表明,铁的添加对熔融行为的影响可忽略不计。但是,Fe的添加显着降低了凝固开始温度,因此增加了过冷度。此外,断裂表面分析表明,向Sn-1Ag-0.5Cu合金中添加Fe不会影响断裂方式,并且所有测试合金在断裂表面均显示出较大的延性凹痕。 Ag含量和次要元素Fe对高温退火Sn-Ag-Cu焊料合金力学性能和组织稳定性的影响。

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