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Mechanical Properties Versus Temperature Relation Of Individual Phases In Sn-3.0ag-0.5cu Lead-free Solder Alloy

机译:Sn-3.0ag-0.5cu无铅焊料合金的力学性能与各相的温度关系

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The non-homogeneous Sn-3.0Ag-0.5Cu (SAC305) lead-free solder alloy consists of Sn-rich (β-Sn) and eutectic phases. The mechanical properties of these individual phases were demonstrated to be a function of the temperature. The nanoindentation methodology was utilized to examine the mechanical properties at 60 ℃, 80 ℃, 110 ℃, 130 ℃, and 150℃, respectively. It was found that for both Sn-rich phase and eutectic phase, the hardness and Young's modulus exhibited the dependence on the temperature. Moreover, the creep deformation which occurred at the dwell time of sustained loading was quite sensitive to the prescribed temperature. Basically, the higher temperature resulted in a larger creep deformation. This in turn caused the variable strain rate sensitivity of the individual phases, which was extracted by Mayo-Nix approach. The Sn-rich phase showed larger creep deformation than that of eutectic phase. However, a greater strain rate sensitivity index value was obtained for eutectic phase at the temperature regime (25-130 ℃). The derived activity energy implied that for both p-Sn and eutectic phases two rate-controlling processes took place during the creep deformation, in which the transition temperature is around 130℃.
机译:不均匀的Sn-3.0Ag-0.5Cu(SAC305)无铅焊料合金由富Sn(β-Sn)和共晶相组成。这些单个相的机械性能被证明是温度的函数。利用纳米压痕法分别检测了60℃,80℃,110℃,130℃和150℃的力学性能。发现对于富锡相和共晶相,硬度和杨氏模量均表现出对温度的依赖性。此外,在持续载荷的停留时间发生的蠕变变形对规定温度非常敏感。基本上,较高的温度导致较大的蠕变变形。反过来,这引起了各个相的可变应变率敏感性,这是通过Mayo-Nix方法提取的。富锡相的蠕变变形比共晶相大。然而,在温度范围(25-130℃)下,共晶相的应变速率敏感性指标值较大。导出的活性能表明,在p-Sn相和共晶相中,蠕变过程中发生了两个速率控制过程,转变温度约为130℃。

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