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Nanoparticles of the Lead-free Solder Alloy Sn-3.0Ag-0.5Cu with Large Melting Temperature Depression

机译:熔融温度降低大的无铅锡合金Sn-3.0Ag-0.5Cu的纳米粒子

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摘要

Due to the toxicity of lead (Pb), Pb-containing solder alloys are being phased out from the electronics industry. This has lead to the development and implementation of lead-free solders. Being an environmentally compatible material, the lead-free Sn-3.0Ag-0.5Cu (wt.%) solder alloy is considered to be one of the most promising alternatives to replace the traditionally used Sn-Pb solders. This alloy composition possesses, however, some weaknesses, mainly as a result of its higher melting temperature compared with the Sn-Pb solders. A possible way to decrease the melting temperature of a solder alloy is to decrease the alloy particle size down to the nanometer range. The melting temperature of Sn-3.0Ag-0.5Cu lead-free solder alloy, both as bulk and nanoparticles, was investigated. The nanoparticles were manufactured using the self-developed consumable-electrode direct current arc (CDCA) technique. The melting temperature of the nanoparticles, with an average size of 30 nm, was found to be 213.9°C, which is approximately 10°C lower than that of the bulk alloy. The developed CDCA technique is therefore a promising method to manufacture nanometer-sized solder alloy particles with lower melting temperature compared with the bulk alloy.
机译:由于铅(Pb)的毒性,含铅焊锡合金已从电子行业中淘汰。这导致了无铅焊料的开发和实施。作为一种环保材料,无铅Sn-3.0Ag-0.5Cu(wt。%)焊料合金被认为是替代传统使用的Sn-Pb焊料的最有希望的替代品之一。但是,这种合金组合物具有一些缺点,主要是由于其熔融温度比锡-铅焊料高。降低焊料合金的熔融温度的可能方法是将合金颗粒尺寸减小至纳米范围。研究了Sn-3.0Ag-0.5Cu无铅焊料合金的熔融温度,无论是本体还是纳米颗粒。纳米粒子是使用自行开发的消耗电极直流电弧(CDCA)技术制造的。发现平均尺寸为30nm的纳米颗粒的熔融温度为213.9℃,比本体合金的熔融温度低约10℃。因此,发达的CDCA技术是一种有前途的方法,可以制造比本体合金低的熔融温度的纳米尺寸的焊料合金颗粒。

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