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Corrosion mechanism of Zn-30Sn high-temperature, lead-free solder in neutral NaCl solution

机译:Zn-30Sn高温无铅焊料在中性NaCl溶液中的腐蚀机理

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Corrosion mechanism of Zn-30Sn high-temperature, lead-free solder in neutral 0.5 M NaCl solution are investigated by using FE-SEM, XRD, XPS and SIMS. The results confirm that alpha-Zn phases are corroded preferentially. Moreover, during initial corrosion process, a double-layer structure of ZnO and Zn(OH)(2) is formed, providing beneficial barrier effect hindering the penetration of Cl-. However, subsequent morphology transformation weakens barrier effect to Cl- penetration and results in severe corrosion. Mechanism of surface layer breakdown and internal corrosion propagation are further examined, where it is determined that aggressive Cl- plays an important role in the corrosion process of Zn-30Sn solder.
机译:利用FE-SEM,XRD,XPS和SIMS研究了Zn-30Sn高温无铅焊料在0.5 M NaCl中性溶液中的腐蚀机理。结果证实了α-Zn相被优先腐蚀。此外,在初始腐蚀过程中,会形成ZnO和Zn(OH)(2)的双层结构,从而提供了有益的阻隔作用,阻碍了Cl-的渗透。然而,随后的形态转变减弱了对Cl-渗透的阻挡作用并导致严重的腐蚀。进一步研究了表面层破裂和内部腐蚀传播的机理,确定了侵蚀性Cl-在Zn-30Sn焊料的腐蚀过程中起着重要作用。

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