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Hydrogen diffusion and trapping in a low copper 7xxx aluminium alloy investigated by Scanning Kelvin Probe Force Microscopy

机译:扫描开尔文探针力显微镜研究低铜7xxx铝合金中的氢扩散和捕集

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摘要

The susceptibility to hydrogen embrittlement (HE) of the 7046 aluminium alloy (AA 7046) was investigated. Samples of AA 7046 corresponding to different ageing temperature/time couples were hydrogenated by cathodic charging in a H2SO4 solution. Scanning Kelvin Probe Force Microscopy (SKPFM) combined with global hydrogen amount measurements allowed apparent hydrogen diffusion coefficients (Dapp) to be measured: the decrease of the Dapp values with the increase of the ageing duration was attributed to hydrogen trapping by hardening η’ and η precipitates for the aged alloy. Additional SKPFM measurements were carried out on hydrogen charged samples after desorption at 25 °C and combined with SEM observations of the fracture surfaces after tensile tests. Results showed that hydrogen could be trapped at the grain boundaries leading to brittle intergranular fracture. However, hardening precipitates could act as efficient trapping sites and reduce hydrogen trapping at the grain boundaries. Conclusion is that the most critical microstructural parameters for HE of AA 7046 correspond to the grain boundaries while ageing could contribute to improve the resistance to HE of the alloy by a well-controlledudprecipitation.
机译:研究了7046铝合金(AA 7046)对氢脆(HE)的敏感性。通过在H2SO4溶液中进行阴极充电,将对应于不同时效温度/时间对的AA 7046样品进行氢化。扫描开尔文探针力显微镜(SKPFM)与整体氢量测量相结合,可以测量表观氢扩散系数(Dapp):随着老化时间的增加,Dapp值的降低归因于硬化η'和η导致的氢捕获为时效合金析出。在25°C脱附后,对充氢样品进行额外的SKPFM测量,并与拉伸试验后的断口表面SEM观察相结合。结果表明,氢可能被困在晶界,导致脆性的晶间断裂。但是,硬化的沉淀物可以作为有效的俘获位点并减少氢在晶界处的俘获。结论是,AA 7046的HE的最关键的显微组织参数与晶界相对应,而时效可以通过良好控制的沉淀作用来提高合金的HE抵抗性。

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