机械研磨对铝合金原生被动层形成的影响

Michael Schneider, Ulrike Langklotz, Laurence Kühne, Claudia Kutzer‐Schulze
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摘要

机械研磨会在处理过的材料中产生机械应力和热应力,形成所谓的 Beilby 层。本研究利用环形伏安法研究了研磨粗粒度对研磨过程后形成的原生氧化层厚度和电化学行为的影响。在所研究的表面条件下,原生氧化层厚度的差异为 Δd ≈ 0.5 nm。此外,还引入并测试了一种实验设计,可在研磨过程中对材料的温度进行操作性测量。根据所选磨削参数的不同,估算出的热应力 Δσ 在 0.8 至 1.3 兆帕之间,并对随后形成的氧化层厚度产生影响。
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Influence of mechanical grinding on the formation of native passive layers on aluminum alloys
Mechanical grinding creates mechanical as well as thermal stress in treated material and the so‐called Beilby layer is formed. The present work investigates the influence of abrasive coarse grain size on the thickness and electrochemical behavior of the native oxide layer formed after the grinding process by using cyclovoltammetry. The difference in the native oxide layer thickness amounts to Δd ≈ 0.5 nm under the surface conditions investigated. Additionally, an experimental design is introduced and tested, which allows the operando measuring of the temperature of the material during the grinding process. Estimates result in a thermal stress Δσ between 0.8 and 1.3 MPa depending on the chosen grinding parameters and influence the subsequently formed oxide layer thickness.
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