材料科学
搅拌摩擦加工
氢脆
压痕硬度
合金
极限抗拉强度
微观结构
冶金
脆化
氢
阴极保护
铝
搅拌摩擦焊
复合材料
腐蚀
电化学
物理化学
有机化学
化学
电极
作者
Ioannis Papantoniou,Panagiotis Karmiris-Obratański,Beata Leszczyńska‐Madej,D.E. Manolakos
标识
DOI:10.1007/s12540-024-01668-y
摘要
Abstract This study investigates the impact of friction stir processing (FSP) on the hydrogen embrittlement (HE) in AA6082-T6 heat-treatable aluminum alloy. The effects of different number of FSP passes and different hydrogen cathodic charging (HCC) conditions on the material’s response to HE are examined through comprehensive mechanical testing, microhardness analysis, and microstructural characterization. The results revealed that FSP leads to a decrease in yield strength, ultimate tensile strength, and microhardness, accompanied by an increase in energy absorption. The introduction of hydrogen through HCC significantly reduces mechanical properties, particularly in non-FSPed specimens. Notably, specimens with 8 FSP passes exhibit an interesting behavior with a slight increase in energy absorption and microhardness values after HCC. Microstructural analysis shows that FSP refines the microstructure, resulting in enhanced resistance to hydrogen-induced blistering effects. These findings contribute to the understanding of hydrogen embrittlement in FSPed aluminum alloys, providing insights for developing surface-modified materials suited for hydrogen-rich applications. Graphical Abstract
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