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Influence of ultrasonic shot peening on corrosion behavior of 7075 aluminum alloy

机译:超声波喷丸喷丸对7075铝合金腐蚀行为的影响

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摘要

This investigation addresses the effect of surface nanostructure developed through ultrasonic shot peening (USSP) on corrosion behavior of 7075 aluminum alloy. USSP develops surface nanostructure, induces severe plastic deformation, refines grain size up to certain depth and imparts compressive residual stress in the surface region. The sample USSPed for 15 s (USSP 15) exhibited lower current density (0.564 mu A/cm(2)) and higher corrosion potential (-0.695 V) as compared with that of the un-USSP specimen with 1.269 mu A/cm(2) and -0.839V respectively. The enhancement in corrosion resistance of USSPed sample is due to rapid development of uniform, homogeneous and effective passive layer on the nanostructured surface coupled with refinement of the coarse precipitates. Also, there is optimum combination of surface roughness, compressive residual stress, and dislocation density in the surface region to produce highest corrosion resistance in the USSP 15 condition. (C) 2017 Elsevier B.V. All rights reserved.
机译:该研究解决了通过超声波喷丸(USP)开发的表面纳米结构对7075铝合金腐蚀行为产生的影响。 USSP开发表面纳米结构,诱导严重的塑性变形,精确到一定深度的粒度,并赋予表面区域的压缩残余应力。 35秒(USSP 15)的样品表现出较低的电流密度(0.564μA/ cm(2))和较高的腐蚀电位(-0.695V),与UN-USSP样品相比,具有1.269亩/厘米( 2)分别为-0.839V。 USSPED样品的耐腐蚀性的增强是由于纳米结构表面上的均匀,均匀且有效的无源层的快速发展,纳米结构表面与粗沉淀物的细化结合。而且,表面粗糙度,压缩残余应力和位于表面区域的位错密度的最佳组合,以产生USSP 15条件的最高耐腐蚀性。 (c)2017年Elsevier B.V.保留所有权利。

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