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喷丸处理对AA1050合金表面和亚表面性能的改性

Modification of Surface and Subsurface Properties of AA1050 Alloy by Shot Peening.

作者信息

Avcu Yasemin Yıldıran, Gönül Berkay, Yetik Okan, Sönmez Fikret, Cengiz Abdulkadir, Guney Mert, Avcu Egemen

机构信息

Department of Mechanical Engineering, Kocaeli University, Kocaeli 41001, Turkey.

Department of Mechanical Engineering, Hasan Ferdi Turgutlu Faculty of Technology, Manisa Celal Bayar University, Manisa 45140, Turkey.

出版信息

Materials (Basel). 2021 Nov 1;14(21):6575. doi: 10.3390/ma14216575.

Abstract

AA1050 Al alloy samples were shot-peened using stainless-steel shots at shot peening (SP) pressures of 0.1 and 0.5 MPa and surface cover rates of 100% and 1000% using a custom-designed SP system. The hardness of shot-peened samples was around twice that of unpeened samples. Hardness increased with peening pressure, whereas the higher cover rate did not lead to hardness improvement. Micro-crack formation and embedment of shots occurred by SP, while average surface roughness increased up to 9 µm at the higher peening pressure and cover rate, indicating surface deterioration. The areal coverage of the embedded shots ranged from 1% to 5% depending on the peening parameters, and the number and the mean size of the embedded shots increased at the higher SP pressure and cover rate. As evidenced and discussed through the surface and cross-sectional SEM images, the main deformation mechanisms during SP were schematically described as crater formation, folding, micro-crack formation, and material removal. Overall, shot-peened samples demonstrated improved mechanical properties, whereas sample surface integrity only deteriorated notably during SP at the higher pressure, suggesting that selecting optimal peening parameters is key to the safe use of SP. The implemented methodology can be used to modify similar soft alloys within confined compromises in surface features.

摘要

使用定制设计的喷丸系统,在0.1和0.5兆帕的喷丸(SP)压力以及100%和1000%的表面覆盖率下,对AA1050铝合金样品进行喷丸处理,喷丸使用不锈钢丸。喷丸处理后的样品硬度约为未喷丸样品的两倍。硬度随喷丸压力增加而增加,而较高的覆盖率并未导致硬度提高。喷丸处理会导致微裂纹形成和丸粒嵌入,在较高的喷丸压力和覆盖率下,平均表面粗糙度增加至9微米,表明表面质量下降。根据喷丸参数,嵌入丸粒的面积覆盖率在1%至5%之间,在较高的喷丸压力和覆盖率下,嵌入丸粒的数量和平均尺寸增加。通过表面和横截面扫描电子显微镜图像证明并讨论,喷丸过程中的主要变形机制可示意性地描述为坑洼形成、折叠、微裂纹形成和材料去除。总体而言,喷丸处理后的样品表现出改善的机械性能,而仅在较高压力的喷丸过程中样品表面完整性才会显著下降,这表明选择最佳喷丸参数是安全使用喷丸的关键。所实施的方法可用于在有限的表面特征折衷范围内改性类似的软合金。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9613/8585158/5713435a9ad0/materials-14-06575-g001.jpg

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