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通过超声滚压处理(USRT)在AISI 304不锈钢管上制备低粗糙度梯度纳米结构内表面。

Fabrication of Low Roughness Gradient Nanostructured Inner Surface on an AISI 304 Stainless Steel Pipe via Ultra-Sonic Rolling Treatment (USRT).

作者信息

Han Xiaolei, Li Changji, Chen Chunhuan, Zhang Xiaodan, Zhang Hongwang

机构信息

National Engineering Research Center for Equipment and Technology of Cold Strip Rolling, College of Mechanical Engineering, Yanshan University, Qinhuangdao 066004, China.

Shenyang National Laboratory for Materials Science, Institute of Metal Research, Chinese Academy of Sciences, Shenyang 110016, China.

出版信息

Nanomaterials (Basel). 2021 Jul 7;11(7):1769. doi: 10.3390/nano11071769.

Abstract

Gradient nanostructure (GNS) has drawn great attention, owing to the unique deformation and properties that are superior to nanostructure with uniform scale. GNS is commonly fabricated via surface plastic deformation with small tips (of balls or shots) so as to produce high deformation to refine the coarse grains, but unfortunately it suffers from the deterioration of surface quality which is hard to guarantee the reliable service. Although there are mirror-finishing techniques that can greatly enhance the surface quality, the induced slight deformation is commonly unable to produce GNS of reasonable thickness. Here, we propose a method to fabricate a GNS surface layer with a substantially enhanced surface quality via ultra-sonic rolling treatment (USRT), namely, surface rolling with a roller vibrated at a frequency of 20,000 Hz. It is found that 4-pass USRT is able to produce 20-30 µm thick GNS on AISI 304 stainless steel pipe inner surface, wherein the surface quality is enhanced by one order of magnitude from the starting = 3.92 µm to 0.19 µm. Processing by a roller with a high-frequency vibration is necessary for both good surface quality and the effective accumulation of heavy deformation on the surface. The flattening mechanism as well as the microstructural evolution from millimeter- to nanometer-scale for AISI 304 stainless steel is discussed.

摘要

梯度纳米结构(GNS)因其独特的变形和性能而备受关注,这些性能优于具有均匀尺度的纳米结构。GNS通常通过使用小尖端(球或丸粒)进行表面塑性变形来制造,以便产生高变形来细化粗晶粒,但不幸的是,它存在表面质量恶化的问题,这难以保证可靠的服役。尽管有镜面加工技术可以大大提高表面质量,但所引起的轻微变形通常无法产生具有合理厚度的GNS。在此,我们提出一种通过超声滚压处理(USRT)制造表面质量大幅提高的GNS表面层的方法,即使用频率为20000Hz振动的滚轮进行表面滚压。研究发现,4次USRT能够在AISI 304不锈钢管内表面产生20 - 30μm厚的GNS,其中表面质量从初始的Ra = 3.92μm提高到0.19μm,提高了一个数量级。使用高频振动的滚轮进行加工对于良好的表面质量以及表面上大变形的有效累积都是必要的。讨论了AISI 304不锈钢从毫米尺度到纳米尺度的扁平化机制以及微观结构演变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/101f/8308195/18389ca0a6e0/nanomaterials-11-01769-g001.jpg

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