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首页> 外文期刊>Journal of Materials Engineering and Performance >Morphology and Antibacterial Properties of Copper Precipitates in Ferrite Stainless Steel
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Morphology and Antibacterial Properties of Copper Precipitates in Ferrite Stainless Steel

机译:铁氧体不锈钢中铜沉淀物的形态和抗菌性能

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摘要

The size of copper precipitates is the main factor affecting the antibacterial performance of antibacterial stainless steel. To study the mechanism of copper precipitate growth in ferritic stainless steel, the shape coefficient eta and average specific interfacial energy of copper precipitate (sigma) over bar were calculated. The growth process of copper precipitate was observed by atomic probe tomography and transmission electron microscope. The results show that the shape coefficient of copper precipitate was 3.053, and the average specific interfacial energy was (sigma) over bar = 0.4832 - 0.1652 x 10(-3) T. The increase in the aging time resulted in an increase in the size of copper precipitates and a decrease in the number density. In addition, with the increase in the aspect ratio, the shape of the precipitated phase changed from an initial spherical shape to ellipsoid shape and finally to a rod shape. The increase in the annealing time enhanced the antibacterial activity of the tested steel until almost 100% of the bacteria were killed. Thus, the antibacterial performance is closely related to the size and total surface area per unit area of the precipitate.
机译:铜沉淀的大小是影响抗菌不锈钢抗菌性能的主要因素。为了研究铁素体不锈钢中铜沉淀的生长机理,计算了铜沉淀在棒材上的形状系数eta和平均界面能sigma。用原子探针层析和透射电镜观察了铜沉淀的生长过程。结果表明,铜沉淀的形状系数为3.053,平均界面能(σ)大于bar=0.4832-0.1652×10(-3)T。时效时间的延长导致铜沉淀的尺寸增大,数量密度减小。此外,随着长径比的增加,析出相的形状从最初的球形变为椭球形,最后变为棒状。退火时间的增加提高了试验钢的抗菌活性,直到几乎100%的细菌被杀死。因此,抗菌性能与沉淀的大小和单位面积的总表面积密切相关。

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