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The effect of surface plastic deformation produced by shot peening on corrosion behavior of a low-alloy steel

机译:喷丸射击采集对低合金钢腐蚀行为产生的表面塑性变形的影响

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摘要

Shot peening treatment is a well-known and practical method to improve surface properties of materials. In this method, surfaces of materials are peened by small steel shots and thus, surface hardening is provided. Although it is used in a wide range of applications, this process could affect the electrochemical behavior of materials because of changing surface properties. Therefore, the effects of shot peening process on the electrochemical properties of a low-alloy steel were examined in the present study. AISI 4140 low-alloy steel samples were shot peened in different intensities of 16 A, 18 A, 20 A and 24 A. Afterwards, corrosion tests were carried out at room temperature in a 3.5% NaCl solution. Open circuit potential (OCP) electrochemical polarization and electrochemical impedance spectroscopy (EIS) analysis were performed in corrosion tests. The microstructural, morphological and surface properties of samples were analyzed by XRD, SEM and 3D surface profilometer. The structural analyses showed that grain structure of the material was affected by shot peening treatment. A plastically deformed zone, which have extended and refined grain structure, formed after shot peening processes. Electrochemical analyses indicated that the corrosion resistance of the material increased with the increasing shot peening intensity owing to grain refinement and formation of sub-grains. Also, examinations on the corroded surfaces showed that crevice corrosion was the main mechanism for shot peened samples.
机译:喷丸治疗是一种改善材料表面性质的众所周知和实用的方法。在该方法中,材料表面被小钢射击喷丸,因此提供了表面硬化。虽然它用于各种应用中,但由于表面特性改变,该过程可能影响材料的电化学行为。因此,在本研究中研究了喷丸处理过程对低合金钢电化学性质的影响。 AISI 4140低合金钢样品在16a,18a,20a和24A的不同强度下喷丸射击。之后,在室温下在3.5%NaCl溶液中进行腐蚀试验。开路电位(OCP)电化学偏振和电化学阻抗光谱(EIS)分析在腐蚀试验中进行。通过XRD,SEM和3D表面轮廓仪分析样品的微观结构,形态学和表面性质。结构分析表明,材料的晶粒结构受到喷丸治疗的影响。在喷丸过程中形成的塑性变形区域,具有延伸和精制的晶粒结构。电化学分析表明,由于晶粒细化和亚粒的形成,材料的耐腐蚀性随着射击喷丸强度的增加而增加。此外,对腐蚀表面的检查表明,缝隙腐蚀是喷丸样品的主要机制。

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