Microstructural Investigations of Weld Deposits from Manganese Austenitic Alloy on X2CrNiMoN22-5-3 Duplex Stainless Steel

被引:1
|
作者
Mitelea, Ion [1 ]
Mutascu, Daniel [1 ]
Karancsi, Olimpiu [2 ]
Craciunescu, Corneliu Marius [1 ]
Buzdugan, Dragos [1 ]
Utu, Ion-Dragos [1 ]
机构
[1] Politehn Univ Timisoara, Dept Mat & Fabricat Engn, Blvd Mihai Viteazul 1, Timisoara 300222, Romania
[2] Victor Babes Univ Med & Pharm Timisoara, Dept Oral Implantol & Prosthet Restorat Implants, Eftimie Murgu Sq 2, Timisoara 300041, Romania
来源
APPLIED SCIENCES-BASEL | 2024年 / 14卷 / 09期
关键词
hardfacing; duplex stainless steel; welding; austenitic manganese alloy; microstructure; MECHANICAL-PROPERTIES; CORROSION BEHAVIOR; CAVITATION EROSION; HEAT INPUT; TEMPERATURE;
D O I
10.3390/app14093751
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Duplex stainless steels are materials with high performance under mechanical stress and stress corrosion in chloride ion environments. Despite being used in many new applications such as components for offshore drilling platforms as well as in the chemical and petrochemical industry, the automotive industry, etc., they face issues of wear and hardness that limit current applications and prevent the creation of new use opportunities. To address these shortcomings, it is proposed to develop a hardfacing process by a special welding technique using a universal TIG source adapted for manual welding with a pulsed current, and a manganese austenitic alloy electrode as filler material. The opportunity to deposit layers of manganese austenitic steel through welding creates advantages related to the possibility of achieving high mechanical characteristics of this steel exclusively in the working area of the part, while the substrate material will not undergo significant changes in chemical composition. As a result of the high strain hardening rate, assisted mainly by mechanical twinning, manganese austenitic alloys having a face-centered cubic crystal lattice (f.c.c) and low stacking fault energy (SFE = 20-40 mJ/m2) at room temperature, exhibit high wear resistance and exceptional toughness. Following cold deformation, the hardness of the deposited metal increases to 465 HV5-490 HV5. The microstructural characteristics were investigated through optical microscopy (OM), scanning electron microscopy (SEM), energy-dispersive X-ray analysis (EDX), X-ray diffraction (XRD), and Vickers hardness measurements (HV). The obtained results highlighted the feasibility of forming hard coatings on duplex stainless steel substrates.
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页数:13
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