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Anti-corrosion Methods and Materials最新文献

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Effect of Ti and C addition on oxidation resistance of FeCoCrNiMn high entropy alloys prepared by powder metallurgy 添加 Ti 和 C 对粉末冶金制备的铁钴铬镍锰高熵合金抗氧化性的影响
IF 1.2 4区 材料科学 Q2 METALLURGY & METALLURGICAL ENGINEERING Pub Date : 2024-03-26 DOI: 10.1108/acmm-11-2023-2918
Haichao Wang, Xiaoqiang Liu, Zhanjiang Li, Li Chen, Pinqiang Dai, Qunhua Tang

Purpose

The purpose of this paper is to study the high temperature oxidation behavior of Ti and C-added FeCoCrNiMn high entropy alloys (HEAs).

Design/methodology/approach

Cyclic oxidation method was used to obtain the oxidation kinetic profile and oxidation rate. The microstructures of the surface and cross section of the samples after oxidation were characterized by X-ray diffraction (XRD) and scanning electron microscope (SEM).

Findings

The results show that the microstructure of the alloy mainly consisted of FCC (Face-centered Cubic Structure) main phase and carbides (M7C3, M23C6 and TiC). With the increase of Ti and C content, the microhardness, strength and oxidation resistance of the alloy were effectively improved. After oxidation at a constant temperature of 800 °C for 100 h, the preferential oxidation of chromium in the chromium carbide determined the early formation of dense chromium oxide layers compared to the HEAs substrate, resulting in the optimal oxidation resistance of the TC30 alloy.

Originality/value

More precipitated CrC can preferentially oxidize and rapidly form a dense Cr2O3 layer early in the oxidation, which will slow down the further oxidation of the alloy.

目的 本文旨在研究 Ti 和添加 C 的铁钴铬镍锰高熵合金(HEAs)的高温氧化行为。结果表明,合金的微观结构主要由 FCC(面心立方结构)主相和碳化物(M7C3、M23C6 和 TiC)组成。随着 Ti 和 C 含量的增加,合金的显微硬度、强度和抗氧化性都得到了有效改善。在 800 °C 的恒温条件下氧化 100 小时后,与 HEAs 基体相比,碳化铬中铬的优先氧化决定了致密氧化铬层的提前形成,从而使 TC30 合金的抗氧化性达到最佳状态。
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引用次数: 0
Effect of nano-Al2O3 particle addition on Co–P–xAl2O3 nanocomposite plating electroplated on X65 steel 添加纳米 Al2O3 粒子对电镀 X65 钢的 Co-P-xAl2O3 纳米复合镀层的影响
IF 1.2 4区 材料科学 Q2 METALLURGY & METALLURGICAL ENGINEERING Pub Date : 2024-02-23 DOI: 10.1108/acmm-01-2024-2949
Guangwei Liang, Zhiming Gao, Cheng-Man Deng, Wenbin Hu

Purpose

The purpose of this study is to reveal the effect of nano-Al2O3 particle addition on the nucleation/growth kinetics, microhardness, wear resistance and corrosion resistance of Co–P–xAl2O3 nanocomposite plating.

Design/methodology/approach

The kinetics and properties of Co–P–xAl2O3 nanocomposite plating prepared by electroplating were investigated by electrochemical measurements, scanning electron microscopy, X-ray diffraction, X-ray photoelectron spectroscopy, Vickers microhardness measurement, SRV5 friction and wear tester and atomic force microscopy.

Findings

A 12 g/L nano-Al2O3 addition in the plating solution can transform the nucleation/growth kinetics of the plating from the 3D progressive model to the 3D instantaneous model. The microhardness of the plating increased with the increase of nano-Al2O3 content in plating. The wear resistance of the plating did not adhere strictly to Archard’s law. An even and denser corrosion product film was generated due to the finer grains, with a high corrosion resistance.

Originality/value

The effect of different nano-Al2O3 addition on the nucleation/growth kinetics and properties of Co–P–xAl2O3 nanocomposite plating was investigated, and an anticorrosion mechanism of Co–P–xAl2O3 nanocomposite plating was proposed.

目的本研究旨在揭示纳米 Al2O3 颗粒的添加对 Co-P-xAl2O3 纳米复合镀层的成核/生长动力学、显微硬度、耐磨性和耐腐蚀性的影响。通过电化学测量、扫描电子显微镜、X 射线衍射、X 射线光电子能谱、维氏显微硬度测量、SRV5 摩擦磨损测试仪和原子力显微镜研究了电镀法制备 Co-P-xAl2O3 纳米复合镀层的动力学和性能。研究结果 在镀液中添加 12 克/升的纳米 Al2O3 可使镀层的成核/生长动力学从三维渐进模型转变为三维瞬时模型。镀层的显微硬度随纳米 Al2O3 含量的增加而提高。镀层的耐磨性并不严格遵循阿卡德定律。原创性/价值研究了不同纳米 Al2O3 添加量对 Co-P-xAl2O3 纳米复合镀层成核/生长动力学和性能的影响,并提出了 Co-P-xAl2O3 纳米复合镀层的防腐机理。
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引用次数: 0
Synergistic effect of oxide nanoparticles and inorganic inhibitor on anti-corrosion performance of epoxy coating 氧化物纳米颗粒和无机抑制剂对环氧涂层防腐性能的协同效应
IF 1.2 4区 材料科学 Q2 METALLURGY & METALLURGICAL ENGINEERING Pub Date : 2024-02-22 DOI: 10.1108/acmm-06-2023-2835
Thien Vuong Nguyen, Vy Do Truc, Tuan Anh Nguyen, Dai Lam Tran

Purpose

This study aims to explore the synergistic effect of oxide nanoparticles (ZnO, Fe2O3, SiO2) and cerium nitrate inhibitor on anti-corrosion performance of epoxy coating. First, cerium nitrate inhibitors are absorbed on the surface of various oxide nanoparticles. Thereafter, epoxy nanocomposite coatings have been fabricated on carbon steel substrate using these oxide@Ce nanoparticles as both nano-fillers and nano-inhibitors.

Design/methodology/approach

To evaluate the impact of oxides@Ce nanoparticles on mechanical properties of epoxy coating, the abrasion resistance and impact resistance of epoxy coatings have been examined. To study the impact of oxides@Ce nanoparticles on anti-corrosion performance of epoxy coating for steel, the electrochemical impedance spectroscopy has been carried out in 3% NaCl solution.

Findings

ZnO@Ce3+ and SiO2@Ce3+ nanoparticles provide more enhancement in the epoxy pore network than modification of the epoxy/steel interface. Whereas, Fe2O3@Ce3+ nanoparticles have more to do with modification of the epoxy/steel interface than to change the epoxy pore network.

Originality/value

Incorporation of both oxide nanoparticles and inorganic inhibitor into the epoxy resin is a promising approach for enhancing the anti-corrosion performance of carbon steel.

目的 本研究旨在探讨氧化物纳米粒子(ZnO、Fe2O3、SiO2)和硝酸铈抑制剂对环氧涂层防腐性能的协同效应。首先,硝酸铈抑制剂被吸收到各种氧化物纳米粒子的表面。为了评估氧化物@Ce 纳米粒子对环氧涂层机械性能的影响,研究了环氧涂层的耐磨性和抗冲击性。研究结果ZnO@Ce3+ 和 SiO2@Ce3+ 纳米粒子对环氧树脂孔隙网络的增强作用大于对环氧树脂/钢界面的改性。原创性/价值在环氧树脂中同时加入氧化物纳米粒子和无机抑制剂是提高碳钢防腐蚀性能的一种可行方法。
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引用次数: 0
Study of the role of aluminium and corrosion mechanism in galvalume coating in the marine atmospheric environment 研究铝在海洋大气环境中的作用以及镀锌层的腐蚀机理
IF 1.2 4区 材料科学 Q2 METALLURGY & METALLURGICAL ENGINEERING Pub Date : 2024-02-21 DOI: 10.1108/acmm-08-2023-2889
Shuliu Wang, Qianqian Liu, Jin Wang, Nana Chen, JunHang Chen, Jialiang Song, Xin Zhang, Kui Xiao

Purpose

This study aims to investigate the role of aluminium (Al) in marine environment and the corrosion mechanism of galvalume coatings by conducting accelerated experiments and data analysis.

Design/methodology/approach

Samples were subjected to accelerated corrosion for 136 days via salt spray tests to simulate the natural conditions of marine environment and consequently accelerate the experiments. Subsequently, the samples were examined using various test methods, such as EDS, scanning electron microscopy (SEM), X-ray diffraction (XRD) and electrochemical impedance spectroscopy (EIS), and the obtained data were analysed.

Findings

Galvalume coatings comprised interdigitated zinc (Zn)-rich and dendritic Al-rich phases. Corrosion was observed to begin with a Zn-rich phase. The primary components of the corrosion product film were Al2O3 and Zn5(OH)8Cl2·H2O. It was confirmed that the role of Al was to form a dense protective film, thereby successfully blocking the entry of corrosive media and protecting the iron substrate.

Originality/value

This study provides a clearer understanding of the corrosion mechanism and kinetics of galvalume coatings in a simulated marine environment. In addition, the role of Al, which is rarely mentioned in the literature, was investigated.

本研究旨在通过加速实验和数据分析,研究铝(Al)在海洋环境中的作用以及镀锌层的腐蚀机理。设计/方法/方法通过盐雾试验对样品进行 136 天的加速腐蚀,以模拟海洋环境的自然条件,从而加速实验。随后,使用 EDS、扫描电子显微镜 (SEM)、X 射线衍射 (XRD) 和电化学阻抗光谱 (EIS) 等各种测试方法对样品进行了检测,并对获得的数据进行了分析。据观察,腐蚀始于富锌相。腐蚀产物膜的主要成分是 Al2O3 和 Zn5(OH)8Cl2-H2O。研究证实,Al 的作用是形成一层致密的保护膜,从而成功地阻止腐蚀介质的进入并保护铁基材。此外,还研究了文献中很少提及的铝的作用。
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引用次数: 0
Study on the structure and corrosion resistance of MoS2/MgO micro-arc oxidation composite ceramic coating on the surface of ZK60 magnesium alloy ZK60 镁合金表面 MoS2/MgO 微弧氧化复合陶瓷涂层的结构和耐腐蚀性研究
IF 1.2 4区 材料科学 Q2 METALLURGY & METALLURGICAL ENGINEERING Pub Date : 2024-02-16 DOI: 10.1108/acmm-11-2023-2923
Xiaowen Chen, Wanlin Xie, Song Tang, Meng Zhang, Hao Song, Qingzheng Ran, Defen Zhang

Purpose

The purpose of this study is to examine the impact of MoS2 on the microstructure and characteristics of micro-arc oxidized (MAO) ceramic coatings created on ZK60 magnesium alloy through the addition of varying concentrations of MoS2 particles to the electrolyte, aiming to enhance the corrosion resistance of magnesium alloy.

Design/methodology/approach

The surface morphology, roughness and phase composition of the coatings were analyzed using scanning electron microscopy, a hand-held roughness tester and an X-ray diffractometer, respectively, and the corrosion resistance of the MAO coatings prepared by the addition of different contents of MoS2 particles was tested and analyzed using an electrochemical workstation.

Findings

The results demonstrate that MoS2/MgO composite coatings have been successfully prepared on the surface of magnesium alloys through micro-arc oxidation. Furthermore, the corrosion resistance of the ZK60 magnesium alloy prepared with the addition of 1.0 g/L MoS2 was the best compared to the other samples.

Originality/value

MoS2 particles were able to penetrate the coatings successfully during the micro-arc oxidation process, acting as a barrier in the micropores to prevent the corrosion medium from touching the surface, thus improving the corrosion resistance of the sample. The electrochemical workstation was used to study the corrosion resistance of the MoS2/MAO coating on the ZK60 magnesium alloy.

目的本研究的目的是通过在电解液中添加不同浓度的 MoS2 颗粒,研究 MoS2 对 ZK60 镁合金微弧氧化(MAO)陶瓷涂层的微观结构和特性的影响,从而提高镁合金的耐腐蚀性。设计/方法/途径分别使用扫描电子显微镜、手持式粗糙度测试仪和 X 射线衍射仪分析了涂层的表面形貌、粗糙度和相组成,并使用电化学工作站测试和分析了通过添加不同含量的 MoS2 颗粒制备的 MAO 涂层的耐腐蚀性能。结果结果表明,通过微弧氧化法在镁合金表面成功制备了 MoS2/MgO 复合涂层。原创性/价值在微弧氧化过程中,MoS2 颗粒能够成功渗入涂层,在微孔中起到屏障作用,防止腐蚀介质接触表面,从而提高了样品的耐腐蚀性。电化学工作站用于研究 ZK60 镁合金上 MoS2/MAO 涂层的耐腐蚀性。
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引用次数: 0
Electrochemical migration behavior between Cu and Ag under a thin electrolyte layer containing chloride 含氯化物的薄电解质层下铜和银之间的电化学迁移行为
IF 1.2 4区 材料科学 Q2 METALLURGY & METALLURGICAL ENGINEERING Pub Date : 2024-02-14 DOI: 10.1108/acmm-11-2023-2924
Lu Luo, Kang Qi, Hualiang Huang

Purpose

The purpose of this paper is to investigate the effects of chloride ion concentration and applied bias voltage on the electrochemical migration (ECM) behavior between Cu and Ag under an NaCl thin electrolyte layer (TEL).

Design/methodology/approach

A self-made experimental setup for the ECM behavior between Cu and Ag was designed. An HD video measurement microscopy was used to observe the typical dendrite/corrosion morphology and pH distribution. Short-circuit time (SCT), short-circuit current density and the influence of the galvanic effect between Cu and Ag on their ECM behavior were studied by electrochemical tests. The surface morphology and composition of dendrite were characterized by FESEM/EDS.

Findings

The SCT increased with increasing NaCl concentration but decreased with increasing applied bias voltage, and the SCT between Cu and Ag was less than that between Cu and Cu because their galvanic effect accelerated the dissolution and migration of Cu. When NaCl concentration was less than or equal to 6 mmol/L, cedar-like dendrite was formed, whereas no dendrite formed and only precipitation occurred at high chloride ion concentration (100 mmol/L). The composition of the dendrite between Cu and Ag was copper.

Research limitations/implications

The significance of this study is to clarify the ECM failure mechanism of printed circuit board (PCB) with an immersion silver surface finish (PCB-ImAg).

Practical implications

This study provides a basic theoretical basis for the selection of protective measures and metal coatings for PCB.

Social implications

The social implication of this study is to predict the service life of PCB.

Originality/value

The ECM behavior of dissimilar metals under a TEL was investigated, the influence of the galvanic effect between them on their ECM was discussed, and the SCT increased with increasing NaCl concentration.

目的 本文旨在研究氯离子浓度和外加偏置电压对 NaCl 薄电解质层(TEL)下铜和银之间的电化学迁移(ECM)行为的影响。使用高清视频测量显微镜观察典型的树枝状晶/腐蚀形态和 pH 值分布。通过电化学测试研究了短路时间(SCT)、短路电流密度以及铜和银之间的电偶效应对其 ECM 行为的影响。结果SCT 随 NaCl 浓度的增加而增加,但随施加的偏置电压的增加而减少,Cu 和 Ag 之间的 SCT 小于 Cu 和 Cu 之间的 SCT,因为它们之间的电化效应加速了 Cu 的溶解和迁移。当 NaCl 浓度小于或等于 6 mmol/L 时,会形成雪松状枝晶;而当氯离子浓度较高(100 mmol/L)时,则不会形成枝晶,只会出现沉淀。研究的局限性/意义本研究的意义在于阐明具有浸银表面处理(PCB-ImAg)的印刷电路板(PCB)的 ECM 失效机理。社会意义本研究的社会意义在于预测 PCB 的使用寿命。原创性/价值研究了异种金属在 TEL 下的 ECM 行为,讨论了它们之间的电偶效应对其 ECM 的影响,并讨论了 SCT 随 NaCl 浓度的增加而增加的问题。
{"title":"Electrochemical migration behavior between Cu and Ag under a thin electrolyte layer containing chloride","authors":"Lu Luo, Kang Qi, Hualiang Huang","doi":"10.1108/acmm-11-2023-2924","DOIUrl":"https://doi.org/10.1108/acmm-11-2023-2924","url":null,"abstract":"<h3>Purpose</h3>\u0000<p>The purpose of this paper is to investigate the effects of chloride ion concentration and applied bias voltage on the electrochemical migration (ECM) behavior between Cu and Ag under an NaCl thin electrolyte layer (TEL).</p><!--/ Abstract__block -->\u0000<h3>Design/methodology/approach</h3>\u0000<p>A self-made experimental setup for the ECM behavior between Cu and Ag was designed. An HD video measurement microscopy was used to observe the typical dendrite/corrosion morphology and pH distribution. Short-circuit time (SCT), short-circuit current density and the influence of the galvanic effect between Cu and Ag on their ECM behavior were studied by electrochemical tests. The surface morphology and composition of dendrite were characterized by FESEM/EDS.</p><!--/ Abstract__block -->\u0000<h3>Findings</h3>\u0000<p>The SCT increased with increasing NaCl concentration but decreased with increasing applied bias voltage, and the SCT between Cu and Ag was less than that between Cu and Cu because their galvanic effect accelerated the dissolution and migration of Cu. When NaCl concentration was less than or equal to 6 mmol/L, cedar-like dendrite was formed, whereas no dendrite formed and only precipitation occurred at high chloride ion concentration (100 mmol/L). The composition of the dendrite between Cu and Ag was copper.</p><!--/ Abstract__block -->\u0000<h3>Research limitations/implications</h3>\u0000<p>The significance of this study is to clarify the ECM failure mechanism of printed circuit board (PCB) with an immersion silver surface finish (PCB-ImAg).</p><!--/ Abstract__block -->\u0000<h3>Practical implications</h3>\u0000<p>This study provides a basic theoretical basis for the selection of protective measures and metal coatings for PCB.</p><!--/ Abstract__block -->\u0000<h3>Social implications</h3>\u0000<p>The social implication of this study is to predict the service life of PCB.</p><!--/ Abstract__block -->\u0000<h3>Originality/value</h3>\u0000<p>The ECM behavior of dissimilar metals under a TEL was investigated, the influence of the galvanic effect between them on their ECM was discussed, and the SCT increased with increasing NaCl concentration.</p><!--/ Abstract__block -->","PeriodicalId":8217,"journal":{"name":"Anti-corrosion Methods and Materials","volume":"115 1","pages":""},"PeriodicalIF":1.2,"publicationDate":"2024-02-14","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":null,"resultStr":null,"platform":"Semanticscholar","paperid":"139765515","PeriodicalName":null,"FirstCategoryId":null,"ListUrlMain":null,"RegionNum":4,"RegionCategory":"材料科学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":"","EPubDate":null,"PubModel":null,"JCR":null,"JCRName":null,"Score":null,"Total":0}
引用次数: 0
Study on numerical calculation method of corrosion mechanism for Co-12 laser cladding layer Co-12 激光熔覆层腐蚀机理数值计算方法研究
IF 1.2 4区 材料科学 Q2 METALLURGY & METALLURGICAL ENGINEERING Pub Date : 2024-02-06 DOI: 10.1108/acmm-03-2023-2766
Shuangjiu Deng, Chang Li, Xing Han, Menghui Yu, Han Sun

Purpose

The restoration and strengthening of QT600 is an industry bottleneck challenge. The Co-12 cladding layer has great wear and corrosion resistance. The purpose of this paper is to quantitatively reveal the transient evolution law of the corrosion process of Co-12 cladding layer on QT600 surface.

Design/methodology/approach

In this paper, a three-dimensional numerical model of the corrosion process of Co-12 cladding layer by QT600 laser cladding is established. The interaction between pitting pits and corrosion medium is considered to reveal the transient evolution of ion concentration, electrode potential, pH and corrosion rate at different locations.

Findings

The calculation shows that the ion concentration in pitting pit changes Cl>Co2+>Na+, pH value decreases from top to bottom and corrosion rate at bottom is greater than that at top. The electrochemical corrosion test of Co-12 cladding layer was carried out. It is shown that the current density of QT600 increases by an order of magnitude compared to the Co-12 cladding layer, and the corrosion rate is 4.862 times higher than that of the cladding layer.

Originality/value

The results show that Co-12 cladding layer has great corrosion resistance, which provides an effective way for QT600 protection.

目的 QT600 的修复和加固是一个行业瓶颈难题。Co-12 堆焊层具有很好的耐磨性和耐腐蚀性。本文旨在定量揭示 QT600 表面 Co-12 堆焊层腐蚀过程的瞬态演变规律。计算结果表明,点蚀坑中的离子浓度变化为 Cl->Co2+>Na+,pH 值从上到下逐渐降低,底部的腐蚀速率大于顶部。对 Co-12 包层进行了电化学腐蚀试验。结果表明,与 Co-12 包覆层相比,QT600 的电流密度增加了一个数量级,腐蚀速率是包覆层的 4.862 倍。
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引用次数: 0
Review on the application of stainless-clad bimetallic steel in the marine environment 双金属不锈钢在海洋环境中的应用综述
IF 1.2 4区 材料科学 Q2 METALLURGY & METALLURGICAL ENGINEERING Pub Date : 2024-02-05 DOI: 10.1108/acmm-06-2023-2832
Dongsheng Wang, Xiaohan Sun, Yingchang Jiang, Xueting Chang, Xin Yonglei

Purpose

Stainless-clad bimetallic steels (SCBS) are widely investigated in some extremely environmental applications areas, such as polar sailing area and tropical oil and gas platforms areas, because of their excellent anticorrosion performance and relatively lower production costs. However, the properties of SCBS, including the mechanical strength, weldability and the anticorrosion behavior, have a direct relation with the manufacturing process and can affect their practical applications. This paper aims to review the application and the properties requirements of SCBS in marine environments to promote the application of this new material in more fields.

Design/methodology/approach

In this paper, the manufacturing process, welding and corrosion-resistant properties of SCBS were introduced systematically by reviewing the related literatures, and some results of the authors’ research group were also introduced briefly.

Findings

Different preparation methods, such as rolling composite, casting rolling composite, explosive composite, laser cladding and plasma arc cladding, as well as the process parameters, including the vacuum degree, rolling temperature, rolling reduction ratio, volume ratios of liquid to solid, explosive ratio and the heat treatment, influenced a lot on the properties of the SCBS through changing the interface microstructures. Otherwise, the variations in rolling temperature, pass, reduction and the grain size of clad steel also brought the dissimilarities of the mechanical properties, microhardness, bonding strength and toughness. Another two new processes, clad teeming method and interlayer explosive welding, deserve more attention because of their excellent microstructure control ability. The superior corrosion resistance of SCBS can alleviate the corrosion problem in the marine environment and prolong the service life of the equipment, but the phenomenon of galvanic corrosion should be noted as much as possible. The high dilution rate, welding process specifications and heat treatment can weaken the intergranular corrosion resistance in the weld area.

Originality/value

This paper summarizes the application of SCBS in marine environments and provides an overview and reference for the research of stainless-clad bimetallic steel.

目的无锈蚀双金属复合钢(SCBS)因其优异的防腐性能和相对较低的生产成本,在一些极端环境应用领域(如极地航行区和热带油气平台区)得到广泛研究。然而,SCBS 的机械强度、可焊性和防腐性能等性能与制造工艺有直接关系,会影响其实际应用。本文旨在综述 SCBS 在海洋环境中的应用和性能要求,以促进这种新材料在更多领域的应用。设计/方法/途径本文通过查阅相关文献,系统介绍了 SCBS 的制造工艺、焊接和耐腐蚀性能,并简要介绍了作者课题组的一些研究成果。研究结果不同的制备方法,如轧制复合、铸造轧制复合、爆炸复合、激光熔覆和等离子弧熔覆,以及工艺参数,包括真空度、轧制温度、轧制减量比、液固体积比、爆炸比和热处理,通过改变界面微观结构对 SCBS 的性能影响很大。此外,轧制温度、轧制道次、轧制减薄率和包覆钢晶粒大小的变化也带来了力学性能、显微硬度、结合强度和韧性的差异。另外两种新工艺--堆焊法和层间爆炸焊接因其出色的微观组织控制能力而更值得关注。SCBS 优异的耐腐蚀性能可以缓解海洋环境中的腐蚀问题,延长设备的使用寿命,但应尽量注意电化学腐蚀现象。高稀释率、焊接工艺规范和热处理会削弱焊接区域的抗晶间腐蚀能力。 原创性/价值 本文总结了 SCBS 在海洋环境中的应用,为不锈钢包覆双金属钢的研究提供了综述和参考。
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引用次数: 0
Effects of salt spray duration on the fretting corrosion behavior of the Inconel 690 alloy tubes 盐雾持续时间对 Inconel 690 合金管材摩擦腐蚀行为的影响
IF 1.2 4区 材料科学 Q2 METALLURGY & METALLURGICAL ENGINEERING Pub Date : 2024-01-29 DOI: 10.1108/acmm-11-2023-2919
Meigui Yin, Lei Zhang, Longxiang Huang

Purpose

The purpose of this paper is to study the effect of surface salt spray duration on the fretting wear and electrochemical corrosion behaviors of Inconel 690 alloy.

Design/methodology/approach

A high-temperature steam generator was applied to salt spray test samples, a fretting wear rig was used to realize the damage behavior tests, an electrochemical workstation was applied to analysis the changes of each sample’s corrosion dynamic response before and after fretting wear.

Findings

The thickness of the oxide film that formed on sample surface was increased with the salt spray duration, and somewhat it could act as lubrication during the fretting wear process; however, the corrosive chloride would accelerate the fretting mechanical damage behavior.

Originality/value

In a salt steam spray condition, the fretting tribo-corrosion behaviors of Inconel 690 alloy surface was studied.

本文旨在研究表面盐雾持续时间对 Inconel 690 合金的烧蚀磨损和电化学腐蚀行为的影响。设计/方法/途径对盐雾试验样品采用高温蒸汽发生器,使用烧蚀磨损台架实现损伤行为试验,应用电化学工作站分析每个样品在烧蚀磨损前后的腐蚀动态响应变化。研究结果样品表面形成的氧化膜厚度随盐雾持续时间的延长而增加,在一定程度上可以在烧蚀磨损过程中起到润滑作用;但腐蚀性氯化物会加速烧蚀的机械损伤行为。
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引用次数: 0
Study on the impact of soil environment organic substances on the ageing of urban PE gas pipes in service 土壤环境中有机物质对城市聚乙烯燃气管道老化的影响研究
IF 1.2 4区 材料科学 Q2 METALLURGY & METALLURGICAL ENGINEERING Pub Date : 2024-01-25 DOI: 10.1108/acmm-11-2023-2916
Manman Li, Qing Bao, Sumin Lei, Linlin Xing, Shu Gai

Purpose

The service environment of urban polyethylene (PE) pipes has a crucial influence on their long-term safety and performance. Based on the application and structural performance analysis of PE pipe failure cases, this study aims to investigate the impact of organic substances in the soil on the aging behavior of PE pipes by designing organic solutions with different concentrations, which are based on the composition of organic substances in the soil environment, and periodic immersion tests.

Design/methodology/approach

Soil samples in the vicinity of the failed pipes were analyzed by gas chromatography-mass spectrometry, sensitive organic substances were screened and soaking solutions of different concentrations were designed. After the soaking test, the PE pipe samples were analyzed using differential scanning calorimetry, Fourier-transform infrared spectroscopy and other testing methods.

Findings

The performance difference between the outer surface and the middle of the cross section of PE pipes highlights the influence of the soil service environment on their aging. Different organic solutions can have varying impacts on the aging behavior of PE pipes when immersed. For instance, when exposed to amine organic solutions, PE pipes may have an increased weight and decreased material yield strength, although there is no reduction in their thermal or oxygen stability. On the contrary, when subjected to ether organic solutions, the surface of PE pipe specimens may be affected, leading to a reduction in material fracture elongation and a decrease in their thermal and oxygen stability. Furthermore, immersion in either amine or ether organic solutions may result in the production of hydroxyl and other aging groups on the surface of the material.

Originality/value

Understanding the potential impact of organic substances in the soil environment on the aging of PE pipe ensures the long-term performance and safety of urban PE pipe. This research approach will provide valuable insights into improving the durability and reliability of urban PE pipes in soil environments.

目的 城市聚乙烯(PE)管材的使用环境对其长期安全和性能有着至关重要的影响。本研究基于聚乙烯管材失效案例的应用和结构性能分析,根据土壤环境中有机物的成分,设计不同浓度的有机溶液,并定期进行浸泡试验,旨在研究土壤中有机物对聚乙烯管材老化行为的影响。设计/方法/途径采用气相色谱-质谱法分析失效管材附近的土壤样品,筛选敏感有机物,设计不同浓度的浸泡溶液。浸泡试验后,使用差示扫描量热法、傅立叶变换红外光谱法和其他测试方法对聚乙烯管材样品进行了分析。 研究结果聚乙烯管材横截面外表面和中间部分的性能差异凸显了土壤使用环境对其老化的影响。不同的有机溶液会对浸入聚乙烯管材的老化行为产生不同的影响。例如,当暴露在胺类有机溶液中时,聚乙烯管材的重量可能会增加,材料屈服强度可能会降低,但其热稳定性或氧稳定性不会降低。相反,在醚类有机溶液中浸泡时,聚乙烯管材试样的表面可能会受到影响,导致材料断裂伸长率降低,热稳定性和氧稳定性下降。此外,在胺类或醚类有机溶液中浸泡可能会导致材料表面产生羟基和其他老化基团。原创性/价值了解土壤环境中的有机物质对聚乙烯管材老化的潜在影响,可确保城市聚乙烯管材的长期性能和安全性。这一研究方法将为提高城市聚乙烯管材在土壤环境中的耐久性和可靠性提供有价值的见解。
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引用次数: 0
期刊
Anti-corrosion Methods and Materials
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