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Corrosion Inhibitors and Protective Coatings, 2nd Edition

A special issue of Applied Sciences (ISSN 2076-3417). This special issue belongs to the section "Surface Sciences and Technology".

Deadline for manuscript submissions: closed (20 April 2024) | Viewed by 517

Special Issue Editors

Department of Materials Science and Engineering, China University of Mining & Technology (Beijing), Beijing 100083, China
Interests: corrosion inhibition; theoretical calculation; inhibitor-coating system
Special Issues, Collections and Topics in MDPI journals

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Guest Editor
Department of Materials Science and Engineering, China University of Petroleum, Beijing 100089, China
Interests: corrosion; inhibition; simulation
Special Issues, Collections and Topics in MDPI journals

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Guest Editor
State Key Laboratory of Corrosion and Antifouling, Institute of Oceanology, Chinese Academy of Sciences, Qingdao 266071, China
Interests: nanomaterials; intelligent coating; marine corrosion
Special Issues, Collections and Topics in MDPI journals

Special Issue Information

Dear Colleagues,

The Special Issue aims to shed light on the recent progress and advances in the usage of engineered corrosion inhibitors and protective coatings to protect metallic materials against corrosion in different corrosive environments. We will prioritize the publication of studies related to the following research content, but the Special Issue will not be limited to these aspects:

  • Design, preparation and performance evaluation;
  • Advanced test technology and research methods;
  • Mechanism of action and failure analysis;
  • Research on sterilization and scale resistance properties;
  • Research on new corrosion inhibitors such as nanomaterials and plant extracts;
  • Advanced intelligent coatings;
  • Research on the mechanism of corrosion coatings;
  • Research on the application of corrosion inhibitors or coatings in oil, chemical industry, electric power, transportation and other fields.

Dr. Peng Han
Dr. Haobo Yu
Dr. Huiwen Tian
Dr. Yujie Qiang
Guest Editors

Manuscript Submission Information

Manuscripts should be submitted online at www.mdpi.com by registering and logging in to this website. Once you are registered, click here to go to the submission form. Manuscripts can be submitted until the deadline. All submissions that pass pre-check are peer-reviewed. Accepted papers will be published continuously in the journal (as soon as accepted) and will be listed together on the special issue website. Research articles, review articles as well as short communications are invited. For planned papers, a title and short abstract (about 100 words) can be sent to the Editorial Office for announcement on this website.

Submitted manuscripts should not have been published previously, nor be under consideration for publication elsewhere (except conference proceedings papers). All manuscripts are thoroughly refereed through a single-blind peer-review process. A guide for authors and other relevant information for submission of manuscripts is available on the Instructions for Authors page. Applied Sciences is an international peer-reviewed open access semimonthly journal published by MDPI.

Please visit the Instructions for Authors page before submitting a manuscript. The Article Processing Charge (APC) for publication in this open access journal is 2400 CHF (Swiss Francs). Submitted papers should be well formatted and use good English. Authors may use MDPI's English editing service prior to publication or during author revisions.

Keywords

  • environment-friendly
  • corrosion
  • interface
  • inhibition
  • coating

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Published Papers (1 paper)

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Research

18 pages, 18017 KiB  
Article
The Study of Patterns and Mechanisms of Continuous Laser Ablation of Carbon Steel Rust Layers in Multi-Medium Environments
by Kunyu Cui, Jian Luo, Kefeng Xu, Lei Ling and Riping Cheng
Appl. Sci. 2024, 14(12), 5052; https://doi.org/10.3390/app14125052 - 10 Jun 2024
Viewed by 338
Abstract
A new multi-scenario, low-cost, high-efficiency, medium-assisted continuous laser cleaning of corrosion layers was developed. By comparing the roughness and cleaning depth of rust layers cleaned under conditions of liquid-assisted, solid-assisted, and mixed solid–liquid-assisted laser cleaning, simultaneously establishing a three-dimensional finite element model to [...] Read more.
A new multi-scenario, low-cost, high-efficiency, medium-assisted continuous laser cleaning of corrosion layers was developed. By comparing the roughness and cleaning depth of rust layers cleaned under conditions of liquid-assisted, solid-assisted, and mixed solid–liquid-assisted laser cleaning, simultaneously establishing a three-dimensional finite element model to study the variations during the cleaning process, and conducting a comparative analysis of the results of both, the cleaning mechanism is elucidated. The experimental results indicate that under conditions of water-assisted cleaning, the depth of rust layer increases initially and then decreases with varying water layer heights. The maximum cleaning depth is achieved at a water layer height of 0.1 mm, while the optimal surface roughness occurs at a water layer height of 0.2 mm, indicating a change in cleaning mechanism. The cleaning pattern with SiO2 activator assistance follows a similar trend to a water medium, reaching maximum cleaning depth at 0.1 mm height, with a slight improvement in surface roughness compared to water-assisted cleaning. Finally, solid–liquid mixing can achieve cleaning completion and improve surface roughness under conditions where water-assisted cleaning alone fails to reach a clean state. Therefore, the active agent can be used for laser cleaning to promote the cleaning process, and solid–liquid mixing to assist the laser cleaning can be a theoretical guide for the field of laser cleaning. Full article
(This article belongs to the Special Issue Corrosion Inhibitors and Protective Coatings, 2nd Edition)
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