10.46243/jstj.2017.v2.i3.121 registered
An Update on Nano Coatings To Mitigate Corrosion
Resolves to https://www.jst.org.in/index.php/pub/article/view/121
Held by Longman Publishers (India) · prefix 10.46243 live · DOI address https://doi.org/10.46243/jstj.2017.v2.i3.121
Registered 29 Sep 2026 via crossref · record version 2 · last change 29 Sep 2026, 11:59 PM · record sha256 cacda9dae7df4769…
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JournalArticle — an article in a journal · Digital · Visual · en
An Update on Nano Coatings To Mitigate Corrosion (PrincipalTitle)
Published 2017-05-03
Part of Journal of Science & Technology · ISSN 2456-5660 · volume 02 · issue 03 · pages 08–10
Agents
- Dr. B.S. R. Murthy (author)
- Longman Publishers (publisher)
Identifiers DOI 10.46243/jstj.2017.v2.i3.121
Abstract
Fireside corrosion of water wall tubing is the primary cause of forced outages and availability losses in conventional coal plants, costing U.S. power producers alone almost $150 million each year. Existing mitigation measures—including weld overlays and thermal spray coatings—offer some protection, especially in subcritical boilers. However, field experience indicates that weld overlays can create additional problems, while conventional coating techniques cannot provide long-term protection in supercritical units. In ultra super critical boilers. High working temperatures and weights make more extreme gas side tube consumption issues. Nano composite coatings of Zn-Ni-SiO2 in many layers kept on gentle steel from Zinc-Nickel shower, having Zn+2 and Ni+2 particles and consistently scattered Nano silicon dioxide particles. The consumption attributes and properties over layers of Nano composite coatings were considered and inspected by electrochemical polarization and impedance strategies. Such testimony parameters, for example, shower synthesis, cyclic cathode current densities and numbers of layers were enhanced to acquire superior of coatings to decrease consumption. A critical ascent in the erosion relief of Nano coatings in a few layers was watched when a covering was transformed from a monolayer to many layers. Erosion rate of Nano coatings diminished dynamically with number of layers up to an ideal level,and after that began expanding. The expansion Corrosion rate at a larger amount of layering is because of dissemination of layers as testimony time is short neglecting to give the better erosion insurance. The development of layers, incorporation of silica molecule in multi layer covering lattice were affirmed by the review. At ideal current densities, i.e. at 3.0–5.0 A/cm2, the Zn-Ni-SiO2 covering having 300 layers, spoke to as (Zn-Ni-SiO2)3.0/5.0/300 is observed to be around 107 circumstances more consumption safe than a monolayer Zn-Ni-SiO2 covering, created from a similar shower for a similar time. The reasons in charge of the amplified consumption assurance of MNC Zn-Ni-SiO2 coatings, contrasted with relating monolayer Zn-Ni and (Zn-Ni-SiO2) coatings were dissected, and results were examined
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Each element by the standard's name (Annex B: reference elements, then administrative) and the Handbook's (in grey), read off the record above.
| Element | Value | In the record |
|---|---|---|
| DOI Name DOI name | 10.46243/jstj.2017.v2.i3.121 | doi |
| Referent Type referentType | Creation | referent |
| Referent Sub-Type referentSubType | JournalArticle — an article in a journal | type |
| Referent Name(s) referentName(s) | An Update on Nano Coatings To Mitigate Corrosion (PrincipalTitle, en) | titles |
| Basic Metadata basicMetadata | author: Dr. B.S. R. Murthy publisher: Longman Publishers published: 2017-05-03 part of: Journal of Science & Technology · ISSN 2456-5660 · vol. 02 · no. 03 · pp. 08–10 language: en form: Digital · Visual · Language | agents, dates, container, language, structural_type, modes, characters |
| Referent Identifier(s) alternateIdentifier(s) | none besides the DOI | identifiers, relations (IsSameAs) |
| Registration Authority registrationAuthorityCode | Crossref — issued by Crossref (member 25296); held here as a copy | record.source_agency (our code, ra_doi_name, for names issued here once appointed) |
| Created Date issueDate | 2026-09-07 | record.registered (when the DOI name was first registered) |
| relatedIdentifiers | none needed — the descriptive metadata is in this record | container, relations (only where the descriptive metadata lives at another identifier) |
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Every change to this DOI, in order, as it was recorded. Entries are only ever added, never changed or removed.
| # | When | What | By | Changes |
|---|---|---|---|---|
| 1 | 29 Sep 2026, 10:00 PM | register registered at Crossref; record read from api.crossref.org | Administrator (admin) | 81 fields set · sha256 d3f5e2ae4396… |
| 2 | 29 Sep 2026, 11:59 PM | update record re-read from api.crossref.org | Administrator (admin) | container.titles.0.value: |
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