Preview

Theory and Practice of Corrosion Protection

Advanced search

Composites for chemical industries

https://doi.org/10.31615/j.corros.prot.2022.103.1-2

Abstract

The issue of using composites based on bis-phenolic and epoxy vinyl ester resins in the practice of anti-corrosion protection of technological equipment, in particular, chemical production equipment, is considered. Composites can be used both as coatings and as structural materials in the manufacture of individual parts of equipment, containers, etc. Composites based on these resins can increase the service life of equipment several times. These materials have a wide temperature range of application; can be operated in aggressive environments (acids, alkalis, oxidizing environments); have high adhesion to metal and concrete; strength comparable to the strength of metals; resistance to shock and dynamic loads and the impact of a liquid stream containing a solid phase

About the Authors

Yu. V. Kholodnikov
SKB «Mysl’», LLC
Russian Federation

Yury V. Kholodnikov, Ph.D. in Technical Sciences, General
Director

1v, Zhukovsky pi., Yekaterinburg



L. I. Alshits
SKB «Mysl’», LLC
Russian Federation

Leonid I. Alshits, Ph.D. in Technical Sciences

1v, Zhukovsky pi., Yekaterinburg



A. S. Derbyshev
SKB «Mysl’», LLC
Russian Federation

Alexander S. Derbyshev, Head of the corrosion monitoring laboratory

1v, Zhukovsky pi., Yekaterinburg



References

1. Vorobieva, G. Ya. (1975). Corrosion resistance of materials in aggressive environments of chemical industries. Moscow: Chemistry.

2. Raskatova, V. M. (Ed.) (1980). Quick reference. Engineering materials. Moscow: Mashinostroenie.

3. Schreyer, L. L. (Ed.) (1981). Reference book. Corrosion. Moscow: Metallurgy.

4. Dollezhal’, N. A. (Ed.) (1954). Reference book. Corrosion and chemical resistance of materials. Moscow: Mashgiz.

5. Kamenev, E. I. etc. (1985). Reference book. The use of plastics. Leningrad: Metallurgy.

6. Kalinchev, E. A., Sokovtseva, M. B. (1987). Reference edition. The choice of plastics for the manufacture and operation of products. Leningrad: Chemistry.

7. Katsnelson, E. L., Balaev, G. A. (1978). Handbook. Plastic masses. Properties and application. Leningrad: Chemistry.

8. Derbyshev, A. S. (2019). Reference book. Development of technical materials and recommendations for the use of non-metals as structural materials and coatings for equipment and pipelines of vacuum evaporators and crystallization plants of SverdNIIKhimmash JSC. Yekaterinburg: SverdNIIKhimmash.

9. Kholodnikov, Yu. V., Alshits, L. I. and others. (2016). Industrial composites. Opportunities and prospects. Saarbrucken: LAP LAMBERT Academic Publishing. GmbH & Co.

10. Kholodnikov, Yu. V., Alshits, L. I. (2013). Reference manual. Lining of technological equipment and building structures with composite materials. Yekaterinburg: Publishing House of the Ural State Mining University.

11. Chemical-resistant polymer composites for the repair of technological pipelines. (2012). GOST R 55073-2012.

12. Chemical-Resistant Polymer Composites for Lining Process Vessels. (2012). GOST R 55074-2012.


Review

For citations:


Kholodnikov Yu.V., Alshits L.I., Derbyshev A.S. Composites for chemical industries. Theory and Practice of Corrosion Protection. 2022;27(1):17-31. (In Russ.) https://doi.org/10.31615/j.corros.prot.2022.103.1-2

Views: 199


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 1998-5738 (Print)
ISSN 2658-6797 (Online)