Flash heating of epoxy based corrosion inhibitor thin films on aluminum substrates

Other Title(s)

التسخين الومضي لمانع التآكل القائم على الإيبوكسي أغشية رقيقة على ركائز الألمنيوم

Author

Muhammad, Ban Walid

Source

Journal of Natural Sciences, Life and Applied Sciences

Issue

Vol. 6, Issue 1 (31 Mar. 2022), pp.85-106, 22 p.

Publisher

National Research Center

Publication Date

2022-03-31

Country of Publication

Palestine (Gaza Strip)

No. of Pages

22

Main Subjects

Physics

Abstract EN

The following investigation shows the experimental evaluation of a transient heat load centered on a corrosion inhibitor coating employed in the epoxy polyamide primary.

the temperature at which the epoxy polyamide film initiated thermal deterioration increased with increased heating rates.

This coating is a Deft Inc.'s high- quality solid epoxy primary.

a single inch diameter lamp on two types of aluminum substrates was focused on the xenon flashlight: AA2024- T4 and AA7075- T3.

For modeling purposes, edge effects have not been explored.

the ceramic firebrick isolated the coated aluminum disks to ensure minimum edge effects.

the FTCS model has been designed to calculate the temporary reaction to the thermal energy flash load.

It has been demonstrated that substrates have a substantial impact on epoxy polyamide film energy absorption, film surface temperatures and absorbed energy.

American Psychological Association (APA)

Muhammad, Ban Walid. 2022. Flash heating of epoxy based corrosion inhibitor thin films on aluminum substrates. Journal of Natural Sciences, Life and Applied Sciences،Vol. 6, no. 1, pp.85-106.
https://search.emarefa.net/detail/BIM-1404750

Modern Language Association (MLA)

Muhammad, Ban Walid. Flash heating of epoxy based corrosion inhibitor thin films on aluminum substrates. Journal of Natural Sciences, Life and Applied Sciences Vol. 6, no. 1 (Mar. 2022), pp.85-106.
https://search.emarefa.net/detail/BIM-1404750

American Medical Association (AMA)

Muhammad, Ban Walid. Flash heating of epoxy based corrosion inhibitor thin films on aluminum substrates. Journal of Natural Sciences, Life and Applied Sciences. 2022. Vol. 6, no. 1, pp.85-106.
https://search.emarefa.net/detail/BIM-1404750

Data Type

Journal Articles

Language

English

Notes

Includes bibliographical references : p. 105-106

Record ID

BIM-1404750