Surface treatment of thermal sprayed ceramic coatings by laser beam

Other Title(s)

المعاملة السطحية لطلاء السيراميك المحضر بالرش الحراري باستخدام الليزر

Joint Authors

Jasim, I. K.
Mahmud, A. SH.
Hassan, Th. A.

Source

Engineering and Technology Journal

Issue

Vol. 32, Issue 4B(s) (30 Apr. 2014), pp.737-743, 7 p.

Publisher

University of Technology

Publication Date

2014-04-30

Country of Publication

Iraq

No. of Pages

7

Main Subjects

Physics

Topics

Abstract EN

Composite structure of magnesia partially stabilized Zirconia (MgO-PSZ) with a Ni-Al bond coat have been investigated.

This composite was sprayed on to a stainless steel grid of stainless steel-304 substrate to produce coating layer.

The measurements of microstructure surface roughness, porosity and microhardness for sprayed layers wereperformed.

PulsedNd: glass laser with pulse duration of 300 μs.

and an energy ranging between (1-7.6)jouleswas used to investigate the effect of heat treatment on the sprayed layer.The laser treatment causeda reduction in surface roughness and porosity.

An improvement in the mechanical properties of the composites wasobserved.

American Psychological Association (APA)

Jasim, I. K.& Mahmud, A. SH.& Hassan, Th. A.. 2014. Surface treatment of thermal sprayed ceramic coatings by laser beam. Engineering and Technology Journal،Vol. 32, no. 4B(s), pp.737-743.
https://search.emarefa.net/detail/BIM-627907

Modern Language Association (MLA)

Mahmud, A. SH.…[et al.]. Surface treatment of thermal sprayed ceramic coatings by laser beam. Engineering and Technology Journal Vol. 32, no. 4B(s) (2014), pp.737-743.
https://search.emarefa.net/detail/BIM-627907

American Medical Association (AMA)

Jasim, I. K.& Mahmud, A. SH.& Hassan, Th. A.. Surface treatment of thermal sprayed ceramic coatings by laser beam. Engineering and Technology Journal. 2014. Vol. 32, no. 4B(s), pp.737-743.
https://search.emarefa.net/detail/BIM-627907

Data Type

Journal Articles

Language

English

Notes

Includes appendices : p. 740-743

Record ID

BIM-627907