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Kamel Chaoui

Researcher at University of Annaba

Publications -  58
Citations -  1489

Kamel Chaoui is an academic researcher from University of Annaba. The author has contributed to research in topics: Surface roughness & Residual stress. The author has an hindex of 15, co-authored 55 publications receiving 1286 citations. Previous affiliations of Kamel Chaoui include SIDI & Case Western Reserve University.

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Analysis of surface roughness and cutting force components in hard turning with CBN tool: Prediction model and cutting conditions optimization

TL;DR: In this paper, the effects of cutting speed, feed rate, workpiece hardness and depth of cut on surface roughness and cutting force components in the hard turning were experimentally investigated.
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Hard machining of hardened bearing steel using cubic boron nitride tool

TL;DR: In this article, the performance of a CBN tool during hard turning of 100Cr6-tempered steel was investigated using a series of long-duration wear tests to elucidate the cutting speed effects on the various tool wear forms.
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An experimental behaviour of concrete-filled steel tubular columns

TL;DR: In this paper, a comparison of experimental failure loads with the predicted failure loads in accordance with the method described in Eurocode 4 Part 1.1 showed good agreement for axially and eccentrically loaded columns with single curvature bending whereas for columns with double curvatures bending the Eurocode loads were higher and on the unsafe side.
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Reliability assessment of underground pipelines under the combined effect of active corrosion and residual stress

TL;DR: In this article, the residual stress distribution in large diameter pipes has been characterized experimentally in order to be coupled with the corrosion model, and the reliability-based assessment of residual stress effects is applied to underground pipelines under a roadway, with and without active corrosion.
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Characteristics of Rb40 steel superficial layer under ball and roller burnishing

TL;DR: In this article, the authors developed a device for mechanical plastic deformation of structural Rb40 steel using ball and roller burnishing and investigated the evolution of associated roughness, hardness and wear resistance.