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Meftah Hrairi

Researcher at International Islamic University Malaysia

Publications -  93
Citations -  1053

Meftah Hrairi is an academic researcher from International Islamic University Malaysia. The author has contributed to research in topics: Stress intensity factor & Stress concentration. The author has an hindex of 13, co-authored 85 publications receiving 773 citations. Previous affiliations of Meftah Hrairi include International Islamic University, Islamabad.

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Research and Progress in Incremental Sheet Forming Processes

TL;DR: Incremental sheet forming (ISF) is an emerging metal-forming technology in which the tool motion is controlled numerically as discussed by the authors, and it is economical to form complex parts in small to medium batches and provides a short and inexpensive way of forming products having a relatively simple but interesting shape.
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Clinching process for joining dissimilar materials: state of the art

TL;DR: A brief review of traditional joining methods for dissimilar materials and the clinching process are illustrated in greater detail to guide researchers for future work by identifying weaknesses of the current processes as well as potential for valuable contributions in the field of clinching.
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On the characteristics of multistage evacuated solar distillation

TL;DR: In this paper, a multistage evacuated solar distillation system was designed to increase the productivity and improve the efficiency of the simple solar still by virtue of the higher evaporation rate under vacuum conditions.
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Significant Parameters for the Surface Roughness in Incremental Forming Process

TL;DR: In this article, the variation of surface roughness (SR) in a negative incremental sheet forming (ISF) process was systematically studied by means of four different process parameters, namely, the vertical step size, forming tool diameter, spindle speed, and feed rate.
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Recent and future development of the application of finite element analysis in clinching process

TL;DR: In this paper, a critical review of the finite element modeling of the clinching process was carried out from different perspectives and the findings about difficulties facing the simulations of different clinching processes, the optimization of the process parameters, and the strength, joinability and the quality of the joint were highlighted.