Skip to main content
User Image

Amanullah Fatehmulla

Professor

Professor, Department of Physics and Astronomy,

Sciences
Building 4, 2nd Floor, Office 2A 56,
publication
Journal Article
2025

Interval-Based Uncertain Dynamic Analysis of Nanotube-Reinforced Polymeric Composite Panel Using Fuzzified FEM-Numerical and Experimental Validation

This research numerically investigates the dynamic responses of carbon nanotube-reinforced polymeric composite (CNTRPC) with uncertain material properties. The numerical solutions are obtained using the finite element model in the framework of equivalent single-layer theory. Further, the uncertain composite properties are evaluated via fuzzy rule steps. First, the deterministic deflections under the transient loadings are evaluated numerically by setting fuzzy membership as zero and verified with earlier published numerical and in-house experimental data. This study introduces the fuzzy finite element method (FFEM) to derive dynamic responses for the first time computationally. Additionally, the composite properties are transformed into fuzzy variables by adding fuzzy logic to evaluate the random composite property variables for computational purposes. Using Newmark’s constant acceleration integration technique, a MATLAB-based computational framework is developed to calculate the dynamic responses of CNT-reinforced composites. The model’s accuracy is validated by comparing computed results with experimental data and published findings based on deterministic composite properties. Furthermore, new numerical examples are presented using the proposed FFEM model, implementing fuzzified elastic properties under transient loading and varying geometrical configurations. Finally, the implications of material uncertainty on the design of nanocomposite components with geometry-dependent parameters are discussed, emphasizing the importance of accounting for these uncertainties in advanced engineering applications.

Magazine \ Newspaper
International Journal of Structural Stability and Dynamics 
Pages
2650176
more of publication
publications

This work aims to tune the structural and optical features of formamidinium lead triiodide (FAPbI) perovskite thin films using 4-hydroxyphenethylammonium iodide (4-HOPhEtNH2 HI) additive. (4-

by Fatehmulla, Amanullah, Abdullah A. Albassam, A. M. El-Naggar, Anwar Q. Alanazi, A. M. Kamal, Lama MA Almarshad, Ahmad A. Alsaleh, and A. M. Aldhafiri
2025
publications

The aim of the study is to develop a specialist dental capping agent that is particularly formulated to target pulp inflammation.

by Balamurugan, K. S., T. Sangeetha, E. Ranjith Kumar, I. Pradeep, Vasudeva Reddy Minnam Reddy, Woo Kyoung Kim, and Amanullah Fatehmulla
2025
publications

The world has a global issue in effectively utilizing and preserving fresh water owing to the significant rise in population and industrialization. Numerous strategies have been developed and put…

by Chinnasamy, Subramaniyan, Omar Bait, B. Kalidasan, and Amanullah Fatehmulla
2025