Moniruddoza Ashir
Papers
2
Total Citations
41
H-Index
2
About
Moniruddoza Ashir is a researcher at the forefront of adaptive composite materials, specializing in the textile-based integration of shape memory alloys (SMAs) into fiber-reinforced structures. His work bridges mechanical engineering and smart materials, focusing on creating soft, highly elastic composites with tunable properties for applications in aerospace, robotics, and biomedical devices. Ashir’s major contributions include pioneering the use of flat-knitting and open reed weaving techniques to embed SMA actuator wires into fiber-rubber and fiber-reinforced plastic (FRP) systems, enabling reproducible, automated production while reducing delamination risks. His most-cited paper (2022, 27 citations) experimentally and numerically analyzes deformation behavior in adaptive fiber-rubber composites, demonstrating how integrated SMAs can impart adaptive functionalities. A second influential work (2019, 14 citations) advances adaptive FRPs through tailored fiber placement, addressing key manufacturing challenges. With a growing citation record, Ashir’s research is shaping the next generation of morphing structures and smart textiles, offering scalable solutions for adaptive systems that respond to environmental stimuli. His work is essential reading for students and engineers exploring intelligent, responsive materials.
Research Focus
Key Achievements
Top Papers
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