Materials Map

Discover the materials research landscape. Find experts, partners, networks.

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The Materials Map is an open tool for improving networking and interdisciplinary exchange within materials research. It enables cross-database search for cooperation and network partners and discovering of the research landscape.

The dashboard provides detailed information about the selected scientist, e.g. publications. The dashboard can be filtered and shows the relationship to co-authors in different diagrams. In addition, a link is provided to find contact information.

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Materials Map under construction

The Materials Map is still under development. In its current state, it is only based on one single data source and, thus, incomplete and contains duplicates. We are working on incorporating new open data sources like ORCID to improve the quality and the timeliness of our data. We will update Materials Map as soon as possible and kindly ask for your patience.

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693.932 PEOPLE
693.932 People People

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Naji, M.
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Naskar, Susmita

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University of Southampton

in Cooperation with on an Cooperation-Score of 37%

Topics

Publications (19/19 displayed)

  • 2024Nonlinear stability of curved multi-phase composite panels: influence of agglomeration in randomly distributed carbon nanotubes with non-uniform in-plane loads1citations
  • 2023Data-driven multiscale modeling and robust optimization of composite structure with uncertainty quantification5citations
  • 2023Development of sustainable high performance geopolymer concrete and mortar using agricultural biomass - A strength performance and sustainability analysis33citations
  • 2023Development of sustainable high performance geopolymer concrete and mortar using agricultural biomass - A strength performance and sustainability analysis33citations
  • 2023Development of sustainable high performance geopolymer concrete and mortar using agricultural biomass—A strength performance and sustainability analysis33citations
  • 2023Multilevel fully integrated electromechanical property modulation of functionally graded graphene‐reinforced piezoelectric actuators: coupled effect of poling orientation11citations
  • 2023Sustainable metal-organic framework co-engineered glass fiber separators for safer and longer cycle life of Li-S batteries16citations
  • 2023On characterizing the viscoelastic electromechanical responses of functionally graded graphene-reinforced piezoelectric laminated composites6citations
  • 2023Viscoelastic free vibration analysis of in-plane functionally graded orthotropic plates integrated with piezoelectric sensors: Time-dependent 3D analytical solutions27citations
  • 2023Programmed Out-of-Plane curvature to enhance multimodal stiffness of bending-dominated composite lattices8citations
  • 2023Effective elastic moduli of space-filled multi-material composite lattices10citations
  • 2023Micro scratch behavior study of titanium dioxide and graphene nanoplatelets reinforced polymer nanocompositescitations
  • 2022Compound influence of surface and flexoelectric effects on static bending response of hybrid composite nanorod10citations
  • 2021Analytical Solution for Static and Dynamic Analysis of Graphene-Based Hybrid Flexoelectric Nanostructures9citations
  • 2021Compound influence of topological defects and heteroatomic inclusions on the mechanical properties of SWCNTs24citations
  • 2020Stochastic Oblique Impact on Composite Laminates: A Concise Review and Characterization of the Essence of Hybrid Machine Learning Algorithms37citations
  • 2019Spatially varying fuzzy multi-scale uncertainty propagation in unidirectional fibre reinforced composites51citations
  • 2018Effect of delamination on the stochastic natural frequencies of composite laminates59citations
  • 2013Investigation into metal wire based variant of EMI technique for structural health monitoringcitations

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Kumar, R.
1 / 56 shared
Chakraborty, S.
2 / 13 shared
Dey, T.
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Mukhopadhyay, Tanmoy
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Kumar, Dinesh
1 / 21 shared
Alam, Syed
1 / 1 shared
Castano, Carlos
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Kobayashi, Kazuma
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Usman, Shoaib
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Nagaraju Thotakura, Vamsi
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Azab, Marc
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Bahrami, Alireza
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Thotakura, Vamsi Nagaraju
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Nagaraju, T. Vamsi
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Singh, Kamalpreet
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Shingare, Kishor Balasaheb
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Aslfattahi, Navid
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Kiai, Maryam
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Baydogan, Nilgun
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Mansoor, Mubashir
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Sharma, Rakesh K.
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Ponnada, Srikanth
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Mondal, Soumyadeep
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Shingare, K. B.
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Kumari, P.
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Singh, A.
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Tiwari, Pratik
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Adhikari, Sondipon
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Kundu, Diptiman
1 / 1 shared
Ray, Bankim Chandra
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Shubham, Shubham
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Roy, A.
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Mukhopadhyay, T.
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Dey, S.
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Gupta, K. K.
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Karsh, P. K.
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Choudhury, R.
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Sriramula, Srinivas
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You, Z.
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Bhalla, Suresh
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Co-Authors (by relevance)

  • Kumar, R.
  • Chakraborty, S.
  • Dey, T.
  • Mukhopadhyay, Tanmoy
  • Kumar, Dinesh
  • Alam, Syed
  • Castano, Carlos
  • Kobayashi, Kazuma
  • Usman, Shoaib
  • Nagaraju Thotakura, Vamsi
  • Azab, Marc
  • Bahrami, Alireza
  • Thotakura, Vamsi Nagaraju
  • Nagaraju, T. Vamsi
  • Singh, Kamalpreet
  • Shingare, Kishor Balasaheb
  • Aslfattahi, Navid
  • Kiai, Maryam
  • Baydogan, Nilgun
  • Mansoor, Mubashir
  • Sharma, Rakesh K.
  • Ponnada, Srikanth
  • Mondal, Soumyadeep
  • Shingare, K. B.
  • Kumari, P.
  • Singh, A.
  • Tiwari, Pratik
  • Adhikari, Sondipon
  • Kundu, Diptiman
  • Ray, Bankim Chandra
  • Shubham, Shubham
  • Roy, A.
  • Mukhopadhyay, T.
  • Dey, S.
  • Gupta, K. K.
  • Karsh, P. K.
  • Choudhury, R.
  • Sriramula, Srinivas
  • You, Z.
  • Bhalla, Suresh
OrganizationsLocationPeople

article

Multilevel fully integrated electromechanical property modulation of functionally graded graphene‐reinforced piezoelectric actuators: coupled effect of poling orientation

  • Naskar, Susmita
  • Singh, Kamalpreet
  • Shingare, Kishor Balasaheb
  • Mukhopadhyay, Tanmoy
Abstract

This article explores the coupled static and dynamic electromechanical responses of single and multilayered functionally graded (FG) graphene platelet (GPL)-reinforced piezoelectric composite (GRPC) plates by developing a 3D finite-element model. The bending and eigenfrequency of piezoelectric FG composite plates are investigated, wherein an active behavior is proposed to be exploited in terms of the functional design of poling angle for a more elementary level property modulation. The numerical results reveal that the mechanical behavior concerning deflection and resonance frequency of FG-GRPC plates can be significantly enhanced and modulated due to the influence of piezoelectricity and a small fraction of GPLs along with the consideration of poling angle in a multiscale fully integrated computational framework. The notions of on-demand property modulation, actuation, and active control are established here by undertaking a comprehensive numerical analysis considering the coupled influences of poling orientations, different distributions, patterns, and weight fractions of GPLs along with different electromechanical loadings. Against the backdrop of the recent advances in microscale manufacturing, the current computational work will provide necessary physical insights in modeling piezoelectric multifunctional FG composites for active control of mechanical properties and harvesting electromechanical energy in a range of devices and systems.

Topics
  • impedance spectroscopy
  • composite