Transversely curved honeycomb lattice metamaterials for enhancing mode-dependent specific stiffness: a computational investigation based on 3D degenerated shell elements
Transversely curved honeycomb lattice metamaterials for enhancing mode-dependent specific stiffness: a computational investigation based on 3D degenerated shell elements
Awasthi, Mohit
34b6cf8e-6991-498a-8fe5-1775002b8194
Tiwari, Pratik
679be247-925a-4093-a09c-ebafe1041d3d
Naskar, Susmita
5f787953-b062-4774-a28b-473bd19254b1
Mukhopadhyay, Tanmoy
2ae18ab0-7477-40ac-ae22-76face7be475
April 2023
Awasthi, Mohit
34b6cf8e-6991-498a-8fe5-1775002b8194
Tiwari, Pratik
679be247-925a-4093-a09c-ebafe1041d3d
Naskar, Susmita
5f787953-b062-4774-a28b-473bd19254b1
Mukhopadhyay, Tanmoy
2ae18ab0-7477-40ac-ae22-76face7be475
Awasthi, Mohit, Tiwari, Pratik, Naskar, Susmita and Mukhopadhyay, Tanmoy
(2023)
Transversely curved honeycomb lattice metamaterials for enhancing mode-dependent specific stiffness: a computational investigation based on 3D degenerated shell elements.
UKACM 2023 Conference, University of Warwick, Coventry, United Kingdom.
19 - 21 Apr 2023.
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Published date: April 2023
Venue - Dates:
UKACM 2023 Conference, University of Warwick, Coventry, United Kingdom, 2023-04-19 - 2023-04-21
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Local EPrints ID: 474564
URI: http://eprints.soton.ac.uk/id/eprint/474564
PURE UUID: 1f9bdd53-2e09-4dd7-b78d-a22cc845482d
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Date deposited: 24 Feb 2023 18:19
Last modified: 17 Mar 2024 04:18
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Author:
Mohit Awasthi
Author:
Pratik Tiwari
Author:
Tanmoy Mukhopadhyay
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