Experimental study of the properties of metamaterials based on PLA plastic when perforated by a rigid striker
- Autores: Ivanova S.Y.1, Osipenko K.Y.1, Banichuk N.V.1, Lisovenko D.S.1
- 
							Afiliações: 
							- Ishlinsky Institute for Problems in Mechanics RAS
 
- Edição: Nº 4 (2024)
- Páginas: 207-214
- Seção: Articles
- URL: https://kld-journal.fedlab.ru/1026-3519/article/view/673041
- DOI: https://doi.org/10.31857/S1026351924040146
- EDN: https://elibrary.ru/UCEOZU
- ID: 673041
Citar
Texto integral
 Acesso aberto
		                                Acesso aberto Acesso está concedido
						Acesso está concedido Acesso é pago ou somente para assinantes
		                                							Acesso é pago ou somente para assinantes
		                                					Resumo
The mechanical properties of metamaterials with different cellular internal structures were experimentally studied when perforated along the normal by a rigid spherical striker. Auxetic and non-auxetic samples of metamaterials with a chiral structure of cells, respectively, in the form of concave or convex hexagons, were produced using a 3D printer from e-PLA plastic. Based on the penetration experiments, the properties of chiral auxetic and non-auxetic samples of the same mass were compared for the cases when there was air inside the cells and when the cells were filled with gelatin. The relative loss of kinetic energy of the striker when perforating gelatin-filled samples was significantly higher for the auxetic metamaterial than for the non-auxetic one. For unfilled (“air”) samples, the relative loss of kinetic energy was slightly higher for the nonauxetic.
Palavras-chave
Texto integral
 
												
	                        Sobre autores
S. Ivanova
Ishlinsky Institute for Problems in Mechanics RAS
														Email: lisovenk@ipmnet.ru
				                					                																			                												                	Rússia, 							Moscow						
K. Osipenko
Ishlinsky Institute for Problems in Mechanics RAS
														Email: lisovenk@ipmnet.ru
				                					                																			                												                	Rússia, 							Moscow						
N. Banichuk
Ishlinsky Institute for Problems in Mechanics RAS
														Email: lisovenk@ipmnet.ru
				                					                																			                												                	Rússia, 							Moscow						
D. Lisovenko
Ishlinsky Institute for Problems in Mechanics RAS
							Autor responsável pela correspondência
							Email: lisovenk@ipmnet.ru
				                					                																			                												                	Rússia, 							Moscow						
Bibliografia
- Ivanova S.Yu., Osipenko K.Yu., Kuznetsov V.A., Solovyov N.G., Banichuk N.V., Lisovenko D.S. Experimental investigation of the properties of auxetic and non-auxetic metamaterials made of metal during penetration of rigid strikers // Mech. Solids. 2023. V. 58. № 2. P. 524–528. https://doi.org/10.3103/S0025654422601616
- Ivanova S.Yu., Osipenko K.Yu., Demin A.I., Banichuk N.V., Lisovenko D.S. Studying the properties of metamaterials with a negative Poisson’s ratio when punched by a rigid impactor // Mech. Solids. 2023. V. 58. № 5. P. 1536–1544. https://doi.org/10.3103/S0025654423600897
- Lim T.-C. Auxetic Materials and Structures. Singapore: Springer, 2015. http://doi.org/10.1007/978-981-287-275-3
- Kolken H.M.A., Zadpoor A.A. Auxetic Mechanical Metamaterials // RSC Adv. 2017. V. 7. № 9. P. 5111–5129. http://doi.org/10.1039/C6RA27333E
- Ren X., Das R., Tran P., et al. Auxetic Metamaterials and Structures: A Review // Smart Mater. Struct. 2018. V. 27. № 2. P. 023001. https://doi.org/10.1088/1361-665X/aaa61c
- Wu W., Hu W., Qian G. et al. Mechanical design and multifunctional applications of chiral mechanical metamaterials: A review // Mater. Des. 2019. V. 180. P. 107950. https://doi.org/10.1016/j.matdes.2019.107950
- Gorodtsov V.A., Lisovenko D.S. Auxetics among materials with cubic anisotropy // Mech. Solids. 2020. V. 55. № 4. P. 461–474. https://doi.org/10.3103/S0025654420040044
- Shitikova M.V. Fractional operator viscoelastic models in dynamic problems of mechanics of solids: A Review // Mech. Solids. 2022. V. 57. № 1. P. 1–33. http://doi.org/10.3103/S0025654422010022
- Gao Y., Huang H. Energy absorption and gradient of hybrid honeycomb structure with negative Poisson’s ratio // Mech. Solids. 2022. V. 57. № 5. P. 1118–1133. http://.doi.org/10.3103/S0025654422050053
Arquivos suplementares
 
				
			 
						 
						 
						 
						 
					 
									

 
  
  
  Enviar artigo por via de e-mail
			Enviar artigo por via de e-mail 



