Development of a Protocol for the Evaluation of the Mechanical Behavior of a Transtibial Prosthesis by Infrared Thermography
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Publisher
Springer International Publishing
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http://link.springer.com/content/pdf/10.1007/978-3-030-30648-9_106
Reference14 articles.
1. Luengas Contreras, L.A., Camargo Casallas, E., Guardiola, D.: Modelagem e simulação da marcha protética usando modelo em 3D de uma prótese transtibial. Rev. Ciencias la Salud 16(1), 82–100 (2018). https://doi.org/10.12804/revistas.urosario.edu.co/revsalud/a.6492
2. Omasta, M., Paloušek, D., Návrat, T., Rosický, J.: Finite element analysis for the evaluation of the structural behaviour, of a prosthesis for transtibial amputees. Med. Eng. Phys. 34(1), 38–45 (2012). https://doi.org/10.1016/j.medengphy.2011.06.014
3. Junqueira, D.M., Gomes, G.F., Silveira, M.E., Ancelotti, A.C.: Design optimization and development of tubular isogrid composites tubes for lower limb prosthesis. Appl. Compos. Mater. 26(1), 273–297 (2019). https://doi.org/10.1007/s10443-018-9692-2
4. Chrysochoos, A.: Infrared thermography applied to the analysis of material behavior: a brief overview. Quant. Infrared Thermogr. J. 9(2), 193–208 (2012). https://doi.org/10.1080/17686733.2012.746069
5. Wang, X.G., Crupi, V., Guo, X.L., Zhao, Y.G.: Quantitative thermographic methodology for fatigue assessment and stress measurement. Int. J. Fatigue 32(12), 1970–1976 (2010). https://doi.org/10.1016/j.ijfatigue.2010.07.004
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