In the present contribution, mixed mode I/III fracture toughness of a polycrystalline graphite is studied experimentally, numerically and theoretically using a new designed test specimen. A simple disc shape specimen subjected to three-point bending named herein edge notched disc bend (ENDB), is successfully employed for fracture toughness experiments on graphite. This specimen can introduce full combination of modes I and III including pure mode I, pure mode III and complete intermediate mode mixities. Fracture toughness values (KIc and KIIIc) of investigated graphite are obtained for six different mode mixities for and the obtained experimental data are compared with theoretical predictions of two conventional mixed mode I/III fracture theories namely: maximum tangential stress (MTS) and maximum tangential strain energy density (MTSED). It has been observed that the fracture toughness results are in good agreement with the mixed mode I/III curve of MTSED criterion. Consequently, the suggested ENDB specimen can be proposed as a suitable specimen for mixed mode I/III fracture toughness study of based on graphite materials. © 2017 Elsevier Ltd

Investigation of fracture toughness for a polycrystalline graphite under combined tensile-tear deformation / Bahmani, A.; Aliha, M. R. M.; Berto, F.. - In: THEORETICAL AND APPLIED FRACTURE MECHANICS. - ISSN 0167-8442. - 90:(2017), pp. 53-64. [10.1016/j.tafmec.2017.02.011]

Investigation of fracture toughness for a polycrystalline graphite under combined tensile-tear deformation

Berto F.
2017

Abstract

In the present contribution, mixed mode I/III fracture toughness of a polycrystalline graphite is studied experimentally, numerically and theoretically using a new designed test specimen. A simple disc shape specimen subjected to three-point bending named herein edge notched disc bend (ENDB), is successfully employed for fracture toughness experiments on graphite. This specimen can introduce full combination of modes I and III including pure mode I, pure mode III and complete intermediate mode mixities. Fracture toughness values (KIc and KIIIc) of investigated graphite are obtained for six different mode mixities for and the obtained experimental data are compared with theoretical predictions of two conventional mixed mode I/III fracture theories namely: maximum tangential stress (MTS) and maximum tangential strain energy density (MTSED). It has been observed that the fracture toughness results are in good agreement with the mixed mode I/III curve of MTSED criterion. Consequently, the suggested ENDB specimen can be proposed as a suitable specimen for mixed mode I/III fracture toughness study of based on graphite materials. © 2017 Elsevier Ltd
2017
Graphite; Strain energy, Combination of modes; Fracture toughness values; Maximum tangential stress; Mixed mode; Polycrystalline; Test specimens; Theoretical assessment; Three point bending, Fracture toughness; Fracture toughness experiment; Mixed mode I/III; New test specimen; Polycrystalline graphite; Theoretical assessment
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Investigation of fracture toughness for a polycrystalline graphite under combined tensile-tear deformation / Bahmani, A.; Aliha, M. R. M.; Berto, F.. - In: THEORETICAL AND APPLIED FRACTURE MECHANICS. - ISSN 0167-8442. - 90:(2017), pp. 53-64. [10.1016/j.tafmec.2017.02.011]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1688323
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