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Erschienen in: Experimental Mechanics 8/2011

01.10.2011

A Simple Methodology to Measure the Dynamic Flexural Strength of Brittle Materials

verfasst von: A. Belenky, D. Rittel

Erschienen in: Experimental Mechanics | Ausgabe 8/2011

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Abstract

A simple methodology is proposed for measuring the dynamic flexural strength of brittle materials. The proposed technique is based on 1-point impact experimental setup with (unsupported) small beam specimens. All that is needed is a measurement of the prescribed velocity as a boundary condition and the fracture time for a failure criterion, both to be input in a numerical (FE) model to determine the flexural strength. The specimen was modeled numerically and observed to be essentially loaded in bending until its final inertial failure. The specimen’s geometry was optimized, noting that during the very first moments of the loading, the specimen length does not affect its overall response, so that it can be considered as infinite. The use of small beam specimens allow large scale testing of the flexural strength and comparison between static and dynamic loading configurations. Preliminary experiments are presented to illustrate the proposed approach.

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Literatur
1.
Zurück zum Zitat ASTM-C1161 (1994) Standard test method for flexural strength of advanced ceramics at ambient tepmerature ASTM-C1161 (1994) Standard test method for flexural strength of advanced ceramics at ambient tepmerature
2.
Zurück zum Zitat ASTM-C1424 (1999) Standard test method for monotonic compressive strength of advanced ceramics at ambient temperature ASTM-C1424 (1999) Standard test method for monotonic compressive strength of advanced ceramics at ambient temperature
3.
Zurück zum Zitat ASTM-C1421 (1999) Standard test methods for determination of fracture toughness of advanced ceramics at ambient temperature ASTM-C1421 (1999) Standard test methods for determination of fracture toughness of advanced ceramics at ambient temperature
4.
Zurück zum Zitat Chen WN, Ravichandran G (1997) Dynamic compressive failure of a glass ceramic under lateral confinement. J Mech Phys Solids 45:1303CrossRef Chen WN, Ravichandran G (1997) Dynamic compressive failure of a glass ceramic under lateral confinement. J Mech Phys Solids 45:1303CrossRef
5.
Zurück zum Zitat Timoshenko S, Goodier J (1970) Theory of elasticity. McGraw-Hill, New YorkMATH Timoshenko S, Goodier J (1970) Theory of elasticity. McGraw-Hill, New YorkMATH
6.
Zurück zum Zitat ASTM-C1144. Standard test method for splitting tensile strength for brittle nuclear waste forms. 1989 (reapproved 2004) ASTM-C1144. Standard test method for splitting tensile strength for brittle nuclear waste forms. 1989 (reapproved 2004)
7.
Zurück zum Zitat Hudson JA (1969) Tensile strength and ring test. Int J Rock Mech Min Sci 6:91CrossRef Hudson JA (1969) Tensile strength and ring test. Int J Rock Mech Min Sci 6:91CrossRef
8.
9.
Zurück zum Zitat Wang QZ, Li W, Xie HP (2009) Dynamic split tensile test of Flattened Brazilian Disc of rock with SHPB setup. Mech Mater 41:252CrossRef Wang QZ, Li W, Xie HP (2009) Dynamic split tensile test of Flattened Brazilian Disc of rock with SHPB setup. Mech Mater 41:252CrossRef
10.
Zurück zum Zitat Johnston C, Ruiz C (1995) Dynamic testing of ceramics under tensile-stress. Int J Solids Struct 32:2647–2656CrossRef Johnston C, Ruiz C (1995) Dynamic testing of ceramics under tensile-stress. Int J Solids Struct 32:2647–2656CrossRef
11.
Zurück zum Zitat Erzar B, Forquin P (2010) An experimental method to determine the tensile strength of concrete at high rates of strain. Exp Mech 50:941–955 Erzar B, Forquin P (2010) An experimental method to determine the tensile strength of concrete at high rates of strain. Exp Mech 50:941–955
12.
Zurück zum Zitat Dai F, Xia K, Luo SN (2008) Semicircular bend testing with split Hopkinson pressure bar for measuring dynamic tensile strength of brittle solids. Rev Sci Instrum 79(12):6 Dai F, Xia K, Luo SN (2008) Semicircular bend testing with split Hopkinson pressure bar for measuring dynamic tensile strength of brittle solids. Rev Sci Instrum 79(12):6
13.
Zurück zum Zitat Bohme W, Kalthoff JF (1982) The behavior of notched bend specimens in impact testing. Int J Fract 20:R139CrossRef Bohme W, Kalthoff JF (1982) The behavior of notched bend specimens in impact testing. Int J Fract 20:R139CrossRef
14.
Zurück zum Zitat Weisbrod G, Rittel D (2000) A method for dynamic fracture toughness determination using short beams. Int J Fract 104:89CrossRef Weisbrod G, Rittel D (2000) A method for dynamic fracture toughness determination using short beams. Int J Fract 104:89CrossRef
15.
Zurück zum Zitat Rittel D, Pineau A, Clisson J, Rota L (2002) On testing of Charpy specimens using the one-point bend impact technique. Exp Mech 42:247CrossRef Rittel D, Pineau A, Clisson J, Rota L (2002) On testing of Charpy specimens using the one-point bend impact technique. Exp Mech 42:247CrossRef
16.
Zurück zum Zitat Belenky A, Bar-On I, Rittel D (2010) Static and dynamic fracture of transparent nanograined alumina. J Mech Phys Solids 58:484CrossRef Belenky A, Bar-On I, Rittel D (2010) Static and dynamic fracture of transparent nanograined alumina. J Mech Phys Solids 58:484CrossRef
17.
Zurück zum Zitat Delvare F, Hanus JL, Bailly P (2010) A non-equilibrium approach to processing Hopkinson Bar bending test data: Application to quasi-brittle materials. International Journal of Impact Engineering 37:1170–1179 Delvare F, Hanus JL, Bailly P (2010) A non-equilibrium approach to processing Hopkinson Bar bending test data: Application to quasi-brittle materials. International Journal of Impact Engineering 37:1170–1179
18.
19.
Zurück zum Zitat Giovanola JH (1986) Investigation and application of the one-point-bend impact test. ASTM, Philadelphia, p 307 Giovanola JH (1986) Investigation and application of the one-point-bend impact test. ASTM, Philadelphia, p 307
20.
Zurück zum Zitat Dorogoy A, Rittel D (2008) Transverse impact of free-free square aluminum beams: an experimental-numerical investigation. Int J Impact Eng 35:569CrossRef Dorogoy A, Rittel D (2008) Transverse impact of free-free square aluminum beams: an experimental-numerical investigation. Int J Impact Eng 35:569CrossRef
Metadaten
Titel
A Simple Methodology to Measure the Dynamic Flexural Strength of Brittle Materials
verfasst von
A. Belenky
D. Rittel
Publikationsdatum
01.10.2011
Verlag
Springer US
Erschienen in
Experimental Mechanics / Ausgabe 8/2011
Print ISSN: 0014-4851
Elektronische ISSN: 1741-2765
DOI
https://doi.org/10.1007/s11340-010-9453-0

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