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Published in: Rock Mechanics and Rock Engineering 6/2010

01-11-2010 | Original Paper

Some Fundamental Issues in Dynamic Compression and Tension Tests of Rocks Using Split Hopkinson Pressure Bar

Authors: Feng Dai, Sheng Huang, Kaiwen Xia, Zhuoying Tan

Published in: Rock Mechanics and Rock Engineering | Issue 6/2010

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Abstract

Accurate characterizations of rock strengths under higher loading rates are crucial in many rock engineering applications. The split Hopkinson pressure bar (SHPB) system has been used to quantify the dynamic compressive strength of rocks using the short cylindrical specimen and the dynamic tensile strength of rocks using the Brazilian disc (BD) specimen. However, SHPB is a standard tool that is suitable for metal testing; there are some fundamental issues that need to be carefully visited in applying SHPB to rock dynamic tests. This paper addresses several such critical issues, including the choice of slenderness ratio of the compressive specimen, the effect of friction between the sample and bars on the measured results of compressive strength, the necessity of dynamic force balance on the dynamic BD test, and the validity of using the standard BD equation in the data reduction. We show that with proper experimental designs that address these issues, the dynamic compressive strength and dynamic tensile strength of rocks measured using SHPB are valid and reliable.

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Literature
go back to reference ASTM Standard C170-90 (1999) Standard test method for compressive strength of dimension stone. ASTM International, USA ASTM Standard C170-90 (1999) Standard test method for compressive strength of dimension stone. ASTM International, USA
go back to reference Bell JF (1966) An experimental diffraction grating study of the quasi-static hypothesis of the split Hopkinson bar experiment. J Mech Phys Solids 14(6):309–327CrossRef Bell JF (1966) An experimental diffraction grating study of the quasi-static hypothesis of the split Hopkinson bar experiment. J Mech Phys Solids 14(6):309–327CrossRef
go back to reference Bertholf LD, Karnes CH (1975) Two dimensional analysis of the SHPB system. J Mech Phys Solids 23:1–19CrossRef Bertholf LD, Karnes CH (1975) Two dimensional analysis of the SHPB system. J Mech Phys Solids 23:1–19CrossRef
go back to reference Bieniawski ZT, Bernede MJ (1979) Suggested methods for determining the uniaxial compressive strength and deformability of rock materials. Int J Rock Mech Min 16(2):137–138CrossRef Bieniawski ZT, Bernede MJ (1979) Suggested methods for determining the uniaxial compressive strength and deformability of rock materials. Int J Rock Mech Min 16(2):137–138CrossRef
go back to reference Bieniawski ZT, Hawkes I (1978) Suggested methods for determining tensile strength of rock materials. Int J Rock Mech Min 15(3):99–103CrossRef Bieniawski ZT, Hawkes I (1978) Suggested methods for determining tensile strength of rock materials. Int J Rock Mech Min 15(3):99–103CrossRef
go back to reference Cai M, Kaiser PK, Suorineni F, Su K (2007) A study on the dynamic behavior of the Meuse/Haute-Marne argillite. Phys Chem Earth 32(8–14):907–916 Cai M, Kaiser PK, Suorineni F, Su K (2007) A study on the dynamic behavior of the Meuse/Haute-Marne argillite. Phys Chem Earth 32(8–14):907–916
go back to reference Davies ED, Hunter SC (1963) The dynamic compression testing of solids by the method of the split Hopkinson pressure bar. J Mech Phys Solids 11:155–179CrossRef Davies ED, Hunter SC (1963) The dynamic compression testing of solids by the method of the split Hopkinson pressure bar. J Mech Phys Solids 11:155–179CrossRef
go back to reference Frew DJ, Forrestal MJ, Chen W (2001) A split Hopkinson pressure bar technique to determine compressive stress-strain data for rock materials. Exp Mech 41(1):40–46CrossRef Frew DJ, Forrestal MJ, Chen W (2001) A split Hopkinson pressure bar technique to determine compressive stress-strain data for rock materials. Exp Mech 41(1):40–46CrossRef
go back to reference Frew DJ, Forrestal MJ, Chen W (2002) Pulse shaping techniques for testing brittle materials with a split Hopkinson pressure bar. Exp Mech 42(1):93–106CrossRef Frew DJ, Forrestal MJ, Chen W (2002) Pulse shaping techniques for testing brittle materials with a split Hopkinson pressure bar. Exp Mech 42(1):93–106CrossRef
go back to reference Gray GT (2000) Classic split-Hopkinson pressure bar testing. ASM handbook. Mechanical testing and evaluation, vol 8. ASM Int, Materials Park, pp 462–476 Gray GT (2000) Classic split-Hopkinson pressure bar testing. ASM handbook. Mechanical testing and evaluation, vol 8. ASM Int, Materials Park, pp 462–476
go back to reference Hauser FE, Simmons JA, Dorn JE, Zackay VF (1960) Response of metals to high velocity deformation. New York Interscience Pub, New York Hauser FE, Simmons JA, Dorn JE, Zackay VF (1960) Response of metals to high velocity deformation. New York Interscience Pub, New York
go back to reference Jiang FC, Liu RT, Zhang XX, Vecchio KS, Rohatgi A (2004) Evaluation of dynamic fracture toughness K-Id by Hopkinson pressure bar loaded instrumented Charpy impact test. Eng Fract Mech 71(3):279–287CrossRef Jiang FC, Liu RT, Zhang XX, Vecchio KS, Rohatgi A (2004) Evaluation of dynamic fracture toughness K-Id by Hopkinson pressure bar loaded instrumented Charpy impact test. Eng Fract Mech 71(3):279–287CrossRef
go back to reference Kolsky H (1949) An investigation of the mechanical properties of materials at very high rates of loading. Proc R Soc A Math Phys B62:676–700 Kolsky H (1949) An investigation of the mechanical properties of materials at very high rates of loading. Proc R Soc A Math Phys B62:676–700
go back to reference Kolsky H (1953) Stress waves in solids. Clarendon Press, Oxford Kolsky H (1953) Stress waves in solids. Clarendon Press, Oxford
go back to reference Li XB, Lok TS, Zhao J, Zhao PJ (2000) Oscillation elimination in the Hopkinson bar apparatus and resultant complete dynamic stress-strain curves for rocks. Int J Rock Mech Min 37(7):1055–1060CrossRef Li XB, Lok TS, Zhao J, Zhao PJ (2000) Oscillation elimination in the Hopkinson bar apparatus and resultant complete dynamic stress-strain curves for rocks. Int J Rock Mech Min 37(7):1055–1060CrossRef
go back to reference Malinowski JZ, Klepaczko JR (1986) A unified analytic and numerical approach to specimen behavior in the split Hopkinson pressure bar. Int J Mech Sci 28(6):381–391CrossRef Malinowski JZ, Klepaczko JR (1986) A unified analytic and numerical approach to specimen behavior in the split Hopkinson pressure bar. Int J Mech Sci 28(6):381–391CrossRef
go back to reference Meng H, Li QM (2003) Correlation between the accuracy of a SHPB test and the stress uniformity based on numerical experiments. Int J Impact Eng 28(5):537–555CrossRef Meng H, Li QM (2003) Correlation between the accuracy of a SHPB test and the stress uniformity based on numerical experiments. Int J Impact Eng 28(5):537–555CrossRef
go back to reference Michell JH (1900) Some elementary distributions of stress in three dimensions. Proc Lond Math Soc 32:23–61CrossRef Michell JH (1900) Some elementary distributions of stress in three dimensions. Proc Lond Math Soc 32:23–61CrossRef
go back to reference Narayanasamy R, Pandey KS (1997) Phenomenon of barrelling in aluminium solid cylinders during cold upset-forming. J Mater Process Technol 70(1–3):17–21CrossRef Narayanasamy R, Pandey KS (1997) Phenomenon of barrelling in aluminium solid cylinders during cold upset-forming. J Mater Process Technol 70(1–3):17–21CrossRef
go back to reference Nasseri MHB, Mohanty B, Robin PYF (2005) Characterization of microstructures and fracture toughness in five granitic rocks. Int J Rock Mech Min 42(3):450–460CrossRef Nasseri MHB, Mohanty B, Robin PYF (2005) Characterization of microstructures and fracture toughness in five granitic rocks. Int J Rock Mech Min 42(3):450–460CrossRef
go back to reference Olsson WA (1991) The compressive strength of tuff as a function of strain rate from 10−6 to 103/sec. Int J Rock Mech Min Sci Geomech Abstr 28(1):115–118CrossRef Olsson WA (1991) The compressive strength of tuff as a function of strain rate from 10−6 to 103/sec. Int J Rock Mech Min Sci Geomech Abstr 28(1):115–118CrossRef
go back to reference Ross CA, Thompson PY, Tedesco JW (1989) Split-Hopkinson pressure-bar tests on concrete and mortar in tension and compression. ACI Mater J 86(5):475–481 Ross CA, Thompson PY, Tedesco JW (1989) Split-Hopkinson pressure-bar tests on concrete and mortar in tension and compression. ACI Mater J 86(5):475–481
go back to reference Ross CA, Tedesco JW, Kuennen ST (1995) Effects of strain-rate on concrete strength. ACI Mater J 92(1):37–47 Ross CA, Tedesco JW, Kuennen ST (1995) Effects of strain-rate on concrete strength. ACI Mater J 92(1):37–47
go back to reference Schey JA, Venner TR, Takomana SL (1982) The effect of friction on pressure in upsetting at low diameter-to-height ratios. J Mech Work Technol 6(1):23–33CrossRef Schey JA, Venner TR, Takomana SL (1982) The effect of friction on pressure in upsetting at low diameter-to-height ratios. J Mech Work Technol 6(1):23–33CrossRef
go back to reference Wang QZ, Li W, Song XL (2006) A method for testing dynamic tensile strength and elastic modulus of rock materials using SHPB. Pure Appl Geophys 163:1091–1100CrossRef Wang QZ, Li W, Song XL (2006) A method for testing dynamic tensile strength and elastic modulus of rock materials using SHPB. Pure Appl Geophys 163:1091–1100CrossRef
go back to reference Xia K, Nasseri MHB, Mohanty B, Lu F, Chen R, Luo SN (2008) Effects of microstructures on dynamic compression of barre granite. Int J Rock Mech Min 45(6):879–887CrossRef Xia K, Nasseri MHB, Mohanty B, Lu F, Chen R, Luo SN (2008) Effects of microstructures on dynamic compression of barre granite. Int J Rock Mech Min 45(6):879–887CrossRef
go back to reference Zhao J, Li HB (2000) Experimental determination of dynamic tensile properties of a granite. Int J Rock Mech Min 37(5):861–866CrossRef Zhao J, Li HB (2000) Experimental determination of dynamic tensile properties of a granite. Int J Rock Mech Min 37(5):861–866CrossRef
Metadata
Title
Some Fundamental Issues in Dynamic Compression and Tension Tests of Rocks Using Split Hopkinson Pressure Bar
Authors
Feng Dai
Sheng Huang
Kaiwen Xia
Zhuoying Tan
Publication date
01-11-2010
Publisher
Springer Vienna
Published in
Rock Mechanics and Rock Engineering / Issue 6/2010
Print ISSN: 0723-2632
Electronic ISSN: 1434-453X
DOI
https://doi.org/10.1007/s00603-010-0091-8

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