Effect of preloading on the formation of adiabatic localized shear in copper

This paper presents the results of a study of the formation of localized shear in M1 copper of two types: as-received and after preloading by a quasi-entropic compression wave. The experiments were performed with hat-shaped samples using the split Hopkinson bar method. For both types of copper, dyna...

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Published inCombustion, explosion, and shock waves Vol. 49; no. 5; pp. 620 - 624
Main Authors Pushkov, V. A., Yurlov, A. V., Podurets, A. M., Tsibikov, A. N., Tkachenko, M. I., Balandina, A. N.
Format Journal Article
LanguageEnglish
Published Boston Springer US 01.09.2013
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Abstract This paper presents the results of a study of the formation of localized shear in M1 copper of two types: as-received and after preloading by a quasi-entropic compression wave. The experiments were performed with hat-shaped samples using the split Hopkinson bar method. For both types of copper, dynamic compression diagrams were obtained at strain rates of 2100–2500 s −1 . The copper structure was subjected to metallographic analysis, and the effect of preliminary shock deformation on the dynamic mechanical properties of the material was estimated. It is shown that preloaded higher-strength metals with a smaller degree of strain hardening are more prone to the formation of adiabatic shear bands.
AbstractList This paper presents the results of a study of the formation of localized shear in M1 copper of two types: as-received and after preloading by a quasi-entropic compression wave. The experiments were performed with hat-shaped samples using the split Hopkinson bar method. For both types of copper, dynamic compression diagrams were obtained at strain rates of 2100a2500 s-1. The copper structure was subjected to metallographic analysis, and the effect of preliminary shock deformation on the dynamic mechanical properties of the material was estimated. It is shown that preloaded higher-strength metals with a smaller degree of strain hardening are more prone to the formation of adiabatic shear bands.
This paper presents the results of a study of the formation of localized shear in M1 copper of two types: as-received and after preloading by a quasi-entropic compression wave. The experiments were performed with hat-shaped samples using the split Hopkinson bar method. For both types of copper, dynamic compression diagrams were obtained at strain rates of 2100–2500 s −1 . The copper structure was subjected to metallographic analysis, and the effect of preliminary shock deformation on the dynamic mechanical properties of the material was estimated. It is shown that preloaded higher-strength metals with a smaller degree of strain hardening are more prone to the formation of adiabatic shear bands.
Author Podurets, A. M.
Tsibikov, A. N.
Balandina, A. N.
Yurlov, A. V.
Tkachenko, M. I.
Pushkov, V. A.
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  organization: Institute of Experimental Physics (VNIIEF), Russian Federal Nuclear Center
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Cites_doi 10.1016/0022-5096(87)90009-3
10.1007/s11661-005-0239-4
10.1007/BF02586217
10.1007/BF02669413
10.1146/annurev.ms.09.080179.001435
10.1115/1.3173121
10.1016/0167-6636(89)90003-3
10.1016/S0921-5093(00)00642-0
10.1007/978-1-4613-3219-0_21
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Keywords hardening
preloading
plastic deformation
adiabatic shear
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CR8
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H C Rogers (5014_CR2) 1979; 9
A M Podurets (5014_CR11) 2011; 47
5014_CR8
T G Shawki (5014_CR4) 1989; 8
V A Pushkov (5014_CR10) 2009
K A Hartley (5014_CR3) 1987; 35
Q Xue (5014_CR9) 2006; 37
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Snippet This paper presents the results of a study of the formation of localized shear in M1 copper of two types: as-received and after preloading by a quasi-entropic...
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StartPage 620
SubjectTerms Adiabatic flow
Classical and Continuum Physics
Classical Mechanics
Compressing
Compression waves
Control
Copper
Dynamical Systems
Engineering
EXPLOSIONS
MECHANICAL PROPERTIES
METALLOGRAPHY
Physical Chemistry
Physics
Physics and Astronomy
Shear
Strain hardening
STRAIN HARDENING MECHANISMS
Strain rate
Vibration
Title Effect of preloading on the formation of adiabatic localized shear in copper
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