Plastic deformation resistance of an indium-lead alloy with strain rates of 10−3–103 sec−1
Identifieur interne : 000418 ( Main/Exploration ); précédent : 000417; suivant : 000419Plastic deformation resistance of an indium-lead alloy with strain rates of 10−3–103 sec−1
Auteurs : RBID : ISTEX:11223_1990_Article_BF00768196.pdfAbstract
Nonstandard A vs ɛ, N vs ɛ, and log$$\dot \varepsilon $$ vs ɛ diagrams were obtained for an indiumlead alloy using a common method together with standard σ vs ɛ diagrams. The strength, deformation, and energy characteristics and their variation coefficient were determined in the$$\dot \varepsilon $$pl.=10−3−103 sec−1 plastic strain rate range. The influence of an increase in ɛpl on the plastic deformation resistance of the indium-lead alloy is revealed in a significant (up to 100%) increase in the strength and energy characteristics.
DOI: 10.1007/BF00768196
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<author><name>N. N. Popov</name>
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<author><name>V. A. Mart'yanov</name>
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<author><name>S. G. Bezrukov</name>
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<front><div type="abstract" xml:lang="eng">Nonstandard A vs ɛ, N vs ɛ, and log$$\dot \varepsilon $$ vs ɛ diagrams were obtained for an indiumlead alloy using a common method together with standard σ vs ɛ diagrams. The strength, deformation, and energy characteristics and their variation coefficient were determined in the$$\dot \varepsilon $$pl.=10−3−103 sec−1 plastic strain rate range. The influence of an increase in ɛpl on the plastic deformation resistance of the indium-lead alloy is revealed in a significant (up to 100%) increase in the strength and energy characteristics.</div>
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<abstract lang="eng">Nonstandard A vs ɛ, N vs ɛ, and log$$\dot \varepsilon $$ vs ɛ diagrams were obtained for an indiumlead alloy using a common method together with standard σ vs ɛ diagrams. The strength, deformation, and energy characteristics and their variation coefficient were determined in the$$\dot \varepsilon $$pl.=10−3−103 sec−1 plastic strain rate range. The influence of an increase in ɛpl on the plastic deformation resistance of the indium-lead alloy is revealed in a significant (up to 100%) increase in the strength and energy characteristics.</abstract>
<relatedItem type="series"><titleInfo type="abbreviated"><title>Strength Mater</title>
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<titleInfo><title>Strength of Materials</title>
<partNumber>Year: 1990</partNumber>
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<subject usage="primary"><topic>Engineering</topic>
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