Mechanical Properties Under Cyclic Loading of Rolled Ordered Materials Produced from Continuous Elastic Fibers. I. Elasticity and Energy Dissipation

Ribbons with a porosity varying from 22% to conditional 0.5% have been produced by rolling a multilayer knitted-mesh package made of 12Kh18N10T steel wire bundles 30 μm in diameter. Resonant cyclic loading techniques have been employed to plot the experimental dependences of the elastic and damping...

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Published inPowder metallurgy and metal ceramics Vol. 57; no. 9-10; pp. 506 - 512
Main Authors Lugovskoi, Yu. F., Zorin, V. A., Nazarenko, V. A., Spiridonov, S. A., Nishchenets, V. N.
Format Journal Article
LanguageEnglish
Published New York Springer US 01.01.2019
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Abstract Ribbons with a porosity varying from 22% to conditional 0.5% have been produced by rolling a multilayer knitted-mesh package made of 12Kh18N10T steel wire bundles 30 μm in diameter. Resonant cyclic loading techniques have been employed to plot the experimental dependences of the elastic and damping properties on the porosity and compressive strain of the material. It is shown that the main factor influencing the material’s properties is porosity when it is higher than 5% and plastic strain when porosity is lower than 5%.
AbstractList Ribbons with a porosity varying from 22% to conditional 0.5% have been produced by rolling a multilayer knitted-mesh package made of 12Kh18N10T steel wire bundles 30 μm in diameter. Resonant cyclic loading techniques have been employed to plot the experimental dependences of the elastic and damping properties on the porosity and compressive strain of the material. It is shown that the main factor influencing the material’s properties is porosity when it is higher than 5% and plastic strain when porosity is lower than 5%.
Ribbons with a porosity varying from 22% to conditional 0.5% have been produced by rolling a multilayer knitted-mesh package made of 12Kh18N10T steel wire bundles 30 [mu]m in diameter. Resonant cyclic loading techniques have been employed to plot the experimental dependences of the elastic and damping properties on the porosity and compressive strain of the material. It is shown that the main factor influencing the material's properties is porosity when it is higher than 5% and plastic strain when porosity is lower than 5%.
Audience Academic
Author Nazarenko, V. A.
Nishchenets, V. N.
Lugovskoi, Yu. F.
Zorin, V. A.
Spiridonov, S. A.
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10.1007/s10704-006-7156-4
10.1007/s11106-017-9892-6
10.1007/s11106-012-9395-4
10.1007/BF00780131
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Issue 9-10
Keywords rolling
porosity
elasticity
decrement
mesh
Language English
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Lugovskoi, Podrezov, Nazarenko, Verbilo, Koval (CR3) 2017; 56
H Gao (9_CR1) 2006; 138
VA Kuzmenko (9_CR5) 1963
GS Pisarenko (9_CR7) 1971
MY Balshin (9_CR9) 1972
9_CR13
9_CR10
9_CR11
VG Borovik (9_CR2) 2012; 51
9_CR4
YF Lugovskoi (9_CR3) 2017; 56
GS Pisarenko (9_CR6) 1976
VV Skorokhod (9_CR8) 1967; 6
YF Lugovskoi (9_CR12) 2006; 45
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Snippet Ribbons with a porosity varying from 22% to conditional 0.5% have been produced by rolling a multilayer knitted-mesh package made of 12Kh18N10T steel wire...
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SubjectTerms Ceramics
Characterization and Evaluation of Materials
Chemistry and Materials Science
Composites
Compressive properties
Continuous fibers
Cyclic loads
Damping
Elastic properties
Elasticity
Energy dissipation
Evolution (Biology)
Glass
Materials Science
Mechanical properties
Metallic Materials
Multilayers
Natural Materials
Plastic deformation
Porosity
Strain
Title Mechanical Properties Under Cyclic Loading of Rolled Ordered Materials Produced from Continuous Elastic Fibers. I. Elasticity and Energy Dissipation
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