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 in | Powder metallurgy and metal ceramics Vol. 57; no. 9-10; pp. 506 - 512 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
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New York
Springer US
01.01.2019
Springer Springer Nature B.V |
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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%. |
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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. |
Author_xml | – sequence: 1 givenname: Yu. F. surname: Lugovskoi fullname: Lugovskoi, Yu. F. email: lugovskoi_U@ukr.net organization: Frantsevich Institute for Problems of Materials Science, National Academy of Sciences of Ukraine – sequence: 2 givenname: V. A. surname: Zorin fullname: Zorin, V. A. organization: Frantsevich Institute for Problems of Materials Science, National Academy of Sciences of Ukraine – sequence: 3 givenname: V. A. surname: Nazarenko fullname: Nazarenko, V. A. organization: Frantsevich Institute for Problems of Materials Science, National Academy of Sciences of Ukraine – sequence: 4 givenname: S. A. surname: Spiridonov fullname: Spiridonov, S. A. organization: Frantsevich Institute for Problems of Materials Science, National Academy of Sciences of Ukraine – sequence: 5 givenname: V. N. surname: Nishchenets fullname: Nishchenets, V. N. organization: Frantsevich Institute for Problems of Materials Science, National Academy of Sciences of Ukraine |
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References | Skorokhod (CR8) 1967; 6 CR4 Pisarenko, Yakovlev, Matveev (CR7) 1971 Gao (CR1) 2006; 138 CR13 CR11 CR10 Kuzmenko (CR5) 1963 Borovik, Grigoriev, Subbotin (CR2) 2012; 51 Lugovskoi, Chernyshev (CR12) 2006; 45 Balshin (CR9) 1972 Pisarenko, Matveev, Yakovlev (CR6) 1976 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 |
References_xml | – start-page: 336 year: 1972 ident: CR9 publication-title: [in Russian] contributor: fullname: Balshin – ident: CR4 – volume: 45 start-page: 599 issue: 11–12 year: 2006 end-page: 604 ident: CR12 article-title: Damping properties of sintered high-porosity materials based on powders and discrete copper fibers publication-title: Powder Metall. Met. Ceram. doi: 10.1007/s11106-006-0125-7 contributor: fullname: Chernyshev – volume: 6 start-page: 453 issue: 6 year: 1967 end-page: 457 ident: CR8 article-title: Some physical properties of high-porosity bodies publication-title: Powder Metall. Met. Ceram. contributor: fullname: Skorokhod – volume: 138 start-page: 101 year: 2006 end-page: 137 ident: CR1 article-title: Application of fracture mechanics concepts to hierarchical biomechanics of bone and bone-like materials publication-title: Int. J. Fract. doi: 10.1007/s10704-006-7156-4 contributor: fullname: Gao – ident: CR13 – start-page: 152 year: 1963 ident: CR5 publication-title: [in Russian] contributor: fullname: Kuzmenko – ident: CR10 – ident: CR11 – start-page: 375 year: 1971 ident: CR7 publication-title: [in Russian] contributor: fullname: Matveev – volume: 56 start-page: 245 issue: 5–6 year: 2017 end-page: 252 ident: CR3 article-title: Mechanical properties and fracture mechanisms of commercially pure multilayer iron produced by strip joint rolling publication-title: Powder Metall. Met. Ceram. doi: 10.1007/s11106-017-9892-6 contributor: fullname: Koval – start-page: 86 year: 1976 ident: CR6 publication-title: [in Russian] contributor: fullname: Yakovlev – volume: 51 start-page: 49 issue: 1–2 year: 2012 end-page: 55 ident: CR2 article-title: New structural unidirectional-fiber material publication-title: Powder Metall. Met. Ceram. doi: 10.1007/s11106-012-9395-4 contributor: fullname: Subbotin – volume: 45 start-page: 599 issue: 11–12 year: 2006 ident: 9_CR12 publication-title: Powder Metall. Met. Ceram. doi: 10.1007/s11106-006-0125-7 contributor: fullname: YF Lugovskoi – volume: 138 start-page: 101 year: 2006 ident: 9_CR1 publication-title: Int. J. Fract. doi: 10.1007/s10704-006-7156-4 contributor: fullname: H Gao – start-page: 336 volume-title: Scientific Fundamentals of Powder Metallurgy and Fiber Metallurgy [in Russian] year: 1972 ident: 9_CR9 contributor: fullname: MY Balshin – volume: 56 start-page: 245 issue: 5–6 year: 2017 ident: 9_CR3 publication-title: Powder Metall. Met. Ceram. doi: 10.1007/s11106-017-9892-6 contributor: fullname: YF Lugovskoi – ident: 9_CR10 – start-page: 86 volume-title: Methods for Determining Damping Characteristics of Elastic Systems [in Russian] year: 1976 ident: 9_CR6 contributor: fullname: GS Pisarenko – ident: 9_CR11 – ident: 9_CR13 – start-page: 152 volume-title: Sonic and Ultrasonic Vibrations in Dynamic Testing of Materials [in Russian] year: 1963 ident: 9_CR5 contributor: fullname: VA Kuzmenko – volume: 51 start-page: 49 issue: 1–2 year: 2012 ident: 9_CR2 publication-title: Powder Metall. Met. Ceram. doi: 10.1007/s11106-012-9395-4 contributor: fullname: VG Borovik – volume: 6 start-page: 453 issue: 6 year: 1967 ident: 9_CR8 publication-title: Powder Metall. Met. Ceram. doi: 10.1007/BF00780131 contributor: fullname: VV Skorokhod – ident: 9_CR4 – start-page: 375 volume-title: Vibration-Absorbing Properties of Structural Materials [in Russian] year: 1971 ident: 9_CR7 contributor: fullname: GS Pisarenko |
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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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