The Effect of Elastic Stiffness on the Shock Wave Propagation in Sandwich Structures: A Theoretical Analysis
Cellular materials have great potential in blast-mitigation engineering. Subject to an intensive load, cellular materials are damaged progressively and dissipates quantities of energy. In engineering applications, cellular materials are often used as the core of sandwich structures. In this article,...
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Published in | Mechanics of solids Vol. 58; no. 3; pp. 975 - 984 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
Published |
Moscow
Pleiades Publishing
01.06.2023
Springer Nature B.V |
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Abstract | Cellular materials have great potential in blast-mitigation engineering. Subject to an intensive load, cellular materials are damaged progressively and dissipates quantities of energy. In engineering applications, cellular materials are often used as the core of sandwich structures. In this article, we investigate the crushing of cellular core under impulsive loads theoretically. The supporting stiffness is considered and its effect on the propagation of plastic shock wave is addressed. Using the free-body diagram for sandwich structures, we distinguish three shock modes in the process of core crushing: single shock mode, single-single shock mode and single-double shock mode. Based on the R-PP-L material model, we give the governing equations for the three shock modes. It is hoped that the work in this article could give engineers some insights into the dynamic deformation of sandwich structures. |
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AbstractList | Cellular materials have great potential in blast-mitigation engineering. Subject to an intensive load, cellular materials are damaged progressively and dissipates quantities of energy. In engineering applications, cellular materials are often used as the core of sandwich structures. In this article, we investigate the crushing of cellular core under impulsive loads theoretically. The supporting stiffness is considered and its effect on the propagation of plastic shock wave is addressed. Using the free-body diagram for sandwich structures, we distinguish three shock modes in the process of core crushing: single shock mode, single-single shock mode and single-double shock mode. Based on the R-PP-L material model, we give the governing equations for the three shock modes. It is hoped that the work in this article could give engineers some insights into the dynamic deformation of sandwich structures. |
Author | Yu, Xuehui Wang, Anshuai Yang, Yan |
Author_xml | – sequence: 1 givenname: Xuehui surname: Yu fullname: Yu, Xuehui organization: School of Science, Xi’an University of Architecture and Technology, State Key Lab for Strength and Vibration of Mechanical Structures, Department of Engineering Mechanics, Xi’an Jiaotong University – sequence: 2 givenname: Anshuai surname: Wang fullname: Wang, Anshuai organization: School of Science, Xi’an University of Architecture and Technology, School of Mechatronic Engineering, Southwest Petroleum University – sequence: 3 givenname: Yan surname: Yang fullname: Yang, Yan email: yangyanxjtu@163.com organization: State Key Lab for Strength and Vibration of Mechanical Structures, Department of Engineering Mechanics, Xi’an Jiaotong University |
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SubjectTerms | Cellular structure Classical Mechanics Crushing Impulse loading Physics Physics and Astronomy Sandwich structures Shock wave propagation Stiffness |
Title | The Effect of Elastic Stiffness on the Shock Wave Propagation in Sandwich Structures: A Theoretical Analysis |
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