2002The Proceedings of the JSME Materials and Processing Conference (M&P)Open access

102 Dynamic deformation behavior of rubber under high strain rate compressive loading

Ouk Sub Lee, Myun Soo Kim, Si Won Hwang, Kyu Sang Cho

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Abstract

A specific experimental method, the split Hopkinson pressure bar (SHPB) technique has been used to determine the dynamic material properties under the impact compressive loading conditions with strain-rate of the order of (10)^3/s∿(10)^4/s. In this paper, dynamic deformation behaviors of rubber materials widely used for the isolation of vibration from varying structures under dynamic loading are determined using the SHPB technique.

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A specific experimental method, the split Hopkinson pressure bar (SHPB) technique has been used to determine the dynamic material properties under the impact compressive loading conditions with strain-rate of the order of (10)^3/s∿(10)^4/s. In this paper, dynamic deformation behaviors of rubber materials widely used for the isolation of vibration from varying structures under dynamic loading are determined using the SHPB technique.

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Available abstract

A specific experimental method, the split Hopkinson pressure bar (SHPB) technique has been used to determine the dynamic material properties under the impact compressive loading conditions with strain-rate of the order of (10)^3/s∿(10)^4/s. In this paper, dynamic deformation behaviors of rubber materials widely used for the isolation of vibration from varying structures under dynamic loading are determined using the SHPB technique.

Key concepts: Split-Hopkinson pressure bar, Materials science, Dynamic loading, Composite material, Strain rate, Natural rubber, Deformation (meteorology), Dynamic range compression

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