On the Development of New Test Techniques to Measure the Tensile Response of Materials at High and Ultra-high Strain Rates

被引:0
作者
Junyi Zhou
Vito L. Tagarielli
机构
[1] University of Oxford,Department of Engineering Science
[2] Imperial College London,Department of Aeronautics
来源
Experimental Mechanics | 2022年 / 62卷
关键词
Tensile testing; Ultra-high strain rate; Ballistic impact; Ceramics; Composites; Fibres;
D O I
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学科分类号
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页码:151 / 164
页数:13
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[1]  
Davies EDH(1963)The dynamic compression testing of solids by the method of the split Hopkinson pressure bar J Mech Phys Solids 11 155-179
[2]  
Hunter SC(2008)The high strain rate response of PVC foams and end-grain balsa wood Compos B Eng 39 83-91
[3]  
Tagarielli VL(1969)Stress-strain data obtained at high rates using an expanding ring Exp Mech 9 441-448
[4]  
Deshpande VS(2019)A new technique for tensile testing of engineering materials and composites at high strain rates Proceedings of the Royal Society A 475 20190310-950
[5]  
Fleck NA(2018)An Apparatus for Tensile Testing of Engineering Materials Exp Mech 58 941-57
[6]  
Hoggatt CR(2013)Compressive deformation of Rohacell foams: Effects of strain rate and temperature Int J Impact Eng 51 50-2747
[7]  
Recht RF(2011)The compressive response of a titanium foam at low and high strain rates J Mater Sci 46 2741-2828
[8]  
Zhou J(2012)The response of rigid plates to blast in deep water: fluid–structure interaction experiments Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences 468 2807-73
[9]  
Pellegrino A(2017)Underwater blast loading of water-backed sandwich plates with elastic cores: Theoretical modelling and simulations Int J Impact Eng 102 62-390
[10]  
Heisserer U(2010)Appraisal of pulse-shaping technique in split Hopkinson pressure bar tests for brittle materials International Journal of Protective Structures 1 363-106