Literature DB >> 25405432

Membrane characteristics for biological blast overpressure testing using blast simulators.

Vanessa D Alphonse1, Venkata Siva Sai Sujith Sajja, Andrew R Kemper, Dave V Rizel, Stefan M Duma, Pamela J VandeVord.   

Abstract

Blast simulators often use passive-rupture membranes to generate shock waves similar to free-field blasts. The purpose of this study was to compare rupture patterns and pressure traces of three distinct membrane materials for biological and biomechanical blast studies. An Advanced Blast Simulator (ABS) located at the Center for Injury Biomechanics at Virginia Tech was used to test membrane characteristics. Acetate, Mylar, and aluminum sheets with different thicknesses were used to obtain pressures between 70–210 kPa. Static pressure was measured inside the tube at the test section using piezoelectric pressure sensors. Peak overpressure, positive duration, and positive impulse were calculated for each test. Rupture patterns and characteristic pressure traces were unique to each membrane type and thickness. Shock wave speed ranged between 1.2-1.8 Mach for static overpressures of 70–210 kPa. Acetate membranes fragmented sending pieces down the tube, but produced ideal (Friedlander) pressure traces. Mylar membranes bulged without fragmenting, but produced less-than-ideal pressure traces. Aluminum membranes did not fragment and produced ideal pressure traces. However, the cost of manufacturing and characterizing aluminum membranes should be considered during membrane selection. This study illustrates the advantages and disadvantages of using Mylar, acetate, and aluminum for passive rupture membranes for blast simulators.

Entities:  

Year:  2014        PMID: 25405432

Source DB:  PubMed          Journal:  Biomed Sci Instrum        ISSN: 0067-8856


  2 in total

1.  Primary blast injury causes cognitive impairments and hippocampal circuit alterations.

Authors:  Matthew Beamer; Shanti R Tummala; David Gullotti; Catherine Kopil; Samuel Gorka; Cameron R Dale Bass; Barclay Morrison; Akiva S Cohen; David F Meaney
Journal:  Exp Neurol       Date:  2016-05-28       Impact factor: 5.330

2.  Effects of Mild Blast Traumatic Brain Injury on Cerebral Vascular, Histopathological, and Behavioral Outcomes in Rats.

Authors:  Uylissa A Rodriguez; Yaping Zeng; Donald Deyo; Margaret A Parsley; Bridget E Hawkins; Donald S Prough; Douglas S DeWitt
Journal:  J Neurotrauma       Date:  2017-12-20       Impact factor: 5.269

  2 in total

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