Article ID Journal Published Year Pages File Type
95287 Forensic Science International 2015 10 Pages PDF
Abstract

•We compared techniques to develop latent fingermarks on fired and unfired cartridge cases.•The sequence cyanoacrylate–gun blue–basic yellow 40 presented the best results.•Friction inside the gun without firing does not cause significant damage to fingermarks.•Firing affects quality and quantity of the ridge details in fired cartridge cases.•The richest minutiae area in fired cartridge cases is located next to the base.

We have tested some widely used and practical fingermark enhancement techniques such as powdering (regular powder dusting and magnetic powder application), cyanoacrylate fuming, fluorescent dying (basic yellow 40), gun blueing solutions and acidified hydrogen peroxide solutions. The results were evaluated and compared in order to establish best procedures on processing cartridge cases. The tests were performed on brass discs subjected to three different temperatures (room temperature, 63 and 200 °C), and on fired and unfired cartridge cases. All the samples were processed after three different periods of time (24 h, 7 days and 14 days) after deposition. The best results for both fired and unfired cartridge cases were obtained by the sequential application of cyanoacrylate, gun blueing solution and basic yellow 40. Some stages of the firing process were isolated in order to identify their effects over the final amount and quality of the remaining latent fingermarks on cartridge cases. Good state fingermarks were developed on unfired cartridge cases cycled through the gun, showing that friction inside the gun without firing does not cause significant damage to the fingermarks. On the other hand, fired cartridge cases are significantly affected by the firing effects, exhibiting low quality ridge details which are mainly located next to base. An unexpected phenomenon was observed on most of the brass discs heated to 200 °C and developed with gun blueing solutions; they presented a reverse development compared to the expected one, with darkening of the ridges instead of the background.

Related Topics
Physical Sciences and Engineering Chemistry Analytical Chemistry
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