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Comparison of practical techniques to develop latent fingermarks on fired and unfired cartridge cases

机译:在发射和未发射弹壳上形成潜在指印的实用技术比较

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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 degrees 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 degrees 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. (C) 2015 Elsevier Ireland Ltd. All rights reserved.
机译:我们已经测试了一些广泛使用且实用的指印增强技术,例如粉末化(常规粉末除尘和磁性粉末施加),氰基丙烯酸酯发烟,荧光染料(碱性黄40),枪蓝溶液和酸化过氧化氢溶液。评估结果并进行比较,以建立处理墨盒盒的最佳程序。测试是在经受三种不同温度(室温,63和200摄氏度)的黄铜圆盘上进行的,并在经过火烧和未经过火烧的弹壳上进行。在沉积后的三个不同时间段(24小时,7天和14天)之后处理所有样品。依次使用氰基丙烯酸酯,枪蓝化溶液和碱性黄40可获得发射和未发射弹壳的最佳结果。分离出发射过程的某些阶段,以确认它们对最终数量和剩余质量的影响墨盒盒上有潜在的指印。在循环通过喷枪的未发射弹壳上形成了良好的状态指印,这表明未发射的枪内摩擦不会严重损害指印。另一方面,发射的子弹盒会受到发射效果的显着影响,显示出劣质的棱纹细节,这些细节主要位于底座附近。在大多数加热到200摄氏度并用枪蓝化溶液显影的黄铜圆盘上,观察到了意外的现象。与预期相比,它们呈现出相反的发展趋势,即山脊变暗而不是背景变暗。 (C)2015 Elsevier Ireland Ltd.保留所有权利。

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