首页> 外文期刊>Journal of forensic sciences. >The Optimal Distance of the Electrode to the Lifting Film Surface when Lifting Dust Footwear Impressions Using an Electrostatic Dust Print Lifter
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The Optimal Distance of the Electrode to the Lifting Film Surface when Lifting Dust Footwear Impressions Using an Electrostatic Dust Print Lifter

机译:使用静电灰尘升降机提升灰尘鞋类印象时电极到提升膜面的最佳距离

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摘要

Abstract Footwear impressions are one of the valuable physical evidence encountered at crime scenes and its identification can facilitate narrowing down the suspects and establishing the identity of the criminals. The technique of electrostatic lifting (ESL) dust shoeprints at crime scenes is well established with scenes of crime examiners. And in the procedure, the recovery of the original item containing the impression should be made as good as it can and not damage the marks. In this study, the different particle sizes of SiO 2 were used to simulate dust and light soil residues, comparing different particle sizes and electrode positions were used to compare the adsorption ability on the surface of electrostatic lifting film in high‐voltage electrostatic field for the collection of shoeprints. The results indicated that lifting film in electrostatic field will be pressed down to the dust surface, the compaction and electrostatic adsorption force will vary with the distance between the high‐voltage electrode and film surface. Reducing the distance can increase the electric field strength near the lifting film, and the adsorption capacity of Mylar aluminum‐plating film to dusts can be improved significantly. Adsorption capacity of the lifting film was related to the size of dust particles and significantly improved with the increase of the particle charge. The optimum distance which can get the best adsorption capacity between the electrode and film surface is from 10 to 15?mm.
机译:摘要鞋类印象是犯罪现场遇到的宝贵物体证据之一,其识别可以促进缩小嫌疑人并建立犯罪分子的身份。犯罪场景中的静电提升(ESL)灰尘鞋粉技术与犯罪审查员的场景充分建立。并且在该过程中,应恢复包含印象的原始项目,尽可能好,并且不会损坏标记。在该研究中,SiO 2的不同粒径用于模拟灰尘和轻微的土壤残余物,比较不同的颗粒尺寸,并且使用电极位置来比较高压静电场中的静电提升膜表面上的吸附能力鞋印的集合。结果表明,静电场中的提升膜将被压到灰尘表面,压实和静电吸附力随高压电极和薄膜表面之间的距离而变化。减小距离可以提高升降膜附近的电场强度,并且可以显着提高镁铝镀铝膜与灰尘的吸附能力。提升薄膜的吸附容量与粉尘颗粒的尺寸有关,随着粒子电荷的增加而显着改善。可以获得电极和薄膜表面之间最好的吸附容量的最佳距离为10至15Ωmm。

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