Increasing reliability of forensic analysis while research on destroyed relief marking with magneto-optical devices

Y. Agalidi, O. Koshel
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Abstract

While research on destroyed relief marking of metal objects using the magneto-optical method, visualization of (invisible) fields of internal stress in the VIN plate area is performed and then a forensic analysis of obtained instrumental data is carried out (indirect organoleptic observation of the visualization results); thus, forensic analysis reliability of results directly depends on sensitivity of instruments and informativeness of instrumental data. The main quantitative characteristic in this case is probability of correct signal recognition  (contours of marking signs) against the background of noise (structural noise of investigated surface and the noise of the visualization method itself) determined by the signal-to-noise ratio. This article presents results of a comparative experimental assessment of signal-to-noise ratio and probability of correct signal recognition while restoringthe destroyed relief markings for two complexes of magneto-optical imaging – models of 2006 and 2018. This article purpose is a quantitative and qualitative comparative assessment of results of visualization of internal stresses in areas of completely removed relief marking of metal objects. The results of successful practical research obtained by forensic experts from different countries make it possible to assess effectiveness and prospects of using the magneto-optical imaging method. In a new modification of the magneto-optical complex: signal level is 4.35 dB higher (contrast of reconstructed marking signs); 2.71 dB lower noise level (surface relief/texture and magnetic copying noise);• probability of correct character recognition is P> 0.995 (increased by 14.9%). Technical improvements in implementation of magneto-optical visualization method made it possible to expand the range of materials for research objects(magnetic and electrically conductive materials were investigated). The high efficiency of method for restoring marking is illustrated by results of forensic examinations for materials with a low level of residual stresses (aluminum alloy, low-carbon steel) which  chemical etching method did not give results for. The use of new modification allows examining the rust layer, up to cases of corrosion to the entire depth of marks. Considering non-destructive nature of magneto-optical researches, possibility of their repeated repetition without losing  object properties, this method (in accordance with the order of application of types of studies) deserves more attention for application.
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磁光器件在破坏浮雕标记研究中的应用提高了法医分析的可靠性
在利用磁光法研究金属物体的破损轮廓标记时,对VIN板区域的(不可见)内应场进行可视化,然后对获得的仪器数据进行法医分析(对可视化结果进行间接的感官观察);因此,法医分析结果的可靠性直接取决于仪器的灵敏度和仪器数据的信息量。在这种情况下,主要的定量特征是在由信噪比决定的噪声(被调查表面的结构噪声和可视化方法本身的噪声)背景下正确识别信号(标记标志的轮廓)的概率。本文介绍了2006年和2018年两种磁光成像模型在恢复破坏地形标记时的信噪比和正确识别信号概率的对比实验评估结果。本文的目的是对金属物体完全去除浮雕标记区域的内应力可视化结果进行定量和定性的比较评估。各国法医专家成功的实践研究成果使磁光成像方法的有效性和应用前景得以评估。在磁光复合物的新修改中:信号电平提高了4.35 dB(重建标记符号的对比度);2.71 dB噪声水平(表面浮雕/纹理和磁复制噪声);•字符识别正确率P> 0.995(提高14.9%)。磁光可视化方法的技术改进使研究对象的材料范围得以扩大(磁性和导电材料进行了研究)。对残余应力水平较低的材料(铝合金、低碳钢)的法医检验结果表明,化学蚀刻法无法给出结果。使用新的修改允许检查锈层,直到腐蚀的情况下,整个深度的标记。考虑到磁光研究的非破坏性,可以在不损失物体性质的情况下重复进行,这种方法(按照研究类型的应用顺序)值得更多的关注和应用。
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