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Restoration of obliterated engraved marks on steel surfaces by chemical etching reagent

机译:用化学蚀刻剂修复钢表面刻蚀掉的刻痕

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Chemical etching technique is widely used for restoration of obliterated engraved marks on steel surface in the field of public security. The consumed thickness of steel surface during restoration process is considered as a major criterion for evaluating the efficiency of the chemical etching reagent. The thinner the consumed thickness, the higher the restoration efficiency. According to chemical principles, maintaining the continuous oxidative capabilities of etching reagents and increasing the kinetic rate difference of the reaction between the engraved and non-engraved area with the chemical etching reagent can effectively reduce the consumed steel thickness. The study employed steel surface from the engine case of motorcycle and the car frame of automobile. The chemical etching reagents are composed of nitric acid as the oxidizer, hydrofluoric acid as the coordination agent and mixed with glacial acetic acid or acetone as the solvents. Based on the performance evaluation of three different etching reagents, the one composed of HNO3, HF and acetone gave the best result. (C) 2015 Elsevier Ireland Ltd. All rights reserved.
机译:在公共安全领域中,化学蚀刻技术被广泛用于修复钢表面上的刻痕。修复过程中钢表面消耗的厚度被认为是评估化学蚀刻剂效率的主要标准。消耗的厚度越薄,修复效率越高。根据化学原理,维持蚀刻剂的连续氧化能力并增加刻蚀区域和非刻蚀区域之间与化学刻蚀剂的反应的动力学速率差可以有效地减少消耗的钢厚度。该研究使用了摩托车发动机箱和汽车车架的钢表面。化学蚀刻剂由硝酸作为氧化剂,氢氟酸作为配位剂,并与冰醋酸或丙酮混合作为溶剂。根据三种不同腐蚀剂的性能评估,由HNO3,HF和丙酮组成的腐蚀剂效果最好。 (C)2015 Elsevier Ireland Ltd.保留所有权利。

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