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Novel Chemical Process for Producing Chrome Coated Metal

机译:生产镀铬金属的新型化学工艺

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摘要

This work demonstrates that a version of the Reduction Expansion Synthesis (RES) process, Cr-RES, can create a micron scale Cr coating on an iron wire. The process involves three steps. I. A paste consisting of a physical mix of urea, chrome nitrate or chrome oxide, and water is prepared. II. An iron wire is coated by dipping. III. The coated, and dried, wire is heated to ~800 °C for 10 min in a tube furnace under a slow flow of nitrogen gas. The processed wires were then polished and characterized, primarily with scanning electron microscopy (SEM). SEM indicates the chrome layer is uneven, but only on the scale of a fraction of a micron. The evidence of porosity is ambiguous. Elemental mapping using SEM electron microprobe that confirmed the process led to the formation of a chrome metal layer, with no evidence of alloy formation. Additionally, it was found that thickness of the final Cr layer correlated with the thickness of the precursor layer that was applied prior to the heating step. Potentially, this technique could replace electrolytic processing, a process that generates carcinogenic hexavalent chrome, but further study and development is needed.
机译:这项工作表明,还原膨胀合成(RES)工艺的一种形式Cr-RES可以在铁线上形成微米级的Cr涂层。该过程包括三个步骤。 I.制备由尿素,硝酸铬或氧化铬和水的物理混合物组成的糊剂。二。通过浸涂来涂覆铁丝。三,在缓慢的氮气流下,将涂覆并干燥的金属丝在管式炉中加热至〜800°C,持续10分钟。然后主要通过扫描电子显微镜(SEM)对加工过的导线进行抛光和表征。 SEM表明铬层是不均匀的,但是仅在几分之一微米的尺度上。孔隙度的证据是不明确的。使用SEM电子探针进行的元素映射确认了该过程,导致形成了铬金属层,而没有合金形成的迹象。另外,发现最终Cr层的厚度与在加热步骤之前施加的前体层的厚度相关。潜在地,该技术可以替代电解过程,电解过程会产生致癌的六价铬,但还需要进一步的研究和开发。

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