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INCREASING THE SURFACE HARDNESS OF CAST IRON BY ELECTRODEPOSITION OF BORIDES IN MOLTEN SALTS

机译:电沉积硼盐在熔融盐中提高铸铁的表面硬度

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摘要

In this paper the electrodeposition of boron on the surface of cast iron as a coating is applied to increase the hardness and protect the substrate against abrasive wear. The boron containing coating was synthesized by electrodeposition process from a NaCl-KCl (1:1 mol)-10 w%NaF-10w% KBF4 molten salt. The effect of electrolysis parameters (temperature and time) on the hardness is presented; the current density varied in the range –37 – –4.5 mA/cm2, allowing perfect coverage of and respect foruddimensions. The electrochemical process was carried out at different temperatures (750°C-900°C) and for different periods of time (5-10 hours). Depending on the current density and duration of electrolysis, the deposits consist of FeB or Fe2B. Microhardness measurements across the boride layer indicated very high hardness values (between 1600 and 2100 HV0.05).The structure of theudboride layer is linked to its boron content and thermal history: as-deposited coatings present very small grain sizes and can be considered as nearly amorphous.
机译:在本文中,将硼电沉积在铸铁表面作为涂层,以增加硬度并保护基材免受磨蚀。通过电沉积工艺由NaCl-KCl(1:1 mol)-10 w%NaF-10w%KBF4熔融盐合成含硼涂层。提出了电解参数(温度和时间)对硬度的影响;电流密度在–37 – –4.5 mA / cm2的范围内变化,可以完美覆盖并尊重尺寸。电化学过程在不同的温度(750°C-900°C)和不同的时间段(5-10小时)内进行。取决于电流密度和电解时间,沉积物由FeB或Fe2B组成。整个硼化物层的显微硬度测量结果显示出非常高的硬度值(介于1600和2100 HV0.05之间)。 udboride层的结构与其硼含量和热历史有关:沉积的涂层具有非常小的晶粒尺寸,并且可以被认为是几乎无定形的。

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