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添加铜锡对无压烧结铁铜钴基合金耐蚀性能的影响

Effect of Cu-Sn Addition on Corrosion Property of Pressureless Sintered Fe-Cu-Co Substrate Alloys.

作者信息

Tao Hongliang, Ma Yunzhu, Chen Yuhui, Du Shuai, Zhou Haojun, Yin Yuhang, Li Yimin, Luo Fenghua

机构信息

State Key Laboratory of Powder Metallurgy, Central South University, Changsha 410083, China.

Monte-Bianco Diamond Applications Co., Ltd., Foshan 528313, China.

出版信息

Materials (Basel). 2023 Jan 11;16(2):728. doi: 10.3390/ma16020728.

Abstract

Fe-Cu-Co prealloyed powder is used for bonding metal of diamond tools. In order to obtain diamond tools with good mechanical properties by pressureless sintering, it is necessary to add Cu-Sn sintering aids. The substrate also has high corrosion resistance requirements, which is conducive to the chemical erosion of diamond tools. This paper mainly studies the effects of Cu-Sn on the corrosion behavior of pressureless sintered Fe-Cu-Co substrate. The results show that the linear contraction rate and relative density of pressureless sintered Fe-Cu-Co alloy at 875 °C reach their peak when the Cu-Sn content is 8 wt.%, 15.13% and 97.5%, respectively. The substrate is mainly composed of α-Fe and Cu-rich phases, and selective corrosion occurs during electrochemical corrosion; namely, α-Fe grains are more prone to corrosion than Cu-rich grains to form porous corrosion surfaces. With the increase in Cu-Sn addition, the volume fraction of the Cu-rich phase increases, the corrosion current density and the passive current density gradually decrease, and the corrosion resistance of the alloy is improved. The amount and integrity of anodic passive film on the Fe-Cu-Co surface increases with the increase in Cu-Sn addition. The oxygen content of the anodic passivation film is lower than that of the active corrosion products of the α-Fe phase, thus reducing the oxygen concentration gradient and slowing down the corrosion. The addition of Cu-Sn is conducive to improving the corrosion resistance of Fe-Cu-Co alloy as the substrate of diamond tools.

摘要

铁-铜-钴预合金粉末用于金刚石工具的金属结合。为了通过无压烧结获得具有良好机械性能的金刚石工具,添加铜-锡烧结助剂是必要的。基体对耐腐蚀性也有较高要求,这有利于金刚石工具的化学侵蚀。本文主要研究铜-锡对无压烧结铁-铜-钴基体腐蚀行为的影响。结果表明,当铜-锡含量分别为8 wt.%、15.13%和97.5%时,875℃下无压烧结铁-铜-钴合金的线性收缩率和相对密度分别达到峰值。基体主要由α-Fe和富铜相组成,在电化学腐蚀过程中发生选择性腐蚀;即α-Fe晶粒比富铜晶粒更容易腐蚀,形成多孔腐蚀表面。随着铜-锡添加量的增加,富铜相的体积分数增加,腐蚀电流密度和钝化电流密度逐渐降低,合金的耐腐蚀性提高。铁-铜-钴表面阳极钝化膜的数量和完整性随铜-锡添加量的增加而增加。阳极钝化膜的氧含量低于α-Fe相活性腐蚀产物的氧含量,从而降低了氧浓度梯度,减缓了腐蚀。添加铜-锡有利于提高作为金刚石工具基体的铁-铜-钴合金的耐腐蚀性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bab8/9867063/4217e9991207/materials-16-00728-g001.jpg

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