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完全氧化汞齐系统的光谱分析和重量分析

Spectral and gravimetric analysis of completely oxidized amalgam systems.

作者信息

Mueller H J

出版信息

Biomater Med Devices Artif Organs. 1980;8(3):221-56. doi: 10.3109/10731198009118981.

Abstract

Analysis of the soluble solution species, insoluble solution precipitate, adherent corrosion products, and microstructural changes of the substrate amalgam after selected polarization to -0.2v and +0.5v in a chloride solution is reported. Results indicate only small concentrations of soluble species, high concentrations of a Sn insoluble solution precipitate at -0.2v, and high concentrations of a Cu precipitate at +0.5v, related to CuCl2 . 3 Cu (OH)2. The completely oxidized amalgam microstructure indicates a thin outermost layer of predominantly Sn--Cl, a thick corroded layer of Ag-Sn-Hg-Cl, and the remaining substrate amalgam. The compound of (SnO) 160 is also associated with the thick corroded layer. The microstructure of the substrate amalgam exhibits, besides the normally occurring phases and products, four new phases or alterations due to the redistribution of Sn, Cl and 0 from the gamma-2 corrosion products, (1) the reappearance of voids, (2) a grey Ag-Sn-Cl phase with and without Cu localized at specific sites in the gamma-1 matrix, (3) dark areas or partially filled voids containing the same elements as in (2) and formerly occupied by the gamma-2 products, and (4) a Cu-rich phase from the deterioration of the Cu6Sn5 phase and also included within the matrix. These changes, particularly (1), (2) and (3) occur with the onset of the gamma-1 deterioration. Unreacted Ag3Sn including the additions of the Cu3Sn component is the last phase to be attacked in the composite amalgam.

摘要

报告了在氯化物溶液中选定极化至-0.2V和+0.5V后,对基体汞齐的可溶性溶液物种、不溶性溶液沉淀物、附着腐蚀产物以及微观结构变化的分析。结果表明,可溶性物种浓度仅较小,在-0.2V时锡的不溶性溶液沉淀物浓度较高,在+0.5V时铜沉淀物浓度较高,与CuCl2·3Cu(OH)2有关。完全氧化的汞齐微观结构表明,最外层主要是Sn-Cl的薄层,中间是Ag-Sn-Hg-Cl的厚腐蚀层,其余为基体汞齐。(SnO)160化合物也与厚腐蚀层有关。除了通常出现的相和产物外,基体汞齐的微观结构还表现出由于γ-2腐蚀产物中Sn、Cl和O的重新分布而产生的四个新相或变化:(1)孔隙的重新出现;(2)在γ-1基体特定位置存在和不存在Cu的灰色Ag-Sn-Cl相;(3)含有与(2)中相同元素且以前被γ-2产物占据的暗区或部分填充的孔隙;(4)由于Cu6Sn5相的劣化而产生的富铜相,也包含在基体中。这些变化,特别是(1)、(2)和(3)随着γ-1劣化的开始而出现。未反应的Ag3Sn包括添加的Cu3Sn组分是复合汞齐中最后被侵蚀的相。

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