Abbott J R, Miller D R, Netherway D J
J Biomed Mater Res. 1982 Sep;16(5):535-47. doi: 10.1002/jbm.820160502.
Electron diffraction evidence confirming the ordered orthorhombic crystal structure of the gamma phase of the silver-tin system has been obtained, and it has been established by optical metallography that an alloy with a composition corresponding to the dental amalgam alloy formula Ag3Sn (i.e., 26.85 wt % Sn) lies outside the single gamma phase field and in the duplex (gamma + Sn) phase field adjacent to it. Studies of the mechanism of the hardening reaction of single crystals of homogeneous gamma phase alloys with mercury were carried out using both scanning and transmission electron microscopy. Mercury attack occurred preferentially along well-defined planes in the single crystals. Using electron channeling and trace analysis techniques these planes of preferential attack were found to be [010] and [011], and from transmission electron microscopy of thin foils these were shown to be slip bands and deformation twins, respectively. In bicrystals of gamma phase material, preferential attack also occurred along grain boundaries. Similar preferential mercury attack, leading to the development of deep planar intrusions into the gamma phase material, was observed in an experimental dental amalgam prepared from a lathe-cut homogeneous gamma phase amalgam alloy. It is believed that the presence of such features would have important implications for the clinical performance of dental amalgam.
已获得电子衍射证据,证实了银 - 锡系统γ相的有序正交晶体结构,并且通过光学金相学确定,成分对应于牙科汞齐合金配方Ag3Sn(即26.85 wt% Sn)的合金位于单一γ相区之外,处于与其相邻的双相(γ + Sn)相区。利用扫描电子显微镜和透射电子显微镜对均匀γ相合金单晶与汞的硬化反应机制进行了研究。汞侵蚀优先沿着单晶中明确的平面发生。使用电子通道和痕量分析技术,发现这些优先侵蚀平面为[010]和[011],并且通过薄箔透射电子显微镜观察表明,它们分别是滑移带和变形孪晶。在γ相材料的双晶体中,优先侵蚀也沿着晶界发生。在由车床切割的均匀γ相汞齐合金制备的实验性牙科汞齐中,观察到类似的优先汞侵蚀,导致在γ相材料中形成深的平面侵入。据信,这些特征的存在对牙科汞齐的临床性能具有重要影响。