Mahler D B, Adey J D
J Dent Res. 1984 Jun;63(6):921-5. doi: 10.1177/00220345840630062301.
Three single-composition, high-copper amalgams were analyzed for the composition of their before- and after-reaction phases. The method used was electron probe microanalysis. The results may be summarized as follows: All alloys consist essentially of Ag3Sn (gamma), Cu3Sn (epsilon), and, in some cases, Ag4Sn (beta). When the original alloy contains higher amounts of Cu, more Cu is found in solution in the Ag3Sn (gamma) and Ag4Sn (beta) phases. The reaction phases in amalgams made from these alloys consist essentially of Ag22Sn Hg27(gamma 1) and Cu6Sn5 (eta'), with no detectable Sn8Hg (gamma 2). When In is present, it is found principally in the Ag3Sn (gamma) and Ag22Sn Hg27(gamma 1) phases, and both the gamma and gamma 1 phases are of different composition than that for the other alloys. When Pd is present, it is found principally in the Cu3Sn (epsilon), Cu6Sn5 (eta'), and Ag22Sn Hg27(gamma 1) phases.
对三种单组分高铜汞合金的反应前、后阶段的成分进行了分析。采用的方法是电子探针微分析。结果可总结如下:所有合金主要由Ag3Sn(γ)、Cu3Sn(ε)组成,在某些情况下还含有Ag4Sn(β)。当原始合金中铜含量较高时,在Ag3Sn(γ)和Ag4Sn(β)相中会发现更多溶解的铜。由这些合金制成的汞合金中的反应相主要由Ag22Sn Hg27(γ1)和Cu6Sn5(η')组成,未检测到Sn8Hg(γ2)。当存在铟时,主要存在于Ag3Sn(γ)和Ag22Sn Hg27(γ1)相中,γ相和γ1相的成分与其他合金不同。当存在钯时,主要存在于Cu3Sn(ε)、Cu6Sn5(η')和Ag22Sn Hg27(γ1)相中。