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含钯的实验性银锡铜汞合金的初始汞蒸发

Initial mercury evaporation from experimental Ag-Sn-Cu amalgams containing Pd.

作者信息

Koike M, Ferracane J L, Adey J D, Fujii H, Okabe T

机构信息

Course of Medical and Dental Sciences, Department of Developmental and Reconstructive Medicine, Division of Removable Prosthodontics and Management of Oral Function, Nagasaki University Graduate School of Biomedical Sciences, Sakamoto, Nagasaki, Japan.

出版信息

Biomaterials. 2004 Jul;25(16):3147-53. doi: 10.1016/j.biomaterials.2003.10.008.

Abstract

This study examined the Hg evaporation during setting from experimental Ag-Sn-Cu alloy powders with and without Pd. Four series of alloy powders were fabricated to examine the effect on the Hg evaporation of the alloy compositions (all percentages in this report are weight percents): Pd (0-1.5), Cu (9.0-14.0), Ag (57.0-63.7), and Sn (24.9-29.5). These variations in composition produced alloy powders with gamma-Ag3Sn to beta-AgSn ratios varying from 0.0 to 23.9. The total amounts of Hg released from 10 min after trituration were measured from cylindrical specimens (4 x 8mm; n = 4 ) at 37 degrees C using a Hg vapor analyzer. The results were compared to those from commercial alloys (one high-Cu and one low-Cu alloy). All amalgams made from alloys containing 1.5% Pd exhibited lower Hg vapor release than any other amalgams, with the exception of the low-Cu amalgam. The results clearly showed that the alloy formulation affected the mercury evaporation behavior during setting of the resultant amalgams. A small addition of Pd to the alloy can produce amalgams with 50-60% less Hg vapor release during setting than a leading commercial high-Cu amalgam, Tytin.

摘要

本研究检测了含钯和不含钯的实验性银 - 锡 - 铜合金粉末在凝固过程中的汞蒸发情况。制备了四个系列的合金粉末,以研究合金成分对汞蒸发的影响(本报告中的所有百分比均为重量百分比):钯(0 - 1.5)、铜(9.0 - 14.0)、银(57.0 - 63.7)和锡(24.9 - 29.5)。这些成分变化产生了γ - Ag3Sn与β - AgSn比例从0.0到23.9不等的合金粉末。使用汞蒸汽分析仪在37摄氏度下,从圆柱形试样(4×8mm;n = 4)中测量研磨后10分钟释放的汞总量。将结果与市售合金(一种高铜合金和一种低铜合金)的结果进行比较。除低铜汞合金外,所有由含1.5%钯的合金制成的汞合金的汞蒸汽释放量均低于其他任何汞合金。结果清楚地表明,合金配方影响了所得汞合金凝固过程中的汞蒸发行为。在合金中少量添加钯可使凝固过程中汞蒸汽释放量比领先的市售高铜汞合金Tytin少50 - 60%。

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