Moxon Ryan, Xu Zhigang, Chris-Okoro Ikenna, Cherono Sheilah, Kumar Dhananjay
Department of Mechanical Engineering, North Carolina A&T State University, Greensboro, NC 27411, USA.
Materials (Basel). 2023 Apr 28;16(9):3452. doi: 10.3390/ma16093452.
Dental amalgam is an alloy consisting of a mixture of fine metallic powder of silver, tin, zinc, copper, and a trace amount of palladium in combination with about fifty percent elemental mercury that forms a matrix phase. Dental amalgams consisting of a high-copper content are the most common types of alloys currently utilized for the restoration of decayed, broken, and fractured posterior human teeth. The present research objective was primarily to improve the material properties by determining and analyzing the amount of mercury vapor released from dental amalgam received from eight different commercial brands. The mechanical hardness of the alloys was found to increase with an increase in copper content in the amalgam. The effect of copper addition on material aging was also studied. During the release of mercury vapor, the corresponding energies associated with the release of mercury vapor from each sample were determined for each successive measurement. The results indicated that increasing the copper content of the amalgam counters the release of mercury vapor from posterior teeth and improves the hardness properties.
牙科汞合金是一种合金,由银、锡、锌、铜的细金属粉末混合物以及痕量钯与约50%的元素汞结合形成基体相组成。高铜含量的牙科汞合金是目前用于修复人类后牙龋齿、破损和断裂的最常见合金类型。本研究的主要目标是通过测定和分析从八个不同商业品牌获得的牙科汞合金释放的汞蒸气量来改善材料性能。发现合金的机械硬度随着汞合金中铜含量的增加而增加。还研究了添加铜对材料老化的影响。在汞蒸气释放过程中,对每次连续测量确定每个样品释放汞蒸气所对应的能量。结果表明,增加汞合金中的铜含量可抑制后牙汞蒸气的释放并改善硬度性能。