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热处理对分散型牙科汞合金结构和性能的影响。

Effect of heat treatment on structure and properties of dispersed-type dental amalgam.

作者信息

Ju Chien-Ping, Chen Yu-Hsuan, Ho Wen-Fu, Ho Shu-Ching, Chen Wen-Cheng, Shieh Dar-Bin, Chern Lin Jiin-Huey

机构信息

Department of Materials Science and Engineering, National Cheng-Kung University, No. 1, Da-Sha Road, Tainan 701, Taiwan, ROC.

出版信息

J Mater Sci Mater Med. 2008 Jan;19(1):83-93. doi: 10.1007/s10856-007-3046-1. Epub 2007 Jun 19.

Abstract

Effect of heat treatment of Ag-Cu-Pd dispersant particles on the structure, mechanical properties and mercury vapor release rate of an Ag-Cu-Sn/Ag-Cu-Pd-based dental amalgam has been investigated. Experimental results indicate that crystallinity of dispersant Ag-Cu-Pd alloy increases with increasing HTT, with most notable increase occurring between 100 and 200 degrees C. Increasing HTT of Ag-Cu-Pd alloy does not change much of the mercury/alloy ratio for amalgamation, but largely reduces working/setting time of the amalgam. The Ag-Cu-Pd particles in 7 d-aged amalgam are comprised primarily of an outer Sn/Cu/Pd-rich zone and an inner Ag/Cu/Pd-rich zone with eutectic-type morphology and chemical distribution. The annealing-enhanced Pd segregation effect is most significantly observed in the amalgam derived from 300 degrees C-annealed Ag-Cu-Pd dispersant. This amalgam also has the highest compressive strength, highest DTS, and lowest creep rate. Higher annealing temperature causes mechanical property of the amalgam to deteriorate. The initial mercury vapor release rates of amalgams derived from 100, 200 and 300 degrees C-annealed Ag-Cu-Pd dispersant are significantly lower than that derived from 400 degrees C-annealed dispersant.

摘要

研究了Ag-Cu-Pd分散颗粒的热处理对基于Ag-Cu-Sn/Ag-Cu-Pd的牙科汞合金的结构、力学性能和汞蒸气释放速率的影响。实验结果表明,随着热处理温度(HTT)的升高,分散剂Ag-Cu-Pd合金的结晶度增加,在100至200摄氏度之间增加最为显著。Ag-Cu-Pd合金HTT的增加对汞齐化的汞/合金比影响不大,但大大缩短了汞合金的工作/凝固时间。7天龄汞合金中的Ag-Cu-Pd颗粒主要由一个外部富含Sn/Cu/Pd的区域和一个内部富含Ag/Cu/Pd的区域组成,具有共晶型形态和化学分布。在由300摄氏度退火的Ag-Cu-Pd分散剂衍生的汞合金中,最显著地观察到退火增强的Pd偏析效应。这种汞合金还具有最高的抗压强度、最高的DTS和最低的蠕变率。较高的退火温度会导致汞合金的力学性能恶化。由100、200和300摄氏度退火的Ag-Cu-Pd分散剂衍生的汞合金的初始汞蒸气释放速率显著低于由400摄氏度退火的分散剂衍生的汞合金。

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