华西口腔医学杂志

• 临床研究 • 上一篇    下一篇

不同热处理对牙科铸造银钯合金腐蚀行为的影响

赵耀1,2 武斌3 孟玉坤1   

  1. 1.口腔疾病研究国家重点实验室 华西口腔医院修复科(四川大学),成都 610041;2.口腔疾病与生物医学重庆市重点实验室,重庆医科大学附属口腔医院修复科,重庆 401147;3.深圳市宝安区龙华人民医院口腔科,深圳 518109
  • 出版日期:2014-06-01 发布日期:2014-06-01
  • 通讯作者: 孟玉坤,副教授,博士,E-mail:yukunmeng@hotmail.com
  • 作者简介:赵耀,主治医师,硕士,E-mail:zhaoyao1962@163.com
  • 基金资助:

    四川省科技支撑计划基金资助项目(2010fz0086);深圳市科技计划基金资助项目(201003358)

Influence of cryogenic treatment and age-hardening heat treatment on the corrosion behavior of a dental casting Ag-Pd alloy

Zhao Yao1,2, Wu Bin3, Meng Yukun1   

  1. 1. State Key Laboratory of Oral Diseases, Dept. of Prosthodontics, West China Hospital of Stomatology, Sichuan University, Chengdu 610041, China; 2. Chongqing Key Laboratory for Oral Diseases and Biomedical Sciences, Dept. of Prosthodontics, The Affiliated Hospital of Stomatology, Chongqing Medical University, Chong-qing 401147, China; 3. Dept. of Stomatology, Longhua People’s Hospital in Baoan District, Shenzhen 518109, China
  • Online:2014-06-01 Published:2014-06-01

摘要:

目的  研究不同处理对牙科用银钯铸造合金腐蚀行为的影响。方法  熔炼银钯铸造合金,参照ISO 10271:2001牙科金属材料抗腐蚀实验标准,按照标准牙科失蜡法铸造程序制作测试样本,经固溶软化处理后,分别进行相应的热处理、深冷处理、热处理并深冷处理,以固溶软化处理组作为对照组。采用金相显微镜观察分析,并行电化学实验、静态浸泡实验测试合金的电化学参数及非贵金属离子析出值。结果  各实验组的金相结构发生了变化,电化学参数的开路电位Eocp、腐蚀电位Ecorr及腐蚀电流密度Icorr与对照组的差异有统计学意义(P<0.05),但各实验组与对照组银、钯、铜离子析出量的差异无统计学意义(P>0.05)。结论  各组的抗腐蚀性能指标均能满足ISO标准的要求,适当的热处理、深冷处理、热处理并深冷处理能改善实验合金的抗腐蚀性能。

关键词: 牙科银钯铸造合金, 热处理, 深冷处理, 金相结构, 腐蚀行为

Abstract:

Objective  The purpose of this study is to investigate the influence of cryogenic treatment and age-hardening heat treatment on the corrosion behavior of a dental casting Ag-Pd alloy. Methods  A low gold content dental casting alloy composed of Ag-Pd-Cu-Au was prepared for this study. Corrosion test was performed according to ISO 10271:2001 dental metallie-corrosion test methods. Experimental specimens were casted according to a standard dental lost-wax casting procedure, treated with solution by heating the specimens to 900 ℃, and immediately quenched in ice water. The specimens were then divided into four groups and subjected to heat treatment, cryogenic treatment, and heat treatment combined with cryogenic treatment. The specimens after the solution treatment were taken as control. The metallographic structures of the specimens were ob-served. The electrochemical parameters and the quantity of non-precious metallic ions released were evaluated via electro-chemical and static immersion tests. Results  Metallographic observation revealed that all the treatments resulted in a change in the microstructure of the alloy. The treatments were effective in improving the electrochemical parameters, such as an in-crease in Eocp and Ecorr and a decrease in Icorr (P<0.05). The amount of non-noble metal ions released showed no difference compared with the control group (P>0.05). Conclusion  After different treatments, the antierosion properties of the alloy satisfied the ISO requirements. Age-hardening heat treatment and cryogenic treatment improved the corrosion resistance of the alloy.

Key words: dental casting Ag-Pd alloy, heat treatment, cryogenic treatment, metallography, corrosion behavior