[Studies on Pd base ternary alloys for dental amalgam. (Part 1) Effect of size and shape of particle on dimensional change and mechanical properties (author's transl)].

I Yasumura
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Abstract

Although much efforts have been paid to improve the properties of silver-tin amalgam, some clinical problems are not resolved yet. Palladium alloys have good properties for dental material, and they react on mercury well. So they are considered to be good amalgam alloys. In this paper, palladium base ternary alloys are studied for dental amalgam. The effect of size and shape of particle on dimensional change, compressive strength and hardness is studied. Main results obtained are as follows. (1) The dimensional change of spherical particle amalgam is smaller than that of fine cut particle. The finer the particle size is, the smaller the dimensional change is both for spherical and fine cut particles. (2) The dimensional change of amalgam of 60 wt% Pd-40 wt% Ag alloy decreased by addition of Sn or Cu, and these values under 20 micrometer/cm by addition of more than 5 wt% Cu or 10 wt% Sn. (3) Compressive strength of Pd alloy amalgam scatter so widely that the effects of alloying element are not able to be evaluated. Both maximum compressive strengths are 22 kg/mm2 and 28 kg/mm2 for the alloys containing Cu and Sn respectively. (4) Vicker's hardness of palladium alloy amalgam increased by addition of Sn and ranged 80 approximately 120 for spherical amalgam, which is higher than that of commercial alloy. Significant difference is not found in Cu added alloys. (5) From the analysis by XMA, it is found that matrix is composed of one phase and there is compositional difference between center of matrix and near the particle. Silver is rich in the center of matrix and palladium is rich near the alloy particle. Cu and Sn are seemed to distribute uniformly.

牙科用银汞合金钯基三元合金的研究。(第1部分)颗粒尺寸和形状对尺寸变化和力学性能的影响[作者译]。
尽管人们在改善银锡汞合金的性能方面做了很多努力,但一些临床问题仍未得到解决。钯合金具有良好的牙科材料性能,对汞的反应良好。所以它们被认为是很好的汞合金。本文研究了牙科用银汞合金用钯基三元合金。研究了颗粒尺寸和形状对尺寸变化、抗压强度和硬度的影响。得到的主要结果如下。(1)球形颗粒银汞合金的尺寸变化小于细切削颗粒。颗粒越细,球形颗粒和细切削颗粒的尺寸变化越小。(2) 60 wt% Pd-40 wt% Ag合金的银汞合金尺寸变化在加入Sn或Cu后减小,在加入大于5 wt% Cu或10 wt% Sn时尺寸变化在20微米/厘米以下。(3)钯合金银汞合金抗压强度分布广泛,无法评价合金元素的影响。含铜和含锡合金的最大抗压强度分别为22 kg/mm2和28 kg/mm2。(4)添加Sn后,钯合金银汞合金的维氏硬度有所提高,球形银汞合金的维氏硬度在80 ~ 120之间,高于工业合金。在加铜合金中没有发现显著差异。(5)通过XMA分析,发现基体由单一相组成,且基体中心与颗粒附近存在成分差异。银在基体中心富集,钯在合金颗粒附近富集。Cu和Sn的分布均匀。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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