Okazaki K
Shika Rikogaku Zasshi. 1981 Jan;22(57):12-20.
In the previous papers, the author pointed out that alloys containing 30 wt% Au, 15-25 wt% Pd and Cu were more favourable for Au-Ag-Pd-Cu quarternary dental alloys. In this paper, the experiments were carried out to find the effects of additional elements and so, Pt, Ir, Os, W, Mo, Cr, Mn, Co, Zn, In, Sn and Si were added to 30 wt% Au-30 wt% Ag-20 wt% Pd-20 wt% Cu alloys ranging 0.1 wt% to 2.0 wt% respectively. Then, tensile strength, elongation, hardness, corrosion resistivity and porosity ratio were tested on these specimen. Results were as follows. 1) The addition of 0.2 wt% Ir, 0.2 wt% Os and 1.0 wt% Co were comparatively effective for the fineness of grain sizes, elongation and tensile strength. 2) The addition of 0.2 wt% W, 1.0 wt% Mo and 0.2 wt% Si showed respectively bad effect for porosities or mechanical properties. 3) The addition of 1.0 wt% Cr, 2.0 wt% Mn, 1.0 wt% Co, 2.0 wt% Zn and 2.0 wt% In were good for the decrease of porosities respectively and showed that the porosity ratio was lower than 0.2%. 4) The additions of 2.0 wt% Zn-1.0 wt% Pt-0.5 wt% Co to Au-Ag-Pd-Cu alloy was especially good and showed 80 kg/mm2 of tensile strength, 5.1% of elongation, 249 of Vicker's hardness number and 0.4% of porosity ratio.
在之前的论文中,作者指出含有30 wt%金、15 - 25 wt%钯和铜的合金对金-银-钯-铜四元牙科合金更为有利。在本文中,进行了实验以探究添加元素的影响,因此,分别向30 wt%金-30 wt%银-20 wt%钯-20 wt%铜合金中添加了0.1 wt%至2.0 wt%的铂、铱、锇、钨、钼、铬、锰、钴、锌、铟、锡和硅。然后,对这些试样进行了拉伸强度、伸长率、硬度、耐腐蚀性和孔隙率测试。结果如下:1) 添加0.2 wt%铱、0.2 wt%锇和1.0 wt%钴对晶粒细化、伸长率和拉伸强度有相对较好的效果。2) 添加0.2 wt%钨、1.0 wt%钼和0.2 wt%硅分别对孔隙率或力学性能有不良影响。3) 添加1.0 wt%铬、2.0 wt%锰、1.0 wt%钴、2.0 wt%锌和2.0 wt%铟分别对降低孔隙率有好处,且孔隙率低于0.2%。4) 向金-银-钯-铜合金中添加2.0 wt%锌-1.0 wt%铂-0.5 wt%钴效果尤其好,其拉伸强度为80 kg/mm2,伸长率为5.1%,维氏硬度值为249,孔隙率为0.4%。