X-ray diffraction studies of oxidized high-palladium alloys

被引:30
作者
Brantley, WA
Cai, Z
Papazoglou, E
Mitchell, JC
Kerber, SJ
Mann, GP
Barr, TL
机构
[1] OHIO STATE UNIV,COLL DENT,SECT ORAL BIOL,COLUMBUS,OH 43210
[2] OHIO STATE UNIV,DEPT GEOL SCI,COLUMBUS,OH 43210
[3] OHIO STATE UNIV,MICROSCOP & CHEM ANAL RES CTR,COLUMBUS,OH 43210
[4] MAT INTERFACE INC,SUSSEX,WI
[5] UNIV WISCONSIN,DEPT MAT,SURFACE STUDIES LAB,MILWAUKEE,WI 53201
关键词
D O I
10.1016/S0109-5641(96)80043-1
中图分类号
R78 [口腔科学];
学科分类号
1003 ;
摘要
Objective. The purpose of this study was to use x-ray diffraction (XRD) to obtain new information about the oxide layers on four representative oxidized high-palladium alloys. Methods. Cast specimens of two Pd-Cu-Ga alloys and two Pd-Ga alloys, with both polished and etched surfaces and air-abraded surfaces, were subjected to oxidation procedures recommended by the manufacturers. The specimens were analyzed by x-ray diffraction using CuKa radiation, and the peaks were compared to appropriate Joint Committee on Powder Diffraction Standards (JCPDS). Results. The surface preparation procedure had a profound effect on the phases present in the oxide layers. For the specimens that had been polished and etched, CuGa2O4 and beta-Ga2O3 were detected on the 79Pd-10Cu-SGa-2Au alloy, whereas SnO2 and CuG(2)O(4) were detected on the 76Pd-10Cu-5.5Ga-6Sn-2Au alloy. The oxide layers on both Pd-Cu-Ga alloys contained Cu2O, and the oxide layer on the 76Pd-10Cu-5.5Ga-6Sn-2Au alloy may contain beta-Ga2O3. The principal phase in the oxide layers on both Pd-Ga alloys that had been polished and etched was In2O3, which exhibited extreme preferred orientation. No other phase was detected in the oxide layer on the 85Pd-10Ga-2Au-1 Ag-l In alloy, whereas beta-Ga2O3 was found in the oxide layer on the 75Pd-6Ga-6Au-6Ag-6.5In alloy. For the air-abraded specimens, beta-Ga2O3 was not present in the oxide layers on the Pd-Cu-Ga alloys, and beta-Ga2O3 was the major phase in the oxide layers on the Pci-Ga alloys. Palladium oxide(s) in varying amounts were detected for both surface preparations of the Pd-Cu-Ga alloys and for the air-abraded Pd-Ga alloys. Except for the 76Pd-10Cu-5.5Ga-6Sn-2Au alloy, the oxide layer caused minimal change in the lattice parameter of the palladium solid solution compared to that for the as-cast alloy. Significance. Knowledge of the phases found in the oxide layers on these high-palladium alloys is of fundamental importance for interpreting differences in the adherence of dental porcelain to the metal substrates under static and dynamic conditions, and may provide guidance in the development of new high-palladium alloys with improved metal-ceramic bonding.
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页码:333 / 341
页数:9
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