[Influence of metal elements in Pd alloys on the bonding to porcelain].

Y Kurisaki, K Nagayama
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Abstract

The influence of metal elements in three Pd alloys on the bonding to porcelain was examined. The high-temperature oxidation behavior of metal elements in alloys, structure and morphology of oxidation zones on the alloy surface and the appearance of bonding between alloy and fused porcelain at the interface were studied by ESCA and EPMA. From ESCA analysis, metal oxides such as PdO, SnO2, In2O3, CuO or Cu2O, Sb2O3 or Sb2O5 were formed on the surface of the alloy after degassing (preheating) and heating following casting. The amount of metal elements concentrated on the alloy surface was measured by their characteristic X-rays using area analysis of EPMA under the technical conditions of A) Acc. voltage 10 kV, Abs. current 40 nA, and B) Acc. voltage 20 kV, Abs. current 10 nA. Consequently, the amount of additive metal elements concentrated on the alloy surface which was detected in condition A) was larger than that detected in condition B). However, the amount of main element (Pd) concentrated on the alloy surface which was detected in condition A) was smaller than that detected in condition B). From the EPMA observation of the interface between alloy and fused porcelain, cross-section of alloys showed that the additive metal elements were oxidized in the alloy matrix, forming an internal oxide layer or particles. The structure and morphology of oxidation zones showed a significant difference between degassed and not-degassed alloys. Cross-sections inclined approximately 5 degrees 43' to the fusing boundary were also analyzed to enlarge the oxidation zones. This analytical technique effectively revealed the structure and morphology of oxidation zones. In conclusion, not only additive metal elements but also the main element at the surface of alloys play important roles on the bonding to porcelain. Degassing of the alloy was considered to an essential procedure to obtain the adequate bonding to porcelain.

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[Pd合金中金属元素对陶瓷结合的影响]。
考察了三种钯合金中金属元素对其与瓷结合的影响。采用ESCA和EPMA研究了合金中金属元素的高温氧化行为、合金表面氧化带的组织和形貌以及合金与电熔瓷界面的结合情况。ESCA分析表明,铸后除气(预热)和加热后在合金表面形成了PdO、SnO2、In2O3、CuO或Cu2O、Sb2O3或Sb2O5等金属氧化物。在A) Acc的工艺条件下,用EPMA面积分析法测定合金表面金属元素的特征x射线量。电压10kv, ab,电流40na, B) Acc。电压20kv, abs,电流10na。因此,在A)条件下合金表面的金属添加元素浓度大于B)条件下合金表面的金属添加元素浓度,而在A)条件下合金表面的主元素(Pd)浓度小于B)条件下合金表面的主元素(Pd)浓度。合金截面分析表明,合金基体中添加的金属元素被氧化,形成内部氧化层或氧化颗粒。脱气合金与未脱气合金氧化区的组织和形貌有显著差异。向熔合边界倾斜约5°43′的截面也会扩大氧化区。该分析技术有效地揭示了氧化带的结构和形态。综上所述,除了添加金属元素外,合金表面的主元素对陶瓷的结合也起着重要的作用。合金的脱气被认为是获得与瓷充分结合的必要步骤。
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