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Surface analysis of porcelain fused to metal systems

机译:瓷熔合金属系统的表面分析

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Objective. The effect of four different, commonly performed, metal-ceramic alloy, surface preparation stages, were investigated to observe surface compositional changes. Methods. Two metal-ceramic alloys were examined (Pd/Ag alloy and a Ni/Cr alloy). Discs 12 mm diameter and 2 mm thick were produced using the lost wax casting process. Prior to casting alloy ingots were examined using X-ray fluorescence spectrometry (XRF) to determine bulk composition. The four preparation stages were (1) devesting and Al_2O_3 blasted; (2) ground smooth and Al_2O_3 blasted; (3) oxidation firing; (4) firing cycle for opaque porcelain application. X-ray photoelectron spectroscopy (XPS) surface analysis was performed after each surface preparation stage to determine changes in surface composition. SEM with EDS was also used to identify surface composition. Results. XRF and manufacturers compositional analysis of the alloys showed similar findings for the major elements. XPS analysis showed that at preparation stages 3 and 4 evidence of elemental migration to the surface (In with Pd/Ag alloy and Cr and Mn with Ni/Cr alloy). Alumina was also seen on the alloy surfaces, with SEAA/EDS confirming Al_2O_3 particles embedded in the surface of the alloys. Significance. Surface composition is very different from the batch composition. Surface preparation stage 3 is essential in bringing to the alloy surface elements which could be directly involved in the metal-ceramic bond. Elements and their oxides, in various forms, cover the surface of the alloys. Al_2O_3 particles can remain embedded in the alloy surface during porcelain application.
机译:目的。研究了四个不同的,通常执行的金属陶瓷合金表面处理阶段的影响,以观察表面成分的变化。方法。检查了两种金属陶瓷合金(Pd / Ag合金和Ni / Cr合金)。使用失蜡铸造工艺生产直径为12毫米,厚度为2毫米的圆盘。在铸造之前,使用X射线荧光光谱法(XRF)检查合金锭,以确定整体组成。四个准备阶段为(1)除草和喷Al_2O_3; (2)地面平整,Al_2O_3爆破; (3)氧化烧成; (4)烧成周期,适用于不透明瓷器。在每个表面准备阶段之后执行X射线光电子能谱(XPS)表面分析,以确定表面成分的变化。带有EDS的SEM也用于识别表面成分。结果。 XRF和制造商的合金成分分析表明,主要元素的发现相似。 XPS分析表明,在制备阶段3和4,元素向表面迁移的证据(Pd / Ag合金为In,Ni / Cr合金为Cr和Mn)。在合金表面上还可以看到氧化铝,SEAA / EDS证实了Al_2O_3颗粒嵌入合金表面。意义。表面成分与批料成分非常不同。表面准备阶段3对于使合金表面元素直接参与金属-陶瓷结合至关重要。各种形式的元素及其氧化物覆盖合金的表面。在瓷器涂覆过程中,Al_2O_3颗粒可以保留在合金表面中。

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