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铸造钛与铸型材料的界面反应。

Interfacial reactions of cast titanium with mold materials.

作者信息

Wang R R, Welsch G E, Castro-Cedeno M

机构信息

Department of Restorative Dentistry, Case Western Reserve University School of Dentistry, Cleveland, Ohio 44106, USA.

出版信息

Int J Prosthodont. 1998 Jan-Feb;11(1):33-43.

PMID:9588989
Abstract

PURPOSE

Dental casting requires replication of complex shapes with high fidelity. To achieve this objective, the problem of scale formation on titanium dental castings must be overcome. Scaling occurs readily at high temperatures because of the high reactivity of molten titanium with investment materials. The purpose of this study was to examine the effectiveness of using stable oxide coatings on the mold surface to reduce the interfacial reactions.

MATERIALS AND METHODS

A traditional phosphate-bonded dental investment, a commercial titanium investment, and an experimental oxide coating were used for the molds. Pure titanium samples were cast, divested, and prepared for scanning electron microscopic and energy dispersive x-ray spectroscopic analyses.

RESULTS

Layers of 7- to 10-micron-thick scale were formed on titanium castings during reaction with traditional mold materials. Interface reaction was reduced between the molten titanium and the investment material when yttrium oxide or zirconium oxide coatings were applied to the mold before casting.

CONCLUSION

Less titanium-mold interfacial reactions occurred when protective coatings were used as diffusion barriers for titanium casting. Y2O3-coating oxide particles applied without binder were entrapped in the cast titanium surface layer. Further study of a binder system for Y2O3 coating is needed.

摘要

目的

牙科铸造需要高保真地复制复杂形状。为实现这一目标,必须克服钛牙科铸件上形成氧化皮的问题。由于熔融钛与包埋材料的高反应性,在高温下很容易发生氧化皮形成。本研究的目的是检验在模具表面使用稳定氧化物涂层以减少界面反应的有效性。

材料与方法

模具使用传统的磷酸盐粘结牙科包埋材料、商用钛包埋材料和一种实验性氧化物涂层。铸造纯钛样品,脱模,并准备进行扫描电子显微镜和能量色散X射线光谱分析。

结果

在与传统模具材料反应过程中,钛铸件上形成了7至10微米厚的氧化皮层。在铸造前将氧化钇或氧化锆涂层应用于模具时,熔融钛与包埋材料之间的界面反应减少。

结论

当使用保护涂层作为钛铸造的扩散阻挡层时,钛与模具之间的界面反应较少。未使用粘结剂的Y2O3涂层氧化物颗粒被困在铸造钛表层中。需要对Y2O3涂层的粘结剂体系进行进一步研究。

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