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变形高钯牙科合金的透射电子显微镜研究。

Transmission electron microscopic studies of deformed high-palladium dental alloys.

作者信息

Guo W H, Brantley W A, Clark W A T, Xiao J Z, Papazoglou E

机构信息

Section of Restorative Dentistry, Prosthodontics and Endodontics, College of Dentistry, The Ohio State University, 305 West 12th Avenue, Mailbox #191, PO Box 182357, Columbus, OH 43210-2357, USA.

出版信息

Dent Mater. 2003 Jun;19(4):334-40. doi: 10.1016/s0109-5641(02)00063-5.

Abstract

Objective. The purpose of this study was to employ transmission electron microscopy (TEM) to investigate the microstructures of Pd-Cu-Ga and Pd-Ga dental alloys that had been permanently deformed, in order to obtain information about the deformation behavior of individual phases and changes in microstructure brought about by that deformation.Methods. Heavily deformed regions taken from fractured tensile test bars of the two alloys in the as-cast condition were prepared for TEM analysis, using mechanical grinding and polishing, ion milling, and plasma cleaning. The specimens were examined in the TEM using bright-field and dark-field diffraction contrast imaging. Selected-area and convergent-beam electron diffraction patterns were employed to analyze the structures of the phases, and standardless energy-dispersive X-ray spectrometry was used to determine their mean compositions.Results. For both alloys, tweed structures underwent permanent deformation by twinning, whereas dislocation movement occurred in the face-centered cubic (fcc) palladium solid solution matrix. A body-centered cubic (bcc) phase, previously unreported in our TEM studies and containing a high density of dislocations, was identified in the Pd-Cu-Ga alloy, while fine-scale, stress-induced precipitates were found in some regions of the fcc matrix in the Pd-Ga alloy.Significance. The present results have provided novel information about the mechanical deformation behavior of high-palladium alloys. The stress-induced precipitation in the Pd-Ga dental alloy studied may be a critical component of strengthening mechanisms.

摘要

目的。本研究的目的是利用透射电子显微镜(TEM)研究永久变形后的钯 - 铜 - 镓和钯 - 镓牙科合金的微观结构,以便获取有关各个相的变形行为以及由该变形引起的微观结构变化的信息。

方法。从两种铸态合金的断裂拉伸试验棒上获取严重变形区域,通过机械研磨和抛光、离子铣削以及等离子清洗制备用于TEM分析的试样。使用明场和暗场衍射对比成像在TEM中对试样进行检查。采用选区电子衍射和会聚束电子衍射图案分析相的结构,并使用无标样能量色散X射线光谱法测定其平均成分。

结果。对于这两种合金,斜纹结构通过孪生发生永久变形,而位错运动发生在面心立方(fcc)钯固溶体基体中。在钯 - 铜 - 镓合金中鉴定出一种体心立方(bcc)相,这在我们之前的TEM研究中未曾报道,且该相含有高密度位错,而在钯 - 镓合金的fcc基体的某些区域发现了细尺度的应力诱导析出物。

意义。目前的结果提供了有关高钯合金机械变形行为的新信息。所研究的钯 - 镓牙科合金中的应力诱导析出可能是强化机制的关键组成部分。

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