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用 CoJet™ Sand 处理的 Y-TZP 牙科陶瓷的表面粗糙度和 EDS 特性分析。

Surface roughness and EDS characterization of a Y-TZP dental ceramic treated with the CoJet™ Sand.

机构信息

University of Geneva, Switzerland.

出版信息

Dent Mater. 2010 Nov;26(11):1035-42. doi: 10.1016/j.dental.2010.06.005. Epub 2010 Sep 15.

Abstract

OBJECTIVES

(1) To determine the surface roughness and material loss of a Y-TZP ceramic before and after tribochemical grit blasting and (2) to characterize the changes in elemental surface composition and the phase transformations after tribochemical treatment.

METHODS

Machined bar shaped specimens (Zeno, Wieland) were subdivided into three groups. After grit blasting for 10, 20 and 30s respectively, half of the specimens of each group were ultrasonically cleaned in ethanol for 10min. The other half was rinsed with a water spray. Surface roughness was measured using an electro-mechanical profilometer. The elemental composition of the samples was obtained by energy dispersive X-ray spectroscopy (EDS). X-ray diffraction (XRD) was used for phase transformations determination.

RESULTS

The median Ra increased significantly from 0.24 to 0.32-0.38μm after grit blasting. Augmentations were also noted for R(max), R(v) and R(p). The highest roughness parameters were, obtained for water sprayed specimens and samples abraded for 30s. Loss of material ranged between 1 and 3μm for 30s grit blasting. Tetragonal and cubic phases were identified in 'as machined' specimens. Grit blasting resulted in domain switching and lattice deformations. The elemental composition comprised Si and Al. The duration of grit blasting did not significantly, influence the atomic percentages of Si or Al. Significantly lower values for both Si and Al were noted, after ultrasonic cleaning.

SIGNIFICANCE

Grit blasting with CoJet™ Sand resulted in an increase of surface roughness, a removal of maximum 3μm of material and coated the surface with submicron silica and alumina particles.

摘要

目的

(1) 确定 Y-TZP 陶瓷在研磨化学喷砂前后的表面粗糙度和材料损耗,(2) 分析研磨化学处理后元素表面成分的变化和相转变。

方法

将加工成棒状的试件(Zeno、 Wieland)分为三组。分别研磨喷砂 10、20 和 30s 后,每组的一半试件用乙醇超声清洗 10min,另一半用清水冲洗。用电动轮廓仪测量表面粗糙度。通过能量色散 X 射线光谱(EDS)获取样品的元素组成。用 X 射线衍射(XRD)确定相转变。

结果

研磨喷砂后,Ra 的中位数从 0.24 显著增加到 0.32-0.38μm。R(max)、R(v)和 R(p)也有所增加。水喷试件和研磨 30s 的样品获得了最高的粗糙度参数。30s 研磨喷砂的材料损耗在 1-3μm 之间。在“加工后”的样品中鉴定出四方相和立方相。研磨喷砂导致了畴转变和晶格变形。元素组成包括 Si 和 Al。研磨喷砂时间对 Si 或 Al 的原子百分比没有显著影响。超声清洗后,Si 和 Al 的含量显著降低。

意义

CoJet™ Sand 研磨化学喷砂增加了表面粗糙度,去除了最大 3μm 的材料,并在表面涂覆了亚微米级的二氧化硅和氧化铝颗粒。

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