首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Air-abrasion using new silica-alumina powders containing different silica concentrations: Effect on the microstructural characteristics and fatigue behavior of a Y-TZP ceramic
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Air-abrasion using new silica-alumina powders containing different silica concentrations: Effect on the microstructural characteristics and fatigue behavior of a Y-TZP ceramic

机译:使用含有不同二氧化硅浓度的新型二氧化硅 - 氧化铝粉末的空气磨损:对Y-TZP陶瓷的微观结构特征和疲劳行为的影响

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This study assessed the fatigue performance (biaxial flexure fatigue strength), surface characteristics (topography and roughness) and structural stability (t-m phase transformation) of a Y-TZP ceramic subjected to air abrasion using new powders (7% and 20% silica-coated aluminum oxide particles) in comparison to commercially available powders. Disc-shaped specimens were manufactured (ISO 6872-2015) and randomly allocated into four groups considering the air-abrasion materials: SiC: commercially available silica-coated aluminum oxide; AlOx: commercially available aluminum oxide; 7%Si and 20%Si: experimentally produced materials consisting of 7% and 20% silica-coated AlOx, respectively. Air-abrasion was executed by a blinded researcher (1 cm distance from the tip to the specimen surface, under 2.8 bar pressure for 10 s). The fatigue tests (n = 15) were performed by the staircase method under a piston-on-three-balls assembly. Topography and roughness assessments (n = 30) of abraded samples and fractography of failed discs were performed. The highest fatigue strength (MPa) was observed for 7%Si (887.20 +/- 50.54) and SiC (878.16 +/- 29.81), while the lowest fatigue strength for 20%Si (773.89 +/- 46.44) and AlOx (796.70 +/- 46.48). Topography analysis depicted similar surface morphology for all conditions. However, roughness (mu m) was only statistically different between 7%Si (Ra = 0.30 +/- 0.09; Rz = 2.31 +/- 0.63) and SiC (Ra = 0.26 +/- 0.04; Rz = 1.99 +/- 0.34). Monoclinic phase grains appeared on Y-TZP surface in a similar content (approximate to 11-12%) for the protocols. Fractography showed all failures starting on air-abraded surface/sub-surface defects from the tensile side. In terms of roughness, phase transformation and fatigue, the new 7% silica-coated aluminum oxide presented similar behavior to the commercially available powder. Increasing silica-coating concentration to 20% did not lead to a gentle air-abrasion protocol.
机译:该研究评估了使用新粉末对空气磨损的Y-TZP陶瓷的疲劳性能(双轴挠度疲劳强度),表面特性(形貌和粗糙度)和结构稳定性(TM相变化)(7%和20%二氧化硅涂层与市售粉末相比,氧化铝颗粒。制造圆盘形样品(ISO 6872-2015),并考虑到空气磨损材料:SiC:市售二氧化硅涂层氧化铝; Alox:市售氧化铝; 7%Si和20%Si:实验生产的材料分别由7%和20%二氧化硅涂覆的Alox组成。通过蒙蔽的研究人员(从尖端到标本表面1厘米的距离,在2.8巴压下,通过致盲的研究人员(1cm距离为10 s)。疲劳试验(n = 15)通过阶梯法在活塞 - 在三球组件下进行。进行地形和粗糙度评估(N = 30)的磨损样品和失效光盘的断裂。 7%Si(887.20 +/- 50.54)和SiC(878.16 +/- 29.81)观察到最高疲劳强度(MPa),而20%Si(773.89 +/- 46.44)和Alox(796.70)的最低疲劳强度(796.70 +/- 46.48)。地形分析描绘了所有条件的类似表面形态。然而,粗糙度(mu m)仅在7%si之间统计学不同(Ra = 0.30 +/- 0.09; RZ = 2.31 +/- 0.63)和SiC(RA = 0.26 +/- 0.04; RZ = 1.99 +/- 0.34 )。单醚颗粒在Y-TZP表面上出现在类似的内容(近似为11-12%)中的方案。 Fractography显示出从拉伸侧的吹气表面/亚表面缺陷开始的所有故障。就粗糙度,相变和疲劳而言,新的7%二氧化硅涂覆的氧化铝呈现与市售粉末相似的行为。将二氧化硅涂层浓度提高至20%不会导致温和的空气磨损方案。

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