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首页> 外文期刊>Clinical oral investigations >The influence of different radiopacifying agents on the radiopacity, compressive strength, setting time, and porosity of Portland cement
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The influence of different radiopacifying agents on the radiopacity, compressive strength, setting time, and porosity of Portland cement

机译:不同射线不透剂对硅酸盐水泥的射线不透性,抗压强度,凝固时间和孔隙率的影响

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Objectives: The aims of this study were to evaluate the radiopacity, compressive strength, setting time, and porosity of white Portland cement (PC) with the addition of bismuth oxide (Bi2O3), zirconium dioxide (ZrO2), and ytterbium trifluoride (YbF3) after immersion at 37 °C for 7 days in distilled water or phosphate buffer saline. Materials and methods: Specimens measuring 8 mm in diameter and 1 mm in thickness were fabricated from PC with the addition of 10, 20, and 30 wt% Bi2O3, ZrO2 or YbF3. ProRoot MTA (Dentsply, Tulsa, OK, USA) and pure PC were used as controls. For radiopacity assessments, specimens were radiographed alongside a tooth slices and an aluminum stepwedge on Extraspeed occlusal dental films (Insight Kodak, Rochester, New York). Mean optical density of each specimen was calculated and used to express radiopacity of the material as an equivalent thickness of aluminum. Compressive strength was measured by using 4-mm diameter and 6-mm high specimens and Universal testing machine. High-pressure mercury intrusion porosimeter (Carlo Erba Porosimeter 2000) was employed to measure the porosity of the specimens. The setting time was measured by using a needle of 100 g in weight. The morphology of specimens was evaluated using a scanning electron microscope (TESCAN Mira3 XMU, USA Inc.). Data were analyzed by one-way ANOVA and post hoc Tukey test (P 0.05). Results: The PC with the addition of at least 10 wt% Bi2O3 and 20 wt% ZrO2 or YbF3 demonstrated greater radiopacity value than the recommended 3 mmAl cut-off. ZrO2 and YbF3 increased the compressive strength of PC, but it was not statistically significant (P 0.05), while Bi2O3 decreased it (P 0.05). All radiopacifiers significantly increased the porosity of the experimental cements (P 0.05). Bi2O3 extended the setting time of PC (P 0.05), whilst ZrO2 and YbF3 did not significantly affect it (P 0.05). Conclusions: ZrO2 and YbF3 may be used as a suitable alternative to replace Bi2O3 in MTA without influencing its physical properties.
机译:目的:本研究的目的是评估添加氧化铋(Bi2O3),二氧化锆(ZrO2)和三氟化y(YbF3)的白色硅酸盐水泥(PC)的射线不透性,抗压强度,凝固时间和孔隙率。在37°C的蒸馏水或磷酸盐缓冲盐水中浸泡7天后。材料和方法:通过添加10、20和30 wt%的Bi2O3,ZrO2或YbF3,由PC制成直径8毫米,厚度1毫米的样品。使用ProRoot MTA(Dentsply,塔尔萨,俄克拉荷马州,美国)和纯PC作为对照。为了进行射线不透性评估,在Extraspeed咬合牙科胶片(Insight Kodak,罗彻斯特,纽约)上,将样品与牙齿切片和铝台阶楔一起进行射线照相。计算每个样品的平均光密度,并将其表示为材料的射线不透性,以铝的等效厚度表示。抗压强度通过使用4毫米直径和6毫米高的样品以及Universal试验机进行测量。使用高压压汞仪(Carlo Erba Porosimeter 2000)来测量样品的孔隙率。凝结时间通过使用重量为100 g的针进行测量。使用扫描电子显微镜(TESCAN Mira3 XMU,USA Inc.)评估样品的形态。数据通过单因素方差分析和事后图基检验进行分析(P <0.05)。结果:添加至少10 wt%Bi2O3和20 wt%ZrO2或YbF3的PC显示出比建议的3 mmAl临界值更高的射线不透性值。 ZrO2和YbF3增加了PC的抗压强度,但无统计学意义(P> 0.05),而Bi2O3降低了PC(P <0.05)。所有的辐射增塑剂均显着增加了实验胶结剂的孔隙率(P <0.05)。 Bi2O3延长了PC的凝固时间(P <0.05),而ZrO2和YbF3对其影响不显着(P> 0.05)。结论:ZrO2和YbF3可以替代MTA中的Bi2O3,而不影响其物理性能。

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