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Effect of titanium preoxidation on wrought pure titanium to ceramic bond strength

机译:钛预氧化对锻造纯钛与陶瓷结合强度的影响

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Statement of problem The creation of high bond strength between machined computer-manufactured pure titanium and porcelain remains a problem. However, machined titanium does not form the thick titanium oxide film found in cast titanium. Purpose The purpose of this study was to investigate the effects of different preoxidation treatments on the bond strength of a machined pure titanium ceramic system. Material and methods Specimens of commercially pure titanium (25 × 3 × 0.5 mm) were divided equally into 6 groups (n=8), which received different preoxidation treatments (3 hour natural oxidation; 600°C, 650°C, 700°C, 750°C, and 800°C for 3 minutes). Bond strengths were evaluated by using a 3-point bend test. The results were analyzed by using 1-way ANOVA and the least significant difference test. Twelve additional specimens of commercially pure titanium (15 × 3 × 0.5 mm) were cut for interface observation and divided equally into 6 groups that received the preoxidation treatments described previously. Scanning electron microscopy and energy dispersive spectrum were used to observe microscopic features of the interface between Ti and ceramic. Results The bond strength values of the 6 groups ranged from 23.72 ±2.53 MPa to 36.99 ±3.92 MPa, with significant differences (P<.05). The specimen that received 750°C preoxidation had the highest bond strength. The main interface elements of the 6 groups were O, Si, Ti, Sn, Al, Na, and K. Ti showed a sigmoidal diffusion curve in each group, and Si showed a sigmoidal diffusion curve in most groups. Sn was enriched in each group's interface. Conclusions Preoxidation under vacuum before porcelain firing can effectively improve the bond strength of machined pure titanium-porcelain systems.
机译:问题陈述在计算机加工的纯钛和瓷器之间创建高粘结强度仍然是一个问题。但是,机加工钛不会形成铸钛中形成的厚氧化钛膜。目的本研究的目的是研究不同的预氧化处理对机械加工纯钛陶瓷体系结合强度的影响。材料和方法将市售纯钛(25×3×0.5 mm)的样品平均分为6组(n = 8),分别接受不同的预氧化处理(3小时自然氧化; 600°C,650°C,700°C) ,750°C和800°C持续3分钟)。通过使用三点弯曲试验评估粘合强度。通过使用1向ANOVA和最小显着差异检验对结果进行分析。将另外十二个商业纯钛标本(15×3×0.5 mm)切开以进行界面观察,并平均分为6组,分别接受前述的预氧化处理。扫描电子显微镜和能量色散光谱被用来观察钛和陶瓷之间的界面的微观特征。结果6组的粘结强度值在23.72±2.53 MPa至36.99±3.92 MPa之间,差异有统计学意义(P <.05)。接受750°C预氧化的样品具有最高的结合强度。 6组的主要界面元素是O,Si,Ti,Sn,Al,Na和K。Ti在每组中显示S型扩散曲线,而Si在大多数组中显示S型扩散曲线。 Sn充实了每个组的界面。结论烤瓷前在真空下进行预氧化可有效提高机械加工的纯钛瓷系统的结合强度。

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