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首页> 外文期刊>Journal of prosthodontics: official journal of the American College of Prosthodontists >Mechanical properties of dual-cured resin luting agents for ceramic restoration.
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Mechanical properties of dual-cured resin luting agents for ceramic restoration.

机译:用于陶瓷修复的双固化树脂浸润剂的机械性能。

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Purpose: The aim of the present study was to evaluate mechanical properties, including surface hardness, flexural strength, and flexural modulus, of two dual-cured resin luting agents [Clearfil Esthetic Cement (CEC) and Variolink II (VLII)] irradiated through four thicknesses of leucite ceramics (0, 1, 2, and 3 mm) and to evaluate their shear bond strength to zirconia ceramic (Cercon) using each ceramic primer. Materials and Methods: Knoop hardness was measured on a thin layer of resin luting agent on the ceramic surface. Three-point bending tests were performed after 24 hours of storage at 37 degrees C. Two differently shaped zirconia ceramic specimens with or without sandblasting with alumina were treated with each primer. The specimens were then cemented together with each resin luting agent. Half of the specimens were stored in water at 37 degrees C for 24 hours and the other half were thermocycled 5000 times. Results: VLII revealed statistically higher Knoop hardness and flexural modulus than CEC for each thickness of ceramic. No significant differences in flexural strength were observed between VLII and CEC for each ceramic spacer. Reduction of the mechanical properties with increase of ceramic thickness varied for each property; however, these properties were similar in the two materials. Blasting with alumina was significantly effective for increasing shear bond strength of both resin luting agents before and after thermal cycling. The use of Clearfil Ceramic Primer showed the highest shear bond strength and maintained bond durability after 5000 thermocycles. Conclusion: Mechanical properties of CEC dual-cured resin luting agent appear adequate for ceramic restorations.
机译:目的:本研究的目的是评估通过两种方法辐照的两种双固化树脂浸润剂[Clearfil Esthetic Cement(CEC)和Variolink II(VLII)]的机械性能,包括表面硬度,弯曲强度和弯曲模量。厚度的白云石陶瓷(0、1、2和3 mm),并使用每种陶瓷底漆评估它们对氧化锆陶瓷(Cercon)的剪切粘结强度。材料和方法:努氏硬度是在陶瓷表面上的树脂浸润剂薄层上测量的。在37摄氏度下储存24小时后,进行了三点弯曲测试。分别对每种底漆处理了两种不同形状的氧化锆陶瓷样品,无论是否使用氧化铝进行喷砂处理。然后将样品与每种树脂浸润剂粘合在一起。将一半标本在37摄氏度的水中保存24小时,另一半进行5000次热循环。结果:对于每种厚度的陶瓷,VLII显示出比CEC更高的努氏硬度和挠曲模量在统计学上更高。对于每种陶瓷垫片,在VLII和CEC之间未观察到弯曲强度的显着差异。随着陶瓷厚度的增加,机械性能的降低因每种性能而异;但是,两种材料的这些特性相似。在热循环之前和之后,用氧化铝喷砂对提高两种树脂浸润剂的剪切粘结强度都非常有效。在5000次热循环后,使用Clearfil陶瓷底漆显示出最高的剪切粘合强度并保持了粘合耐久性。结论:CEC双固化树脂浸润剂的机械性能似乎足以用于陶瓷​​修复体。

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