Department of Biomaterials, School of Dentistry, National and Kapodistrian University of Athens, Athens, Greece.
Dent Mater. 2013 Jun;29(6):693-701. doi: 10.1016/j.dental.2013.03.017. Epub 2013 Apr 16.
The purpose of the study was to evaluate the mechanical properties of dental adhesive materials at different testing temperatures after dry and wet storage.
Specimens (d=1 mm, l=18 mm) from six materials were tested: Silorane Adhesive System (SL), Heliobond (HE), One-Step Plus (OS), Optibond Solo Plus (OP), cmf Adhesive System (CF) and Protobond (PR). Static and creep testing was performed by applying a constant torque below the proportional limit of the materials, while dynamic testing consisted of dynamic torsional loading. Experiments were performed after 24h of dry and wet storage under temperatures from 21°C to 50°C and various viscoelastic parameters were calculated.
Shear modulus ranged from 0.19 to 1.99 GPa, while flexural modulus from 0.67 to 5.69 GPa. Most of the materials were affected by the presence of water and increase of temperature. OP showed the highest recovery after creep, while SL exhibited the highest permanent deformation.
Contact with water after polymerization and increase of temperature resulted in a decline of the mechanical properties, especially for the HEMA-containing adhesives.
本研究旨在评估不同温度下干燥和湿储存后牙科胶粘剂材料的力学性能。
从六种材料中制备试件(d=1mm,l=18mm):硅烷偶联剂粘结系统(SL)、Heliobond(HE)、One-Step Plus(OS)、Optibond Solo Plus(OP)、cmf 粘结系统(CF)和 Protobond(PR)。在低于材料比例极限的恒定扭矩下进行静态和蠕变测试,而动态测试由动态扭转加载组成。在 21°C 至 50°C 的温度下进行 24 小时干燥和湿储存后的实验,并计算了各种粘弹性参数。
剪切模量范围为 0.19 至 1.99GPa,而弯曲模量范围为 0.67 至 5.69GPa。大多数材料受到水的存在和温度升高的影响。OP 在蠕变后表现出最高的恢复,而 SL 则表现出最高的永久变形。
聚合后接触水和温度升高会导致力学性能下降,尤其是含 HEMA 的胶粘剂。