Alster D, Feilzer A J, de Gee A J, Davidson C L
Department of Dental Materials Science, Academic Centre for Dentistry Amsterdam, The Netherlands.
Dent Mater. 1997 May;13(3):146-50. doi: 10.1016/S0109-5641(97)80115-7.
In the present study, the effect of layer thickness on the curing stress in thin resin composite layers was investigated. Since the value of the contraction stress is dependent on the compliance of the measuring equipment (especially for thin films), a method to determine the compliance of the test apparatus was tested.
A chemically initiated resin composite (Clearfil F2, Kuraray) was inserted between two sandblasted and silane-coated stainless steel discs in a tensilometer. The curing contraction of the cylindrical samples was continuously counteracted by feedback displacement of the tensilometer crosshead, and the curing stress development was registered. After 20 min, the samples were loaded in tension until fracture. The curing stress was determined for layer thicknesses of 50, 100, 200, 300, 400, 500, 600, 700 microns, 1.4 mm and 2.7 mm. The compliance of the apparatus was calculated with the aid of a non-linear regression analysis, using an equation derived from Hooke's Law as the model.
None of the samples fractured due to contraction stress prior to tensile loading. The contraction stress after 20 min decreased from 23.3 +/- 5.3 MPa for the 50 microns layer to 5.5 +/- 0.6 MPa for the 2.7 mm layer. The compliance on the apparatus was 0.029 mm/MPa.
A measuring method was developed which was found to be suitable for the determination of axial polymerization contraction stress in this films of chemically initiated resin composites. The method makes it possible to estimate the stress levels that occur in resin composite films in the clinical situation.
在本研究中,研究了层厚对薄树脂复合材料层固化应力的影响。由于收缩应力的值取决于测量设备的柔顺性(特别是对于薄膜),因此测试了一种确定试验装置柔顺性的方法。
将一种化学引发的树脂复合材料(可乐丽Clearfil F2)置于拉力试验机中两个喷砂并涂有硅烷的不锈钢圆盘之间。圆柱形样品的固化收缩通过拉力试验机十字头的反馈位移持续抵消,并记录固化应力的发展。20分钟后,对样品进行拉伸加载直至断裂。测定了层厚为50、100、200、300、400、500、600、700微米、1.4毫米和2.7毫米时的固化应力。借助非线性回归分析,使用从胡克定律导出的方程作为模型来计算装置的柔顺性。
在拉伸加载之前,没有样品因收缩应力而断裂。20分钟后的收缩应力从50微米层的23.3±5.3兆帕降至2.7毫米层的5.5±0.6兆帕。装置的柔顺性为0.029毫米/兆帕。
开发了一种测量方法,发现该方法适用于测定化学引发树脂复合材料薄膜中的轴向聚合收缩应力。该方法能够估计临床情况下树脂复合材料薄膜中出现的应力水平。