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The influence of irradiation potential on the degree of conversion and mechanical properties of two bulk-fill flowable RBG base materials

机译:辐照势对两种可填充流动性RBG基材的转化度和力学性能的影响

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摘要

Objective. To assess the depth of cure claims of two bulk-fill flowable RBC bases (SDR and x-tra base) using Fourier transform infrared (FTIR) spectroscopy, biaxial flexure strength (BFS), and Vickers hardness number (VHN) for specimen depths of 8 mm (in 1 mm increments). Methods. The degree of conversion (DC) was measured by monitoring the peak height (6164cm~(-1)) of specimens (11.0±0.1mm diameter, 1.0 ±0.1 mm thickness) during light irradiation for 20 s using a quartz tungsten halogen light curing unit at 650±26mW/cm~2. DC was measured up to 120 s post irradiation and repeated (n = 3) for irradiation depths up to 8 mm (in 1 mm increments). Further series (n = 20) of eight discs were prepared, stacked, light irradiated and numbered from one to eight (distance from the LCU). The specimens were stored at 37 ±1℃ for 24 h and BFS tested with the fracture fragments used to determine the VHN for each specimen. Results. X-tra base can be irradiated to 8 mm without a change in DC, something the SDR material cannot claim. However, the DC results confirm both bulk-fill flowable RBC bases have a depth of cure in excess of 4 mm. One-way ANOVAs of BFS and VHN data showed significant differences between irradiation depths for x-tra base and SDR with increasing irradiation depth (4 mm) resulting in significant reductions in mean BFS and VHN. Significance. The claims that the bulk-fill flowable RBC bases have a depth of cure in excess of 4 mm can be confirmed but the differing chemistry of the resin formulations and filler characteristics contribute to significant differences in DC, BFS and VHN data between the two materials tested.
机译:目的。使用傅里叶变换红外(FTIR)光谱,双轴弯曲强度(BFS)和维氏硬度值(VHN)评估两个散装可流动RBC底座(SDR和x-tra底座)的固化深度要求。 8毫米(以1毫米为增量)。方法。转化度(DC)是通过使用石英钨卤素光固化剂监测光辐照20 s的样品(直径11.0±0.1mm,厚度1.0±0.1 mm)的峰高(6164cm〜(-1))来测量的单位为650±26mW / cm〜2。在辐照后长达120 s的时间内测量DC,并重复(n = 3)辐照深度达8 mm(以1 mm为增量)。准备了另外一系列(n = 20)八个光盘,对其进行堆叠,照射光并编号为一到八(与LCU的距离)。将样品在37±1℃下保存24小时,并用断裂片段进行BFS测试,以确定每个样品的VHN。结果。 X-tra基座可以辐照至8 mm,而DC不变,这是SDR材料无法声称的。但是,DC结果证实了两种可填充的可流动RBC基质的固化深度均超过4毫米。 BFS和VHN数据的单向方差分析显示,随着辐射深度(4 mm)的增加,x-tra碱和SDR的辐照深度之间存在显着差异,导致平均BFS和VHN显着降低。意义。可以确认散装填充的可流动RBC基料的固化深度超过4毫米,但树脂配方的化学性质和填料特性不同,导致两种测试材料之间的DC,BFS和VHN数据存在显着差异。

著录项

  • 来源
    《Dental materials》 |2013年第8期|906-912|共7页
  • 作者单位

    Materials Science Unit, Division of Oral Biosciences, Dublin Dental University Hospital, Trinity College Dublin, Ireland;

    Biomaterials Unit, School of Dentistry, College of Medical and Dental Sciences, University of Birmingham, Birmingham B4 6NN, UK;

    Materials Science Unit, Division of Oral Biosciences, Dublin Dental University Hospital, Trinity College Dublin, Ireland;

    Materials Science Unit, Division of Oral Biosciences, Dublin Dental University Hospital, Trinity College Dublin, Ireland;

    Materials Science Unit, Division of Oral Biosciences, Dublin Dental University Hospital, Trinity College Dublin, Ireland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Bulk-fill flowable; RBC base materials; Fourier transform infrared; spectroscopy; Biaxial flexure strength; Vickers hardness number;

    机译:批量填充可流动;RBC基础材料;红外傅立叶变换;光谱学双轴弯曲强度;维氏硬度值;
  • 入库时间 2022-08-18 03:47:03

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