Taczała-Warga Joanna, Sawicki Jacek, Krasowski Michał, Sokołowski Jerzy
Institute of Materials Science and Engineering, Lodz University of Technology, Stefanowskiego 1/15, 90-924 Lodz, Poland.
University Laboratory of Material Research, Medical University of Lodz, Pomorska 251, 92-213 Lodz, Poland.
J Funct Biomater. 2022 Oct 10;13(4):183. doi: 10.3390/jfb13040183.
Patients who require dental prosthetic restoration using frame dentures in the front part of the mouth very frequently report that teeth fall out of their dentures. However, the available scientific papers are insufficient to compare the various methods of improving the connection between the denture base and the artificial tooth and choosing the best solution. This paper focuses on providing all parameters, enabling the reproduction of tests, and accounting for all variables. The paper uses an original method of creating grooves, sandpaper, sandblasting, and cutting the acrylate layer with a burr in one and two directions. Developed surfaces were additionally subjected to detailed examination. This study used 180 specimens divided into three groups and subjected to various environments (dry, artificial saliva, and thermocycles). Shearing and tensile strength tests were performed. The best results were obtained with a carbide burr. The increase in connection durability was as follows in the case of the shear test: 116.47% in dry samples, 155.38% in samples soaked in artificial saliva, and 46.59% in samples after thermocycles. The increase in tensile resistance was: 198.96% in a dry environment, 88.10% before being soaked in artificial saliva, and 94.04% after thermocycles.
需要在前牙使用支架式假牙进行牙齿修复的患者经常报告假牙中的牙齿脱落。然而,现有的科学文献不足以比较改善假牙基托与人工牙之间连接的各种方法并选择最佳解决方案。本文着重提供所有参数,以便能够重现测试并考虑所有变量。本文采用了一种原始方法,即在丙烯酸酯层上沿一个和两个方向制作凹槽、砂纸打磨、喷砂以及用毛刺切割。对处理后的表面还进行了详细检查。本研究使用了180个样本,分为三组,并置于不同环境(干燥、人工唾液和热循环)中。进行了剪切和拉伸强度测试。使用硬质合金毛刺获得了最佳结果。在剪切测试中,连接耐久性的增加情况如下:干燥样本中为116.47%,浸泡在人工唾液中的样本中为155.38%,热循环后的样本中为46.59%。拉伸抗力的增加情况为:干燥环境中为198.96%,浸泡在人工唾液前为88.10%,热循环后为94.04%。