Zhu Fangyong, Yu Liuping, Hu Meichun, Ding Zhuang, Ma Hong, Feng Xingmei, Gao Yufeng, Cao Yannan
Department of Stomatology, Affiliated Hospital of Jiangnan University, 1000 Hefeng Road, Wuxi, 214000, China.
Department of Stomatology, Affiliated Hospital of Nantong University, Nantong, 226001, China.
Sci Rep. 2025 Mar 15;15(1):9012. doi: 10.1038/s41598-025-90328-1.
The aim of this study was to evaluate the effect of different Angle printing on the model on the printing platform and whether it affects the later transfer accuracy. Ten bracket transfer models were printed on the platform of the 3D printer in four ways: 0° without support rod, 0°, 45° and 90° with support rod. Transfer guide plates for transfer brackets were made using PVS. The linear and angular discrepancies were determined digitally by measuring six different dimensions. The best performance was achieved at 90° with a support bar, with mesiogingival wing center point gap and diogingival wing center point gap of 0.169 and 0.176, respectively (P < 0.05). The linear deviation of groups A and B in the vertical direction was highest (0.285 (P < 0.001) and 0.283 (P < 0.001), respectively) when the transfer guide plate was made by PVS for the transfer bracket, followed by the proximal and distal direction. The best performance was achieved in the Orovestibular. The printing angle of the 3D indirect bonding slot transfer model on the printing platform significantly impacts the transfer accuracy, with the accuracy of the 45° and 90° bracket models having the least impact. A minimum transfer error of 90° since 90° 3D printed bracket transfer models with support rods have the best reliability.
本研究的目的是评估不同角度打印对打印平台上模型的影响,以及其是否会影响后续的转移精度。在3D打印机平台上以四种方式打印了十个托槽转移模型:无支撑杆的0°、有支撑杆的0°、45°和90°。使用聚氯乙烯(PVS)制作用于转移托槽的转移导板。通过测量六个不同维度以数字方式确定线性和角度差异。使用有支撑杆的90°打印时性能最佳,近中龈侧翼中心点间隙和远中龈侧翼中心点间隙分别为0.169和0.176(P < 0.05)。当用PVS制作用于转移托槽的转移导板时,A组和B组在垂直方向的线性偏差最高(分别为0.285(P < 0.001)和0.283(P < 0.001)),其次是近远中方向。在前庭方向性能最佳。3D间接粘结槽转移模型在打印平台上的打印角度对转移精度有显著影响,其中45°和90°托槽模型的精度影响最小。90°的转移误差最小,因为带有支撑杆的90° 3D打印托槽转移模型具有最佳的可靠性。