A Novel 3-Dimensional Printed Nanoceramic Hybrid Resin Fixed Lingual Retainer: Characterization and Mechanical Tests.

IF 1.9 Q2 DENTISTRY, ORAL SURGERY & MEDICINE International Journal of Dentistry Pub Date : 2024-10-15 eCollection Date: 2024-01-01 DOI:10.1155/2024/3540846
Noor Salam Alnuaimy, Akram Faisal Alhuwaizi
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Abstract

Introduction: An innovative retention protocol was developed to create a new 3D-printed fixed retainer employing SprintRay OnX nanoceramic hybrid resin. The feasibility and usability of the retainer were subsequently evaluated. Methods: Identification and characterization of SprintRay OnX was done using Fourier transform infrared spectroscopy (FTIR), scanning electron microscopy with energy dispersive X-ray (SEM-EDX), field emission scanning electron microscope (FE-SEM), X-ray diffraction (XRD), and flexural strength. Load-deflection and pull-out tests were conducted on the 3D-printed straight wires, with three distinct cross-sectional geometries: round (1 mm), oval (1 mm × 1.5 mm) and semielliptical (1 mm × 1.5 mm). Twisted G&H and coaxial Respond stainless steel multistrand retainers were used for comparison. In the load-deflection test, a three-point bending test (3PBT) was employed. For the pull-out test, the retainer wire was inserted into the composite, which was placed in a centrally located hole of an acrylic block; the retainer wire was subjected to a tensile force along its long axis. Results: Characteristic bands close to those of PMMA were observed in the FTIR spectra. SEM-EDX and XRD revealed a crystalline material with homogeneously distributed Yb element signals (19.4%). On FE-SEM micrographs, small clumps were displayed on smooth surfaces. The flexural strength and the flexural modulus were, respectively, 142.48 MPa and 7.842 GPa. All groups of 3D-printed wires exhibited significantly higher load-deflection levels than the multistrand wires (MSWs). Concerning pull-out forces, they fell in between twisted G&H (96 N) and coaxial Respond (48.09 N) retainer wires. The 3D-printed wires fractured cohesively without detachment from the adhesive, suggesting that the chemical bond was adequate for satisfactory wire integration, yet the wire's strength was compromised. Concerning the cross-sectional geometry, the load-deflection and the pull-out forces of 3D-printed oval and semielliptical wires were significantly higher than that of 3D-printed round wires, which was attributed to the larger cross-sections of the wires. Conclusion: Oval and semielliptical 3D-printed wires offered favorable features as lingual retainers.

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新型三维打印纳米陶瓷混合树脂固定舌侧固位体:表征和机械测试
简介:我们开发了一种创新的固位程序,利用SprintRay OnX纳米陶瓷混合树脂制作了一种新的三维打印固定固位体。随后对该固位体的可行性和可用性进行了评估。方法:使用傅立叶变换红外光谱(FTIR)、扫描电子显微镜与能量色散 X 射线(SEM-EDX)、场发射扫描电子显微镜(FE-SEM)、X 射线衍射(XRD)和抗弯强度对 SprintRay OnX 进行了鉴定和表征。对三维打印的直丝进行了载荷-挠度和拉出试验,直丝有三种截面几何形状:圆形(1 毫米)、椭圆形(1 毫米 × 1.5 毫米)和半椭圆形(1 毫米 × 1.5 毫米)。扭转 G&H 和同轴 Respond 不锈钢多股保持架用于比较。在载荷-挠度试验中,采用了三点弯曲试验(3PBT)。在拉出试验中,将保持架钢丝插入复合材料中,复合材料被置于丙烯酸块的中心孔中;保持架钢丝沿其长轴受到拉力。结果显示在傅立叶变换红外光谱中观察到与 PMMA 接近的特征带。SEM-EDX 和 XRD 显示了一种晶体材料,其中掺有均匀分布的镱元素信号(19.4%)。在 FE-SEM 显微照片上,光滑的表面上显示出小团块。弯曲强度和弯曲模量分别为 142.48 MPa 和 7.842 GPa。与多股线(MSW)相比,所有组的三维打印线材都表现出明显更高的负载-挠度水平。在拔出力方面,它们介于扭曲 G&H (96 N)和同轴 Respond(48.09 N)保持导线之间。三维打印的金属丝在没有脱离粘合剂的情况下发生内聚断裂,这表明化学键足以实现令人满意的金属丝整合,但金属丝的强度受到了影响。在横截面几何形状方面,三维打印椭圆形和半椭圆形钢丝的载荷-挠度和拔出力明显高于三维打印圆形钢丝,这是因为钢丝的横截面较大。结论椭圆形和半椭圆形三维打印钢丝作为舌侧固位体具有良好的特性。
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来源期刊
International Journal of Dentistry
International Journal of Dentistry DENTISTRY, ORAL SURGERY & MEDICINE-
CiteScore
3.30
自引率
4.80%
发文量
219
审稿时长
20 weeks
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