Dipartimento di Scienze Biomediche, Chirurgiche e Odontoiatriche, Università degli Studi di Milano, Milano, Italy.
Biart s.n.c., Galbiate (LC), Italy.
Clin Exp Dent Res. 2022 Jun;8(3):715-720. doi: 10.1002/cre2.568. Epub 2022 Apr 19.
Despite a large amount of materials and methods to make an implant-supported denture, nowadays there is no gold standard. Every solution has pros and cons that guide the clinician and the technician to choose the best solution for a single case. The aim of this study was to evaluate the mechanical characteristics of the fiber-reinforced composite superstructure made by using a novel three-dimensional (3D) printing technology able to create a reinforcing structure patient-specific, more reliable, structurally optimized, and faster than conventional methods.
To evaluate mechanical performances of 3D-printed fiberglass, mechanical characterization of 3D-printed material was performed. Before proceeding with the realization of the final prosthesis, five specimens were created on which the tensile test and volumetric fiber content measurement were performed. Then denture reinforcement 3D printing process began. Initially, the robot prints layers of fiber. Finally, the obtained 3D-printed reinforcement structure was finalized in the lab.
The prosthesis obtained through this process was lighter than a traditional prosthesis, there was a greater chemical adhesion between resin and 3D-printed reinforcement structure and a better result was obtained from an esthetic point of view.
The outcomes we obtained endorse its performance both mechanical and esthetic. The entire process is automatic and does not require human operation thanks to specific software programming.
尽管有大量的材料和方法可以制作种植体支持的义齿,但目前还没有金标准。每种解决方案都有优缺点,指导临床医生和技术人员为单个病例选择最佳解决方案。本研究的目的是评估使用新型三维(3D)打印技术制造的纤维增强复合材料修复体的机械特性,该技术能够为患者创建特定的增强结构,比传统方法更可靠、结构更优化、制造速度更快。
为了评估 3D 打印玻璃纤维的机械性能,对 3D 打印材料进行了机械特性评估。在进行最终修复体的制作之前,制作了五个试件,对其进行了拉伸试验和体积纤维含量测量。然后开始进行义齿增强 3D 打印。首先,机器人打印纤维层。最后,在实验室中对获得的 3D 打印增强结构进行最终处理。
通过该过程获得的修复体比传统修复体更轻,树脂与 3D 打印增强结构之间的化学附着力更强,从美观的角度来看,效果更好。
我们获得的结果在机械和美观方面都证明了其性能。整个过程是自动的,不需要人工操作,这要归功于特定的软件编程。