Wada Junichiro, Wada Kanae, Gibreel Mona, Wakabayashi Noriyuki, Iwamoto Tsutomu, Vallittu Pekka K, Lassila Lippo
Department of Biomaterials Science, Turku Clinical Biomaterials Centre-TCBC, Institute of Dentistry, University of Turku, Itäinen Pitkäkatu 4B, 20520 Turku, Finland.
Department of Advanced Prosthodontics, Tokyo Medical and Dental University-TMDU, 1-5-45, Yushima, Bunkyo-ku, Tokyo 113-8510, Japan.
Polymers (Basel). 2022 Sep 22;14(19):3971. doi: 10.3390/polym14193971.
Although three-dimensional (3D) printing is clinically convenient to fabricate occlusal splints, it is still unclear how the post-curing method and the printer type can affect 3D-printed splints. This study aimed to evaluate the effect of stroboscopic post-curing at a nitrogen gas (N) atmosphere versus post-curing in an air atmosphere, as well as the printer type (liquid crystal display (LCD) and digital light processing (DLP)) on the mechanical properties of a 3D-printed hard-type occlusal splint material. Flexural strength, flexural modulus, Vickers hardness number (VHN), fracture toughness, degree of double bond conversion (DC), 3D microlayer structure, water sorption, and water solubility were evaluated. The post-curing method significantly affected all evaluated properties except fracture toughness and 3D microlayer structure, while the printer type significantly affected all evaluated properties except flexural strength and flexural modulus. VHN and DC were significantly higher, and the smoother surface was noticeably obtained when printed by LCD printer and post-cured at an N atmosphere. The current results suggested that the post-curing method and the printer type would play a role in the mechanical properties of the evaluated material and that the combination of post-curing at an N atmosphere and LCD printer could enhance its mechanical properties and surface smoothness.
尽管三维(3D)打印在临床上便于制作咬合板,但后固化方法和打印机类型如何影响3D打印的咬合板仍不清楚。本研究旨在评估在氮气(N)气氛中进行频闪后固化与在空气气氛中后固化的效果,以及打印机类型(液晶显示器(LCD)和数字光处理(DLP))对3D打印的硬型咬合板材料力学性能的影响。评估了弯曲强度、弯曲模量、维氏硬度值(VHN)、断裂韧性、双键转化率(DC)、3D微层结构、吸水率和水溶性。后固化方法显著影响除断裂韧性和3D微层结构外的所有评估性能,而打印机类型显著影响除弯曲强度和弯曲模量外的所有评估性能。当使用LCD打印机打印并在N气氛中后固化时,VHN和DC显著更高,并且明显获得了更光滑的表面。目前的结果表明,后固化方法和打印机类型会对评估材料的力学性能产生影响,并且在N气氛中后固化与LCD打印机的组合可以提高其力学性能和表面光滑度。