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Surface Characteristics of Milled and 3D Printed Denture Base Materials Following Polishing and Coating: An In-Vitro Study

机译:研磨和涂层后研磨和3D印刷义齿基材的表面特性:体外研究

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摘要

(1) Background: To date, no information on the polishability of milled and 3D-printed complete denture bases has been provided, which is relevant in terms of plaque accumulation. (2) Methods: three groups ( = 30) were manufactured using the cold-polymerization polymethilmethacrilate, milling (SM) and 3D printing (AM). 10 specimens of each group were left untreated (reference). 10 more specimens were pre-polished (intermediate polishing) and 10 final specimens were highgloss polished. An additional 20 specimens were 3D printed and coated with the liquid resin (coated), 10 of which were additionally polished (coated + polished). For each group R and R values, gloss value and REM images were obtained. (3). The “highgloss-polished” specimens showed statistically lower R and R values in the SM, followed by AM and conventional groups. In the AM group statistically lower surfaces roughness was revealed for highgloss-polished, “coated + polished”, and “coated” specimens, respectively. (4) Conclusions: The milled specimens demonstrated superiors surface characteristics than 3D printed and conventionally produced after polishing. The polished specimens demonstrated superior surface characteristics over coated specimens. However, the surface roughness by both polished and coated specimens was within the clinically relevant threshold of 0.2 µm.
机译:(1)背景:迄今为止,还提供了有关研磨和3D印刷完整义齿基地的抛光性的信息,这在斑块积累方面是相关的。 (2)方法:使用冷聚合聚合甲基丙酸,研磨(SM)和3D印刷(AM)制造三组(= 30)。每组10个标本未经处理(参考)。预先抛光10种样品(中间抛光),10个最终标本抛光。另外的20个样本是印刷的3D,涂有液体树脂(涂覆),其中10,其中另外抛光(涂覆+抛光)。对于每个组R和R值,获得了光泽值和REM图像。 (3)。 “抛光”标本在SM中显示出统计上较低的R和R值,然后是AM和常规组。在AM组中,统计下较低的表面粗糙度分别显示出粗糙的,“涂覆的+抛光”和“涂覆的”样品。 (4)结论:碾磨标本展示了超级表面特性,比抛光后的3D和常规生产。抛光标本表现出涂层标本的优异表面特性。然而,通过抛光和涂覆的标本的表面粗糙度在临床相关的阈值范围内为0.2μm。

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