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Does Printing Orientation Matter? In-Vitro Fracture Strength of Temporary Fixed Dental Prostheses after a 1-Year Simulation in the Artificial Mouth

机译:印刷方向是否物质?在人造口中1年仿真后临时固定牙科假体的体外断裂强度

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摘要

Computer-aided design and computer-aided manufacturing (CAD–CAM) enable subtractive or additive fabrication of temporary fixed dental prostheses (FDPs). The present in-vitro study aimed to compare the fracture resistance of both milled and additive manufactured three-unit FDPs and bar-shaped, ISO-conform specimens. Polymethylmethacrylate was used for subtractive manufacturing and a light-curing resin for additive manufacturing. Three (bars) and four (FDPs) different printing orientations were evaluated. All bars (n = 32) were subjected to a three-point bending test after 24 h of water storage. Half of the 80 FDPs were dynamically loaded (250,000 cycles, 98 N) with simultaneous hydrothermal cycling. Non-aged (n = 40) and surviving FDPs (n = 11) were subjected to static loading until fracture. Regarding the bar-shaped specimens, the milled group showed the highest flexural strength (114 ± 10 MPa, p = 0.001), followed by the vertically printed group (97 ± 10 MPa, p < 0.007). Subtractive manufactured FDPs revealed the highest fracture strength (1060 ± 89 N) with all specimens surviving dynamic loading. During artificial aging, 29 of 32 printed specimens failed. The present findings indicate that both printing orientation and aging affect the strength of additive manufactured specimens. The used resin and settings cannot be recommended for additive manufacturing of long-term temporary three-unit FDPs.
机译:计算机辅助设计和计算机辅助制造(CAD-CAM)使得临时固定牙科假肢(FDP)的减法或添加剂制造。目前的体外研究旨在比较研磨和添加剂制造的三单元FDP和杆状,依形符合样品的裂缝性。聚甲基甲基丙烯酸酯用于减量制造和用于添加剂制造的光固化树脂。评估三(条)和四(FDP)不同的打印方向。在储水24小时后,所有条形(n = 32)都经过三分弯曲试验。 80个FDP的一半被动态地装载(250,000个循环,98N),同时水热循环。非老化(n = 40)和存活的fdps(n = 11)进行静载荷直至骨折。关于条形标本,研磨基团显示出最高的弯曲强度(114±10MPa,P = 0.001),其次是垂直印刷组(97±10MPa,P <0.007)。减肥制造的FDP揭示了最高的断裂强度(1060±89 n),所有样品存活动态载荷。在人工老龄化期间,32个印刷样品中的29个失败。本发现表明,印刷取向和老化既会影响添加剂制造标本的强度。不推荐使用过的树脂和设置,用于长期临时三单元FDP的加性制造。

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