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Effects of post-curing conditions on mechanical properties of 3D printed clear dental aligners

机译:固化后固化条件对3D印刷牙齿对齐器力学性能的影响

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Purpose 3D printing techniques have been widely used for manufacturing complex parts for various dental applications. For achieving suitable mechanical strength, post-cure processing is necessary, where the relative time duration and temperature specification also needs to be defined. The purpose of this study/paper is to assess the effects of post curing conditions and mechanical properties of 3D printed clear dental aligners Design/methodology/approach Dental long-term clear resin material has been used for 3D printing of dental aligners using a Formlabs 3D printer for direct usage on patients. Post-curing conditions have been varied, all of which have been subjected to mechanical compression loading of 1,000 N to evaluate the curing effects on the mechanical strength of the aligners. Findings The experimental studies provide significant insight into both temperatures and time durations that could provide sufficient compressive mechanical strength to the 3D printed clear dental aligners. It was observed that uncured aligners deformed plastically with large deformations under the loading conditions, whereas aligners cured between 400 degrees C-800 degrees C for 15-20 min deformed elastically before fragmenting into pieces after safely sustaining higher compressive loads between 495 N and 666 N. The compressive modulus ratio for cured aligners ranged between 4.46 and 5.90 as compared to uncured aligners. For shorter cure time durations and lower temperature conditions, an appropriate elevated compressive strength was also achieved. Originality/value Based on initial assessments by dental surgeons, suitable customised clear aligners can be designed, printed and cured to the desired levels based on patient's requirements. This could result in time, energy and unit production cost savings, which ultimately would help to alleviate the financial burden placed on both the health service and their patients.
机译:目的3D打印技术已广泛用于制造各种牙科应用的复杂部件。为了实现合适的机械强度,需要后固化处理,其中还需要定义相对持续时间和温度规格。本研究/纸张的目的是评估3D印刷清晰牙齿对准器的固化条件和机械性能的影响设计/方法/方法牙科长期清晰树脂材料已被用于使用Formlabs 3D的牙齿对齐器的3D打印用于直接使用患者的打印机。固化后的条件已经变化,所有这些都经受了1,000n的机械压缩负载,以评估对对子机的机械强度的固化效应。结果实验研究提供了对温度和时间持续时间的显着洞察,这些温度和时间持续时间可以为3D印刷的透明牙齿对准器提供足够的压缩机械强度。观察到,在负载条件下,未固化的对齐在塑性变形,而在负载条件下,在400℃和666 n之间的较高压缩载荷后,在400℃-800℃下固化15-20分钟的对准器在495 n和666 n之间的较高压缩载荷后,在400℃-800℃下固化15-20分钟。 。与未固化的对准器​​相比,固化对准器的压缩模量比范围为4.46和5.90。对于较短的固化时间持续时间和更低的温度条件,还实现了适当的抗压强度。基于牙科外科医生的初始评估的创意/值,可以根据患者的要求设计,印刷和固化合适的定制清晰的对准器。这可能会导致时间,能源和单位生产成本节省,最终有助于缓解卫生服务和患者的金融负担。

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