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经各种打印后处理前后,由硫酸钙三维打印的正畸模型的准确性和力学性能。

Accuracy and mechanical properties of orthodontic models printed 3-dimensionally from calcium sulfate before and after various postprinting treatments.

作者信息

Ledingham Austin D, English Jeryl D, Akyalcin Sercan, Cozad Benjamin E, Ontiveros Joe C, Kasper F Kurtis

机构信息

Resident, Department of Orthodontics, School of Dentistry, University of Texas Health Science Center, Houston, Tex.

Professor and chair, Department of Orthodontics, School of Dentistry, University of Texas Health Science Center, Houston, Tex.

出版信息

Am J Orthod Dentofacial Orthop. 2016 Dec;150(6):1056-1062. doi: 10.1016/j.ajodo.2016.04.027.

Abstract

INTRODUCTION

Dental models fabricated with 3-dimensional printing technologies are revolutionizing the practice of orthodontics, but they generally comprise polymeric materials that may not be suitable for certain applications, such as soldering appliances. The objective of this study was to investigate the dimensional accuracy and mechanical properties of 3-dimensional printed ceramic-based models before and after various treatments intended to improve their mechanical properties.

METHODS

Thirty identical models were printed 3-dimensionally from a calcium sulfate-based substrate and divided into 3 groups for treatment: high heat (250°C for 30 minutes), low heat (150°C for 30 minutes), and Epsom salt treatment. Each model was scanned before and after treatment with a laser scanner, and dimensional stability was analyzed by digital superimpositions using a best-fit algorithm. The models were weighed before and after treatment to evaluate mass changes. Additionally, 3-dimensional printed cylinders treated as described above and an untreated control group were subjected to compressive mechanical testing (n = 11 per group).

RESULTS

The Epsom salt treatment group had statistically significant increases in both peak compressive stress and modulus of elasticity when compared with the other treatment groups. All treatment groups had statistically significant changes in mass, with the Epsom salt group gaining mass and the 2 heat-treatment groups losing mass. The low-temperature treatment group had a statistically significantly lower mean average for dimensional deviations (0.026 ± 0.010 mm) than did the other treatment groups (0.069 ± 0.006 and 0.059 ± 0.010 mm for high temperature and Epsom salt, respectively).

CONCLUSIONS

Dental models printed 3-dimensionally with calcium sulfate and treated with Epsom salt showed significant improvement in compressive mechanical properties and retained clinically acceptable dimensional stability.

摘要

引言

采用三维打印技术制作的牙科模型正在彻底改变正畸治疗的实践,但它们通常由聚合物材料制成,可能不适用于某些应用,例如焊接矫治器。本研究的目的是调查三维打印的陶瓷基模型在进行各种旨在改善其机械性能的处理前后的尺寸精度和机械性能。

方法

从硫酸钙基基材三维打印30个相同的模型,并分为3组进行处理:高温(250°C 30分钟)、低温(150°C 30分钟)和硫酸镁处理。每个模型在处理前后用激光扫描仪进行扫描,并使用最佳拟合算法通过数字叠加分析尺寸稳定性。在处理前后对模型称重以评估质量变化。此外,对如上所述处理的三维打印圆柱体和未处理的对照组进行压缩力学测试(每组n = 11)。

结果

与其他处理组相比,硫酸镁处理组的峰值压缩应力和弹性模量均有统计学上的显著增加。所有处理组的质量均有统计学上的显著变化,硫酸镁组质量增加,两个热处理组质量减少。低温处理组的尺寸偏差平均平均值(0.026±0.010毫米)在统计学上显著低于其他处理组(高温组和硫酸镁组分别为0.069±0.006和0.059±0.010毫米)。

结论

用硫酸钙三维打印并经硫酸镁处理的牙科模型在压缩力学性能方面有显著改善,并保持了临床上可接受的尺寸稳定性。

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