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打印方向和人工老化对3D打印修复树脂材料弯曲强度和弯曲模量的影响。

Effects of print orientation and artificial aging on the flexural strength and flexural modulus of 3D printed restorative resin materials.

作者信息

Mudhaffer Shaymaa, Haider Julfikar, Satterthwaite Julian, Silikas Nick

机构信息

Division of Dentistry, School of Medical Sciences, University of Manchester, Manchester, England, UK.

Department of Engineering, Manchester Metropolitan University, Manchester, England, UK.

出版信息

J Prosthet Dent. 2025 May;133(5):1345-1357. doi: 10.1016/j.prosdent.2024.08.008. Epub 2024 Oct 4.

Abstract

STATEMENT OF PROBLEM

The integration of computer-aided design and computer-aided manufacture (CAD-CAM) technology has revolutionized restorative dentistry, offering both additive and subtractive manufacturing methods. Despite extensive research on 3-dimensionally (3D) printed materials, uncertainties remain regarding the impact of print orientation on their mechanical properties, especially for definitive resin materials, necessitating further investigation to ensure clinical efficacy.

PURPOSE

The purpose of this in vitro study was to investigate the influence of print orientation and artificial aging on the flexural strength (FS) and flexural modulus (FM) of 3D printed resin materials indicated for definitive and interim restorations.

MATERIAL AND METHODS

Specimens (2×2×25 mm) were additively manufactured in 3 orientations (0, 45, and 90 degrees) using five 3D printed resins: VarseoSmile Crownplus (VCP), Crowntec (CT), Nextdent C&B MFH (ND), Dima C&B temp (DT), and GC temp print (GC). A DLP 3D printer (ASIGA MAX UV) was used with postprocessing parameters as per the manufacturer recommendations. FS and FM were tested after storage in distilled water (DW) and artificial saliva (AS) for 24 hours, 1 month, and 3 months at 37 °C. Additional 2×2×16-mm specimens printed at 90 degrees were compared with the milled materials Lava Ultimate (LU) and Telio CAD (TC) after 24 hours of storage in AS at 37 °C (n=10). Measurements were conducted using a universal testing machine (Z020; Zwick/Roell) following the International Organization for Standardization (ISO) 4049 standard. Multiple way ANOVA, 1-way ANOVA, and Tukey HSD post hoc tests (α=.05) were used to analyze the data.

RESULTS

Print orientation significantly influenced the FS and FM of 3D printed resin materials, with the 90-degree orientation exhibiting superior mechanical properties (P<.05). Definitive resins (CT and VCP) exhibited higher FS and FM compared with interim resins (ND, DT, GC) at all time points (P<.001). LU had significantly higher FS and FM compared with other resins (P<.001), while TC had similar FS to definitive 3D printed resins. Aging time and media influenced FS and FM, with varying effects observed across different materials and time points. Strong positive correlations were found between filler weight and both FS (r=.83, P=.019) and FM. All materials met the minimum FS requirement of 80 MPa (ISO 4049) when printed at 90 degrees.

CONCLUSIONS

The 90-degree orientation produced specimens with higher FS than 0- and 45-degree orientations. CT recommended for definitive restorations displayed higher FS compared with VCP and those intended for interim use after 3 months of aging. LU exhibited higher FS and FM than 3D printed resins, while TC had similar FS and FM to the latter. Aging effects on 3D printed resins were minimal and were material specific.

摘要

问题陈述

计算机辅助设计与计算机辅助制造(CAD-CAM)技术的整合彻底改变了修复牙科,提供了增材制造和减材制造方法。尽管对三维(3D)打印材料进行了广泛研究,但打印方向对其机械性能的影响仍存在不确定性,尤其是对于确定性树脂材料,需要进一步研究以确保临床疗效。

目的

本体外研究的目的是研究打印方向和人工老化对用于确定性和临时修复的3D打印树脂材料的弯曲强度(FS)和弯曲模量(FM)的影响。

材料与方法

使用五种3D打印树脂(VarseoSmile Crownplus(VCP)、Crowntec(CT)、Nextdent C&B MFH(ND)、Dima C&B temp(DT)和GC temp print(GC))以三种方向(0度、45度和90度)增材制造标本(2×2×25毫米)。使用DLP 3D打印机(ASIGA MAX UV),并根据制造商建议设置后处理参数。在37°C下于蒸馏水(DW)和人工唾液(AS)中储存24小时、1个月和3个月后测试FS和FM。将另外以90度打印的2×2×16毫米标本在37°C的AS中储存24小时后与研磨材料Lava Ultimate(LU)和Telio CAD(TC)进行比较(n = 10)。按照国际标准化组织(ISO)4049标准,使用万能试验机(Z020;Zwick/Roell)进行测量。使用多因素方差分析、单因素方差分析和Tukey HSD事后检验(α = 0.05)分析数据。

结果

打印方向显著影响3D打印树脂材料的FS和FM,90度方向表现出优异的机械性能(P < 0.05)。在所有时间点,确定性树脂(CT和VCP)的FS和FM均高于临时树脂(ND、DT、GC)(P < 0.001)。LU的FS和FM显著高于其他树脂(P < 0.001),而TC的FS与确定性3D打印树脂相似。老化时间和介质影响FS和FM,在不同材料和时间点观察到不同的影响。发现填料重量与FS(r = 0.83,P = 0.019)和FM之间存在强正相关。所有材料在以90度打印时均满足80 MPa的最低FS要求(ISO 4049)。

结论

90度方向产生的标本FS高于0度和45度方向。推荐用于确定性修复的CT在老化3个月后显示出比VCP和用于临时修复的树脂更高的FS。LU表现出比3D打印树脂更高的FS和FM,而TC的FS和FM与后者相似。老化对3D打印树脂的影响最小且具有材料特异性。

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