Aging and post-polymerization effects on conversion degree and properties of additive splint materials.

IF 1.5 4区 医学 Q3 DENTISTRY, ORAL SURGERY & MEDICINE
Brazilian oral research Pub Date : 2025-02-07 eCollection Date: 2025-01-01 DOI:10.1590/1807-3107bor-2025.vol39.017
Leandro Ruivo de Santis, Lucas Silveira Fernandes, Mayra Torres Vasques, Nataly Rabelo Mina Zambrana, Ítallo Emídio Lira Viana, Taís Scaramucci Forlin, Guilherme de Siqueira Ferreira Anzaloni Saavedra, Carlos Eduardo Francci
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Abstract

The study objective was to analyze dimensional change, flexural strength, surface hardness, wear profile, and conversion degree of different additive splint materials under various post-polymerization conditions of time and artificial aging. Two additive manufacturing systems (Cara Print 4.0, Dima Print Ortho, Kulzer; SprintRay Pro, SprintRay Splint, SprintRay), and a thermally activated resin control (Clássico) were evaluated in artificial aging (deionized water or saliva; 28 or 84 days at 37°C), with recommended or doubled post-polymerization cycles. Dimensional change (surface metrology), flexural strength (ISO 20795-1:2013), fractography (SEM), Knoop hardness, two-body wear profilometry (150,000 cycles; 3mmØ; 20N; 2.1Hz), and conversion degree (FTIR spectroscopy) were assessed. Two-way ANOVA and post-hoc Tukey tests were used for parametric data, and Kruskal-Wallis and post-hoc Dunn tests, for non-parametric data (α = 0.05). Results indicated no statistically significant differences in dimensional change or flexural strength among the materials. Recommended post-polymerization cycles resulted in lower hardness for additive resins than the thermally activated control. Doubling post-polymerization time significantly increased flexural strength and hardness of Dima Print Ortho, but decreased flexural strength of SprintRay Splint, and did not affect wear resistance. Dima Print Ortho demonstrated the highest wear resistance. Artificial aging did not affect flexural strength, surface wear, or dimensional change, but negatively impacted the hardness of all materials except Dima Print Ortho. The conversion degree was unaffected by post-polymerization time, and no significant differences were found among the materials. Overall, additive materials exhibited mechanical and dimensional properties comparable to thermally activated resin, with doubling post-polymerization time positively influencing the properties.

老化和聚合后对添加剂夹板材料转化率和性能的影响。
研究目的是分析不同添加剂夹板材料在不同聚合后时间和人工老化条件下的尺寸变化、抗弯强度、表面硬度、磨损分布和转化程度。两个增材制造系统(Cara Print 4.0, Dima Print Ortho, Kulzer;SprintRay Pro, SprintRay Splint, SprintRay)和热活化树脂对照(Clássico)在人工老化(去离子水或唾液;28或84天,37°C),推荐或加倍聚合后循环。尺寸变化(表面测量),抗弯强度(ISO 20795-1:2013),断口学(SEM),努氏硬度,两体磨损轮廓测量(150000次循环;Ø约3毫米;20 n;2.1Hz),并评估转换程度(FTIR光谱)。参数数据采用双因素方差分析和事后Tukey检验,非参数数据采用Kruskal-Wallis检验和事后Dunn检验(α = 0.05)。结果表明,不同材料的尺寸变化和抗弯强度没有统计学上的显著差异。推荐的聚合后循环导致添加剂树脂的硬度低于热激活对照。聚合后时间加倍可显著提高Dima Print Ortho的抗弯强度和硬度,但SprintRay Splint的抗弯强度降低,且不影响耐磨性。Dima Print Ortho表现出最高的耐磨性。人工老化对抗弯强度、表面磨损和尺寸变化没有影响,但对除Dima Print Ortho外的所有材料的硬度都有负面影响。聚合后的转化率不受聚合后时间的影响,不同材料间的转化率无显著差异。总体而言,添加剂材料表现出与热活化树脂相当的机械和尺寸性能,聚合后时间加倍对性能有积极影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
3.70
自引率
4.00%
发文量
107
审稿时长
12 weeks
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