Optimization of the dimension of computer numerical control–milled polyetheretherketone clasps: An in vitro evaluation of accuracy

IF 4.3 2区 医学 Q1 DENTISTRY, ORAL SURGERY & MEDICINE
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引用次数: 0

Abstract

Statement of problem

The accuracy and optimal dimensions of computer numerical control (CNC)-milled polyetheretherketone (PEEK) removable partial denture (RPD) clasps are unclear.

Purpose

The purpose of this in vitro study was to investigate the trueness and precision of CNC-milled PEEK clasps with different thicknesses and lengths.

Material and methods

Ladder-shaped specimens of 2 thicknesses with 5 lengths of clasps were designed and milled with PEEK and commercially pure titanium (CP Ti) (n=6). All milled specimens were scanned and superimposed onto the design data. Three-dimensional and 2-dimensional deviation analyses were carried out to evaluate the trueness of milled PEEK clasps. The scanning data of each group were superimposed pairwise, and the 3-dimensional deviations were analyzed to evaluate the precision. Nonparametric tests, ANOVA, the Pearson correlation, and univariate linear regression were used for statistical analysis (α=.05).

Results

The deviation of trueness of the PEEK clasps (0.047 to 0.164 mm) was higher than that of the CP Ti clasps (0.037 to 0.060 mm) (P<.001). Increasing the length of the clasps increased the deviations (P<.001). Deviation in the 2 thicknesses was not significantly different (P=.210). The correlation coefficients of 1.0-mm-thick and 1.5-mm-thick PEEK and CP Ti clasps were 0.843, 0.794, 0.638, and 0.405. The positive correlation coefficients of PEEK were higher than those of CP Ti and those of 1.0-mm-thick clasps was higher than those of 1.5-mm-thick clasps. The deviations were evenly distributed in the 9-mm length of the clasp for CP Ti and in the 6-mm length of the clasp for PEEK. Beyond these lengths, deviations increased with increased length. The increasing amplitude of CP Ti was smaller than that of the PEEK group, and that of the 1.5-mm-thick clasp was smaller than that of the1.0-mm-thick clasp. The measured range of precision of PEEK clasps was 0.079 to 0.152 mm, while that of CP Ti clasps was 0.036 to 0.096 mm. CP Ti clasps tended to have better precision than PEEK clasps, except for the 1.0-mm-thick clasps with a length greater than 9 mm and the 1.5-mm-thick clasp with a 12-mm length. The correlation of the clasp length with precision showed that the lengths of 1.0-mm-thick clasps strongly influenced precision (PEEK, P=.020; CP Ti, P<.001); this correlation decreased sharply when the thickness of clasps was 1.5 mm (PEEK, P=.199; CP Ti, P=.107).

Conclusions

Greater elasticity increased the deviations of milled clasps. The increased thickness helped the clasp remain stable during the milling process. The 1.5-mm-thick PEEK clasps in the 3-mm and 6-mm lengths were the optimal design tested.
优化计算机数控铣制聚醚醚酮扣的尺寸:体外精度评估。
问题陈述:计算机数控(CNC)铣削的聚醚醚酮(PEEK)可摘局部义齿(RPD)卡环的精度和最佳尺寸尚不清楚。目的:本体外研究的目的是调查不同厚度和长度的 CNC 铣削 PEEK 卡环的真实度和精度:材料和方法:设计了 2 种厚度、5 种长度的梯形试样,并用 PEEK 和市售纯钛(CP Ti)进行了铣削(n=6)。对所有铣制的试样进行扫描并叠加到设计数据上。进行了三维和二维偏差分析,以评估铣制 PEEK 扣件的真实性。对每组的扫描数据进行成对叠加,分析三维偏差以评估精度。统计分析采用非参数检验、方差分析、皮尔逊相关和单变量线性回归(α=.05):结果:PEEK 扣环的真实度偏差(0.047 至 0.164 毫米)高于 CP Ti 扣环的真实度偏差(0.037 至 0.060 毫米):更大的弹性增加了铣削扣的偏差。厚度的增加有助于在铣削过程中保持扣环的稳定。厚度为 1.5 毫米、长度为 3 毫米和 6 毫米的 PEEK 扣是测试的最佳设计。
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来源期刊
Journal of Prosthetic Dentistry
Journal of Prosthetic Dentistry 医学-牙科与口腔外科
CiteScore
7.00
自引率
13.00%
发文量
599
审稿时长
69 days
期刊介绍: The Journal of Prosthetic Dentistry is the leading professional journal devoted exclusively to prosthetic and restorative dentistry. The Journal is the official publication for 24 leading U.S. international prosthodontic organizations. The monthly publication features timely, original peer-reviewed articles on the newest techniques, dental materials, and research findings. The Journal serves prosthodontists and dentists in advanced practice, and features color photos that illustrate many step-by-step procedures. The Journal of Prosthetic Dentistry is included in Index Medicus and CINAHL.
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