Impact of repeated activation on the heat output of electric pluggers

Anthony G. Fioretti DDS, MS , Andrew D. Henning DMD, MS , Susan E. Hinman DDS, MS , Rodney V. Scott DDS, MS , Nancy H. Osborne DDS, MS , Nicholas J. Hamlin PhD, DDS, MS
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引用次数: 0

Abstract

Background

Electric pluggers that output accurate and reliable heat are required to thermoplasticize gutta-percha for endodontic obturation. This study aimed to evaluate the accuracy and reliability of heat output by Buchanan electronic pluggers (Kerr Endodontics) after repeated activation cycles.

Methods

The Elements Obturation Unit (Kerr Endodontics) was operated in downpack mode according to the manufacturer’s recommendations with a temperature of 200 °C and automatic cutoff after 4 seconds of continuous activation. Fifteen Buchanan Heat Pluggers were tested: 5 of each of sizes extra fine (XF) (0.04 taper), fine (F) (0.06 taper), and fine medium (FM) (0.08 taper). Pluggers were allowed to cool for 5 to 10 seconds between activations and were activated 25 times per day for 80 days, totaling 2,000 activations per plugger. A thermocouple and an electronic data logger were used to record a single peak temperature for each plugger at the final activation of each day.

Results

There was no degradation in heat generation across 2,000 activations for any of the plugger sizes. Heat output for XF (0.04 taper) pluggers was significantly lower than for F (0.06 taper) and FM (0.08 taper) pluggers. Three of the 5 XF pluggers lost functionality before reaching 2,000 activations.

Conclusions

The heat output for F (0.06 taper) and FM (0.08 taper) pluggers was close to expected (temperatures) and did not degrade over 2,000 activations. All plugger sizes showed high variance in heat output. XF (0.04 taper) pluggers may be prone to lower temperature output than larger plugger sizes and prone to failure before 2,000 activations.

Abstract Image

反复激活对电插头热量输出的影响
背景需要输出准确可靠热量的电动充填器来热塑牙胶以进行牙髓充填。本研究旨在评估 Buchanan 电子充填器(Kerr Endodontics)在重复激活循环后输出热量的准确性和可靠性。方法 Elements Obturation Unit(Kerr Endodontics)按照制造商的建议在下压模式下运行,温度为 200 °C,连续激活 4 秒后自动切断。测试了 15 个布坎南热敏充填器:超细(XF)(0.04 锥度)、细(F)(0.06 锥度)和细中(FM)(0.08 锥度)各 5 个。塞子在两次激活之间冷却 5 至 10 秒,每天激活 25 次,持续 80 天,每个塞子共激活 2,000 次。使用热电偶和电子数据记录器记录每个塞子在每天最后一次激活时的单个峰值温度。XF(0.04 锥度)塞子的发热量明显低于 F(0.06 锥度)和 FM(0.08 锥度)塞子。结论 F(0.06 锥度)和 FM(0.08 锥度)塞子的热输出接近预期(温度),并且在激活 2,000 次后没有退化。所有尺寸的塞子在热输出方面都有很大差异。与较大尺寸的塞尺相比,XF(0.04 锥度)塞尺的输出温度可能较低,而且容易在激活 2,000 次之前失效。
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
JADA foundational science
JADA foundational science Dentistry, Oral Surgery and Medicine
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