Exploring prosthetic screw rupture in titanium and zirconia superstructures under various conditions.

IF 1.9 4区 医学 Q2 DENTISTRY, ORAL SURGERY & MEDICINE
Myu Hayashi, Yu Kataoka, Yuji Sato, Tokiko Osawa, Kohei Yamashita, Junichi Furuya
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Abstract

The fastening mechanics of prosthetic screws under various conditions is crucial to the maintenance of dental implants. This study comprehensively explores the prosthetic screw rupture in titanium (Ti) and zirconia (ZrO2) superstructures under wet and dry conditions. Superstructures were fabricated using digital technology and subjected to tightening torque trials. Experimental results suggested that the implications of the conventionally recommended torque of 15 N•cm differ significantly between dry and wet environments. Both Ti and ZrO2 exhibited preloads of >30 N•cm under dry conditions; however, differences emerged under wet conditions. In addition, screw rupture posed a prominent clinical challenge -particularly during long-term cyclic loading. Notably, the ZrO2 superstructures exhibited a greater resistance to breaking torque than that of Ti. This study underscores the importance of reevaluating torque recommendations with consideration to the distinct characteristics of Ti and ZrO2 in diverse environments.
探索各种条件下钛和氧化锆上部结构中修复螺钉的断裂情况。
修复螺钉在各种条件下的紧固力学对牙科植入物的维护至关重要。本研究全面探讨了钛 (Ti) 和氧化锆 (ZrO2) 上部结构在潮湿和干燥条件下的修复螺钉断裂情况。使用数字技术制作了上部结构,并对其进行了拧紧扭矩试验。实验结果表明,传统推荐的 15 N-cm 扭矩在干燥和潮湿环境下的影响差别很大。在干燥条件下,钛和氧化锆的预紧力均大于 30 牛米;但在潮湿条件下,两者的预紧力出现了差异。此外,螺钉断裂也是一个突出的临床难题--尤其是在长期循环加载时。值得注意的是,与钛相比,ZrO2 上部结构表现出更强的抗断裂扭矩能力。这项研究强调了根据钛和氧化锆在不同环境中的不同特性重新评估扭矩建议的重要性。
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
Dental materials journal
Dental materials journal 医学-材料科学:生物材料
CiteScore
4.60
自引率
4.00%
发文量
102
审稿时长
3 months
期刊介绍: Dental Materials Journal is a peer review journal published by the Japanese Society for Dental Materials and Devises aiming to introduce the progress of the basic and applied sciences in dental materials and biomaterials. The dental materials-related clinical science and instrumental technologies are also within the scope of this journal. The materials dealt include synthetic polymers, ceramics, metals and tissue-derived biomaterials. Forefront dental materials and biomaterials used in developing filed, such as tissue engineering, bioengineering and artificial intelligence, are positively considered for the review as well. Recent acceptance rate of the submitted manuscript in the journal is around 30%.
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