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Comparative Analysis of the Chemical Composition and Microstructure Conformation Between Different Dental Implant Bone Drills

机译:不同种植牙义齿的化学成分和微观结构对比分析

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摘要

Background: Hardness is considered an important parameter for evaluating the clinical performance of dental implant bone drills. It is connected to the chemical composition, microstructure conformation and manufacture of the surgical drills. Methods: Microstructure of five dental implant drills using scanning electronic microscopy (SEM) integrated with energy dispersive X-ray spectrometry. Vickers microhardness was measured using a CV 2000 microhardness tester with an indentation force of 500 g. Results: Composition of the implant drills was typical of martensitic stainless steel (MSS). The drills contained 13%–17% of Cr; Mo, Si and Mn were present as minor ligands. The examined bone drills showed different external surface conformation and hardness in relation to the different industrial production processes. A rougher external surface and a higher hardness value are characteristics of the surgical bone drills produced by hot forming; the implant drills produced by machining showed mailing lines on their external surface and a lower hardness. Conclusions: Different compositions and treatments were used by the manufacturers to improve the hardness of the external layer of the dental implant drills making them prone to a diverse heat generation during the implant site preparation.
机译:背景:硬度被认为是评估牙种植体钻头临床性能的重要参数。它与手术钻的化学成分,微观结构和制造有关。方法:使用集成了能量色散X射线光谱仪的扫描电子显微镜(SEM)对五个牙科植入钻的显微结构进行分析。使用CV 2000显微硬度测试仪以500g的压入力测量维氏显微硬度。结果:植入钻的成分是马氏体不锈钢(MSS)的典型特征。钻头中含有13%–17%的Cr。 Mo,Si和Mn作为次要配体存在。所检查的骨钻相对于不同的工业生产过程显示出不同的外表面构造和硬度。热成型生产的外科用骨钻的特征是更粗糙的外表面和更高的硬度值。通过机械加工生产的植入钻在其外表面上显示出邮件线,并且硬度较低。结论:制造商使用了不同的成分和处理方法来改善牙种植钻外层的硬度,使其在种植部位准备期间易于产生多种热量。

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