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一种新研发的具有高耐磨性的电沉积金刚石洁治器。

A newly-developed electrodeposited diamond scaler with high abrasive resistance.

作者信息

Fujimura T, Kaya H, Kimura S

机构信息

Department of Endodontics and Periodontics, Fukuoka Dental College, Japan.

出版信息

J Periodontol. 1995 Oct;66(10):878-86. doi: 10.1902/jop.1995.66.10.878.

Abstract

A diamond scaler on which blade diamond particles were coated by electrodeposition was developed to improve the abrasive resistance of scaler blades. The electrodeposited coating was tested with diamond particles of four different sizes, designated D-4000 with 2 to 4 microns diameter of the particles; D-800 with 12 to 25 microns; D-600 with 20 to 30 microns; and D-400 with 30 to 40 microns. The abrasive resistance of the scalers was examined quantitatively using a recently-developed automatic scaling apparatus that simulated the scaling process of hand instrumentation, as well as SEM observation of the blades. A series of abrasion tests suggested that all the diamond scalers except D-4000 showed better abrasive resistance than the control (D-0), and that D-600 showed the highest abrasive resistance and cutting quality. The SEM observation also suggested that D-600 and D-400 might have higher abrasive resistance. Furthermore, the profilometric evaluation of the surface roughness of the scaled natural dentin after hand instrumentation indicated that the average surface roughness increased in the order of D-4000, D-800, D-600, and D-400, although no marked differences were observed among D-4000, D-800, D-600 and D-0, but not D-400. These results suggested that the electrodeposited diamond scaler with 20 to 30 microns diamond particles (D-600) might have marked abrasive resistance as well as cutting quality without remarkable damage to the tooth surface after conventional scaling procedure.

摘要

为提高洁治器刀片的耐磨性,开发了一种通过电沉积涂覆刀片金刚石颗粒的金刚石洁治器。用四种不同尺寸的金刚石颗粒对电沉积涂层进行了测试,分别为直径2至4微米的D - 4000;12至25微米的D - 800;20至30微米的D - 600;以及30至40微米的D - 400。使用最近开发的模拟手动器械洁治过程的自动洁治装置以及刀片的扫描电子显微镜观察,对洁治器的耐磨性进行了定量检查。一系列磨损试验表明,除D - 4000外,所有金刚石洁治器的耐磨性均优于对照(D - 0),且D - 600的耐磨性和切割质量最高。扫描电子显微镜观察还表明,D - 600和D - 400可能具有更高的耐磨性。此外,对手动器械洁治后的天然牙本质表面粗糙度进行轮廓测量评估表明,平均表面粗糙度按D - 4000、D - 800、D - 600和D - 400的顺序增加,尽管在D - 4000、D - 800、D -

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