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ProTaper S1器械临床使用后的缺陷:断口分析检查

Defects in ProTaper S1 instruments after clinical use: fractographic examination.

作者信息

Cheung G S P, Peng B, Bian Z, Shen Y, Darvell B W

机构信息

Faculty of Dentistry, The University of Hong Kong, Hong Kong.

出版信息

Int Endod J. 2005 Nov;38(11):802-9. doi: 10.1111/j.1365-2591.2005.01020.x.

Abstract

AIM

To investigate the mode of failure of a brand of nickel-titanium instruments separated during clinical use, by detailed examination of the fracture surface.

METHODOLOGY

A total of 122 ProTaper S1 instruments were discarded from an endodontic clinic at a stomatological school in China over a period of 17 months; 28 had fractured. These fractured instruments were ultrasonically cleaned, autoclaved and then examined under a scanning electron microscope. From the lateral view the fracture was classified into 'torsional' or 'flexural'. The specimens were then re-mounted and the presence of characteristics of shear failure and fatigue striations was recorded under high-power view of the fracture surface. The difference in the mean lengths of fractured segment between the shear and fatigue groups was compared using Student's t-test.

RESULTS

Twenty-seven separated instruments were available for analysis. Under low-power magnification, only two fell into the category of 'torsional' failure when examined laterally; the others appeared to be 'flexural'. Close examination of the fracture surface revealed the presence of fatigue striations in 18 specimens. Nine instruments (including the two putative 'torsional' failures above) fell into the shear fracture group, in which fatigue striations were absent or characteristics of shear failure of the material were found. The mean length of fractured segments resulting from fatigue failure (4.3+/-1.9 mm) was significantly greater than that for shear failure (2.5+/-0.8 mm) (P<0.001, two-sample t-test).

CONCLUSIONS

Examination of the fracture surface at high magnification is essential to reveal features that may indicate the possible origin of cracks and the mode of material failure. Macroscopic or lateral examination of separated instruments would fail to reveal the true mechanism of failure. Fatigue seems to be an important reason for the separation of rotary instruments during clinical use.

摘要

目的

通过对断裂面的详细检查,研究一种在临床使用中分离的镍钛器械的失效模式。

方法

在中国一所口腔医学院的牙髓病诊所,17个月内共废弃了122支ProTaper S1器械;其中28支发生了断裂。这些断裂的器械经过超声清洗、高压灭菌,然后在扫描电子显微镜下进行检查。从侧面观察,将骨折分为“扭转”或“弯曲”。然后将标本重新安装,并在骨折面的高倍视野下记录剪切失效和疲劳条纹的特征。使用学生t检验比较剪切组和疲劳组之间骨折段平均长度的差异。

结果

27支分离的器械可供分析。在低倍放大下,从侧面检查时,只有两支属于“扭转”失效类别;其他的似乎是“弯曲”。对骨折面的仔细检查发现18个标本中有疲劳条纹。9支器械(包括上述两支假定的“扭转”失效器械)属于剪切骨折组,其中没有疲劳条纹或发现材料的剪切失效特征。疲劳失效导致的骨折段平均长度(4.3±1.9毫米)明显大于剪切失效导致的骨折段平均长度(2.5±0.8毫米)(P<0.001,双样本t检验)。

结论

高倍检查骨折面对于揭示可能表明裂纹起源和材料失效模式的特征至关重要。对分离器械进行宏观或侧面检查无法揭示真正的失效机制。疲劳似乎是旋转器械在临床使用中分离的一个重要原因。

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