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首页> 外文期刊>International endodontic journal >Mechanical properties and metallurgical features of new and ex vivo ex vivo used Reciproc Blue and Reciproc
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Mechanical properties and metallurgical features of new and ex vivo ex vivo used Reciproc Blue and Reciproc

机译:新的和前体内的机械性能和冶金特征,exvivo使用了Comproc Blue和Comproc

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Abstract Aim To compare the mechanical properties and metallurgic features of new and used Reciproc Blue and Reciproc instruments. Methodology A total of 120 R25 Reciproc Blue and R25 Reciproc instruments were used. The morphological, chemical, mechanical, thermal and phase composition characteristics of new and ex vivo used files were investigated by scanning electron microscopy (FEG‐ SEM ) with energy dispersive X‐ray spectroscopy ( EDS ), focused ion beam analysis ( FIB ), micro‐Raman spectroscopy, FEG‐ SEM metallography, X‐ray diffraction ( XRD ), differential scanning calorimetry ( DSC ) and indentation tests. Usage‐induce degradation was evaluated. Ten new and ten used instruments per type were run until fracture occurred in a stainless steel artificial canal (60° angle of curvature, 4‐mm radius). Time to fracture and the length of the fractured fragment were recorded. Torque and angle of rotation at failure of ten new and ten used instruments for each type were measured according to ISO 3630‐1. The fracture surface of each fragment was examined. Two‐way?analyses of variance was?used to analyse the data statistically (α‐level 0.05). Results SEM analysis revealed microcracks near the tip on both files after ex vivo usage tests. FIB imaging and micro‐Raman spectroscopy confirmed the presence of an oxide layer on the Reciproc Blue surface. There was no thinning of the coating after use. XRD revealed a reduction of martensite and R‐phase in Reciproc Blue after use. DSC analysis revealed different transformation temperatures for the instruments analysed. Reciproc Blue was significantly more flexible than Reciproc for both new and used samples ( P ??0.05), and they were significantly more resistant to cyclic fatigue than Reciproc ( P ??0.05). Ex vivo usage reduced the fatigue resistance of both files. Torsional resistance of Reciproc and Reciproc Blue was not reduced by simulated use ( P ??0.05). Conclusions The thermal treatment of Reciproc Blue was associated with a finer structure with smaller grains than Reciproc, which increased its fracture resistance and was also responsible for its reduced hardness and lower elastic modulus. Both files were safe during ex vivo usage in severely curved canals.
机译:摘要旨在比较新的和使用的Comproc蓝色和互联器仪器的机械性能和冶金特性。方法中使用总共120 r25互联网和R25互联器仪器。通过扫描电子显微镜(FEG-SEM),通过扫描电子显微镜(FEG-SEM)来研究新的和exvivo使用的文件的形态学,化学,机械,热和相位组成特征,聚焦离子束分析(FIB),微-RAMAN光谱,FEG-SEM金相,X射线衍射(XRD),差示扫描量热法(DSC)和压痕测试。评估使用诱导降解。每种类型的10个新的和十种使用的仪器都在不锈钢人造管(60°曲率角度,4毫米半径)中发生骨折。记录骨折的时间和裂缝片段的长度。根据ISO 3630-1测量每种类型的10个新旧仪器故障的扭矩和旋转角度。检查每个片段的断裂表面。双向?方差分析是统计分析数据(α-Level 0.05)。结果SEM分析显示,在exvivo使用测试后,两个文件的尖端附近的微裂纹。 FIB成像和微拉曼光谱证实了互联网上的氧化物层的存在。使用后涂层没有变薄。 XRD在使用后揭示了在Comproc蓝色中的马氏体和R相的减少。 DSC分析显示了分析的仪器的不同变化温度。对于新的和使用的样品(p≤β0),互联网的蓝色显着更灵活,并且它们比循环疲劳耐抗循环疲劳更高(p?& 0.05)。前体内使用减少了两个文件的疲劳电阻。通过模拟使用不降低互换和互联网的扭转抗性(P≤0.05)。结论互联网蓝的热处理与具有较小颗粒的粒度的粒径较小,其抗抗抗性增加,并且还负责其降低的硬度和低弹性模量。在严重弯曲的运河中,这两个文件都是安全的。

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