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Resistance to cyclic fatigue of reciprocating instruments determined at body temperature and phase transformation analysis

机译:在体温和相变分析中确定往复仪器循环疲劳的抵抗力

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Abstract The purpose of this study was to compare cyclic fatigue ( CF ) resistance of reciprocating instruments at body temperature and relate the findings to their martensitic transformation temperatures. Contemporary nickel‐titanium (NiTi) reciprocating instruments WaveOne Primary, WaveOne Gold Primary and EdgeFile X1 ( n ?=?20 each and #25 tip diameter) were tested for CF resistance at body temperature (37?±?1°C). Instruments were actioned according to manufacturer guidelines until fracture occurred in a simulated canal (angle of curvature?=?60°, radius of curvature?=?3?mm and centre of curvature?=?5?mm from the tip). Time to fracture was recorded, and data analysed using Weibull analysis. Two instruments of each were tested using differential scanning calorimetry ( DSC ) to assess phase transformation temperatures. Reciprocating instruments manufactured with new alloys seem to be safer to CF than those manufactured with traditional M‐Wire at body temperature. Martensitic transformation temperatures seem not to relate with fatigue behaviour for reciprocating motions.
机译:摘要本研究的目的是比较往复仪器在体温下的循环疲劳(CF)电阻,并将调查结果与其马氏体转化温度相关联。当代镍 - 钛(NITI)往复仪器Wapone Migher,WaveOne Gold Migher和Edgefile X1(N?=Δ20和#25尖端直径)在体温下进行CF电阻(37?±1°C)。仪器根据制造商准则进行行动,直到模拟运河(曲率角θ=Δ=θ=°,曲率半径θ=Δ3Ωmm和曲率中心)。记录骨折的时间,并使用Weibull分析进行分析的数据。使用差示扫描量热法(DSC)测试每个仪器,以评估相变温度。用新合金制造的往复仪器似乎比在体温下使用传统M线制造的仪器更安全。马氏体转化温度似乎不涉及往复运动的疲劳行为。

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