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首页> 外文期刊>Journal of Endodontics: Official Journal of American Association of Endodontists >Effect of environment on fatigue failure of controlled memory wire nickel-titanium rotary instruments
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Effect of environment on fatigue failure of controlled memory wire nickel-titanium rotary instruments

机译:环境对可控记忆线镍钛旋转器械疲劳失效的影响

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Introduction: This study examined the fatigue behavior of 2 types of nickel-titanium (NiTi) instruments made from a novel controlled memory NiTi wire (CM wire) under various environment conditions. Methods: Three conventional superelastic NiTi instruments of ProFile (Dentsply Maillefer, Ballaigues, Switzerland), Typhoon (Clinician's Choice Dental Products, New Milford, CT), and DS-SS0250425NEYY (Clinician's Choice Dental Products) and 2 new CM wire instruments of Typhoon CM and DS-SS0250425NEYY CM were subjected to rotational bending at the curvature of 35°in air, deionized water, 17% EDTA, or deionized water after immersion in 6% sodium hypochlorite for 25 minutes, and the number of revolutions of fracture (N f) was recorded. The fracture surface of all fragments was examined by a scanning electron microscope. The crack-initiation sites and the percentage of dimple area to the whole fracture cross-section were noted. Results: Two new CM Wire instruments yielded an improvement of 4 to 9 times in N f than conventional NiTi files with the same design under various environments (P .05). The fatigue life of 3 conventional superelastic NiTi instruments was similar under various environments, whereas the N f of 2 new CM Wire instruments was significantly longer in liquid media than in air (P .05). The vast majority of CM instruments showed multiple crack origins, whereas most instruments made from conventional NiTi wire had one crack origin. The values of the area fraction occupied by the dimple region were significantly smaller on CM NiTi instruments than in conventional NiTi instruments under various environments (P .05). Conclusions: Within the limitations of this study, the type of NiTi metal alloy (CM files vs conventional superelastic NiTi files) influences the cyclic fatigue resistance under various environments. The fatigue life of CM instruments is longer in liquid media than in air.
机译:简介:这项研究检查了两种新型镍钛(NiTi)仪器的疲劳行为,这些仪器是由新型受控记忆NiTi线(CM线)在各种环境条件下制造的。方法:三种传统的ProFile超弹性NiTi仪器(瑞士Ballaigues的Dentsply Maillefer),台风(康涅狄格州新米尔福德的临床医生选择的牙科产品)和DS-SS0250425NEYY(临床医生的选择牙科产品)和台风CM的两种新的CM线材仪器将DS-SS0250425NEYNEY CM和DS-SS0250425NEYY CM在6%的次氯酸钠中浸泡25分钟后,在空气,去离子水,17%EDTA或去离子水中以35°的曲率进行旋转弯曲,断裂转数(N f ) 被记录。通过扫描电子显微镜检查所有碎片的断裂表面。记录了裂纹的起始位置和凹痕占整个断裂截面的百分比。结果:在不同环境下,两台新的CM Wire仪器在相同的设计下,其N f值比传统NiTi锉提高了4到9倍(P <.05)。 3种常规的超弹性NiTi仪器在各种环境下的疲劳寿命相似,而2种新的CM Wire仪器在液体介质中的Nf明显比在空气中更长(P <.05)。绝大多数CM仪器显示出多个裂纹起源,而大多数由常规NiTi线材制成的仪器具有一个裂纹起源。在各种环境下,与传统的NiTi仪器相比,CM NiTi仪器上的凹坑区域所占的面积分数值显着较小(P <.05)。结论:在这项研究的局限性内,NiTi金属合金的类型(CM锉与传统的超弹性NiTi锉)会影响各种环境下的循环疲劳强度。 CM仪器在液体介质中的疲劳寿命比在空气中更长。

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