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Monomer conversion and hardness of novel dental cements based on ethyl cyanoacrylate

机译:新型基于氰基丙烯酸乙酯的牙科骨水泥的单体转化率和硬度

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Objectives. The aim of this work was to study the setting of two novel dental cements: (ⅰ) a 'hybrid' cement, incorporating an ethyl cyanoacrylate into a glass-ionomer cement (ECGIC) formulation and (ⅱ) an ethyl cyanoacrylate/hydroxyapatite composite cement (ECHC). The mechanical role of the cyanoacrylate and its curing within the cements have been discussed. Methods. The setting of the cements was characterised using Vickers indentation hardness and near-infrared (near-IR) spectroscopy. Results. The cyanoacrylate component of ECGIC was 100% cured approximately 10min after the initial cement mixing. The ECGIC continued to increase in hardness after the cyanoacrylate component was fully cured. This proved that the fully polymerised network of cyanoacrylate did not prevent the acid-base reactions of the GIC components from continuing. The Vickers hardness number of ECGIC at 18 weeks was ~105. The curing of the cyanoacrylate within ECHC was much slower and was still not complete (98%) 18 weeks after the initial cement mixing. The hardness of the ECHC was shown to be correlated with the extent of cyanoacrylate cure. The Vickers hardness number of ECHC at 18 weeks was ~21. The primary reasons for the overall lower hardness of ECHC in comparison to ECGIC were the lower powder:liquid ratio and the softer filler type. Significance. Careful consideration is needed when incorporating cyanoacrylates into dental cements, as speed of cure and hardness are particularly important.
机译:目标。这项工作的目的是研究两种新型牙科用水泥的固化:(ⅰ)一种“混合”水泥,将氰基丙烯酸乙酯掺入玻璃离聚物水泥(ECGIC)配方中;(ⅱ)氰基丙烯酸乙酯/羟基磷灰石复合水泥(ECHC)。已经讨论了氰基丙烯酸酯的机械作用及其在水泥中的固化。方法。使用维氏压痕硬度和近红外(近红外)光谱对水泥的凝结进行了表征。结果。初始水泥混合后约10分钟,ECGIC的氰基丙烯酸酯组分100%固化。氰基丙烯酸酯组分完全固化后,ECGIC的硬度继续增加。这证明了氰基丙烯酸酯的完全聚合网络不会阻止GIC组分的酸碱反应继续进行。 18周时ECGIC的维氏硬度值为〜105。初始水泥混合后18周,ECHC中氰基丙烯酸酯的固化要慢得多,并且仍未完成(98%)。已显示出ECHC的硬度与氰基丙烯酸酯的固化程度有关。 18周时ECHC的维氏硬度值为〜21。与ECGIC相比,ECHC总体硬度较低的主要原因是较低的粉液比和较软的填料类型。意义。当将氰基丙烯酸酯掺入牙科用水泥中时需要仔细考虑,因为固化速度和硬度特别重要。

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