首页> 外文期刊>Journal of Endodontics: Official Journal of American Association of Endodontists >Temperature Triggered Shape Memory Effect of Transpolyisoprene-based Polymer
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Temperature Triggered Shape Memory Effect of Transpolyisoprene-based Polymer

机译:聚异戊二烯基聚合物的温度触发形状记忆效应

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Introduction: Pure gutta-percha (trans-1, 4-polyisoprene [TPI]) has been used extensively as a main component of gutta-percha for root canal filling. TPI has the interesting shape memory property by cross-linking, and this polymer was commercialized under the product name of SMP-2 (Kuraray Corp, Kashima, Japan). Therefore, the purpose of this study was to examine the thermal properties and the mechanism of the shape memory function of cross-linked SMP-2. Methods: The crystalline of the TPI was observed by x-ray diffraction. The effects of temperature on shape recovery, recovery stress, and relaxation modulus (Er[5]) were measured in cross-linked cylindrical specimens of SMP-2. Differential scanning calorimetry was used to monitor thermal events. Results: On heating, a pronounced increase in recovery stress, a marked decrease in Er(5), and endothermic DSC peaks were observed over the same temperature range (38 degrees 51 degrees C) with shape recovery. On the other hand, on cooling, a pronounced decrease in recovery stress, a marked increase in Er(5), and an exothermic DSC peak were observed over the same temperature range (27 degrees 33 degrees C). Conclusions: The shape memory property of TPI is derived from its crystallinity and cross-linking ability. Fixing the deformed shape and shape recovery from the deformed shape to the original shape is relatively easy to achieve by changing the temperature of SMP-2. The shape memory function of the cross-linked SMP-2 was expected to be very useful as a root canal filling material by the modification of its some thermal properties.
机译:简介:纯牙胶(trans-1,4-polyisoprene [TPI])已被广泛用作牙龈充填根管的主要成分。 TPI通过交联具有令人感兴趣的形状记忆性能,并且该聚合物以SMP-2(日本可乐岛,日本可乐丽公司)的产品名称商业化。因此,本研究的目的是研究交联的SMP-2的热性质和形状记忆功能的机理。方法:通过X射线衍射观察TPI的结晶。在交联的圆柱形SMP-2样品中测量了温度对形状恢复,恢复应力和松弛模量(Er [5])的影响。差示扫描量热法用于监测热事件。结果:加热后,在相同的温度范围(38摄氏度51摄氏度)下,随着形状恢复,恢复应力显着增加,Er(5)明显降低,并且吸热DSC峰出现。另一方面,在冷却时,在相同温度范围(27摄氏度至33摄氏度)下观察到恢复应力显着降低,Er(5)明显升高以及DSC放热峰。结论:TPI的形状记忆特性来自其结晶度和交联能力。通过改变SMP-2的温度,相对容易地将变形的形状固定和将形状从变形的形状恢复到原始形状。通过改变其热性能,预期交联的SMP-2的形状记忆功能作为根管充填材料非常有用。

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