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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Acoustic emission monitoring and 3D visualization of polymerization-induced damage of acrylic polymer materials.
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Acoustic emission monitoring and 3D visualization of polymerization-induced damage of acrylic polymer materials.

机译:丙烯酸聚合物材料聚合引发的损伤的声发射监测和3D可视化。

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摘要

To improve the longevity of total hip replacements, techniques such as vacuum mixing have been developed to reduce the amount of porosity within the cement. However, data from the Swedish hip registry has demonstrated an increased risk of revision for vacuum-mixed cemented devices in the first 5 years postoperatively. Theoretical and experimental evidence suggests that stresses induced by cement shrinkage during polymerization alone are sufficient to induce cracking. However, very little evidence of preload cracking is available due to the limitations of current inspection methods. The present work combines two forms of nondestructive evaluation technique to assess the state of an acrylic-based polymer mantle both in real time during polymerization using the acoustic emission (AE) technique and immediately post polymerization using micro-computed tomography (CT). AE data enabled the location, type, and chronology of events to be obtained. The use of micro-CT in combination with a radiopaque dye-penetrant was shown to be an effective method for highlighting preload polymerization cracking and verified the findings of the AE data. The AE data indicated that the first signs of damage occurred approximately 3-6 min after the peak temperature obtained during exotherm, confirming that thermal contraction rather than pure volumetric shrinkage is the dominant factor in preload damage initiation. The methodology developed in this study enables detailed information on the condition of a cement mantle to be obtained without the need for serial sectioning.
机译:为了提高全髋关节置换术的寿命,已经开发了诸如真空混合之类的技术来减少水泥中的孔隙率。但是,来自瑞典髋关节注册表的数据表明,在术后头5年内,真空混合的骨水泥器械翻修的风险增加。理论和实验证据表明,仅在聚合过程中由水泥收缩引起的应力足以引起开裂。但是,由于当前检查方法的局限性,很少有预紧裂纹的证据。本工作结合了两种形式的非破坏性评估技术,既可以在聚合过程中使用声发射(AE)技术实时评估丙烯酸基聚合物地幔的状态,也可以在使用微计算机断层扫描(CT)的聚合后立即进行评估。 AE数据可获取事件的位置,类型和时间顺序。 Micro-CT结合不透射线的染料渗透剂的使用被证明是突出预载聚合裂化的有效方法,并证实了AE数据的发现。 AE数据表明,损坏的第一个迹象出现在放热过程中达到峰值温度后约3-6分钟,这证实了热收缩而非单纯的体积收缩是引发预紧力损坏的主要因素。在这项研究中开发的方法,无需连续切片即可获得有关水泥套状况的详细信息。

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