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EXPERIMENTAL CHARACTERIZATIONS OF BONE CEMENT CURING SETTING TEMPERATURE AND TIME

机译:骨水泥固化设定温度和时间的实验特征

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In thermal characterization tests of bone cement according to the ASTM Standard Specification for Acrylic Bone Cement, time-temperature profiles of bone cement were observed to be sensitive to the thickness of the cement patty and the mold material. Due to the heat transfer from cement to the surrounding mold, such tests might underestimate the exothermic temperature of bone cement. Developing test methods to better characterize cement thermal behavior is necessary for accurate cement investigations. In this paper, the effects of the mold material and geometry on experimental characterizations of bone cement setting temperature and setting time were evaluated by conducting the polymerization with different test molds. Finite element (FE) numerical simulations were also performed to provide a further understanding of these effects. It was found that the mold materials and geometry significantly influence the values of the parameters measured with the ASTM standard F-451. Results showed that the setting temperature measured was about 50°C lower in a polytetrafluoroethylene (PTFE) mold than in a polyurethane (PU) foam mold for the 6 mm thickness cement. The measured peak temperature with PTFE molds varied about 75°C for different mold heights (6 mm vs. 40 mm), but only by 28°C with PU molds. The measured setting time with PTFE molds varied by about 740 seconds for different mold heights (6 mm vs. 40 mm), while only by about 130 seconds for PU molds. Using PU foam materials for the test mold decreases cement heat transfer effects due to the poor heat conductivity of PU foam and provides more consistent measured results. Finite element parametric studies also support these observations. Therefore, poor conductivity materials, like polyurethane foam, make better molds for the characterization of bone cement thermal behavior.
机译:根据丙烯酸骨水泥的ASTM标准规范的骨水泥的热表征试验,观察到骨水泥的时间温度曲线对水泥帕蒂和模具材料的厚度敏感。由于从水泥到周围模具的热传递,这种测试可能低估了骨水泥的放热温度。为了更好地表征水泥热行为的开发测试方法是准确的水泥调查所必需的。本文通过用不同试验模具进行聚合来评价模具材料和几何形状对骨水泥设定温度和设定时间的实验表征的影响。还进行有限元(FE)数值模拟,以进一步了解这些效果。结果发现,模具材料和几何形状显着影响了通过ASTM标准F-451测量的参数的值。结果表明,在聚四氟乙烯(PTFE)模具中,测量的设定温度比在6mm厚度水泥的聚氨酯(PU)泡沫模具中为约50℃。使用PTFE模具的测量峰值温度为不同的模具高度(6mm与40mm)而变化约75℃,但只有28°C为PU模具。使用PTFE模具的测量设定时间为不同的模具高度(6mm与40mm)而变化约740秒,而PU模具仅约130秒。使用PU泡沫材料对于试验模具,由于PU泡沫的导热率差,降低了水泥传热效应,并提供了更一致的测量结果。有限元参数研究还支持这些观察结果。因此,差的电导率材料如聚氨酯泡沫,使骨水泥热行为的表征具有更好的模具。

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