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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Physical aging and the creep behavior of acrylic bone cements.
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Physical aging and the creep behavior of acrylic bone cements.

机译:丙烯酸骨水泥的物理老化和蠕变行为。

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摘要

The creep deformation of two acrylic bone cements, Palacos R+G and SmartSet GHV, was investigated for different physical aging times ranging from 45 min to 2 (1/2) years. The experiments were carried out in a three-point-bending set-up in 37 degrees C Ringer's solution applying 10 MPa or 25 MPa creep loads. Both bone cements exhibit a significant decrease of their creep compliance with increasing physical aging time. The experimental data were analyzed with a creep law discussed in the context of physical aging by Struik, and a modified Burgers' model which can be used to separate the strain response of the bone cements into an elastic, a visco-elastic and a creep component. The creep behavior of the bone cements could be described essentially with only one parameter of Struik's creep law. The analysis with the modified Burgers' model showed that physical aging influences all model parameters which are directly related to the mobility of the polymer chains. The effect of physical aging should be taken into account particularly if the mechanical performance of bone cements shortly after curing is investigated.
机译:研究了两种丙烯酸骨水泥(Palacos R + G和SmartSet GHV)在45分钟到2(1/2)年的不同物理老化时间下的蠕变变形。实验是在37℃林格氏溶液中施加10 MPa或25 MPa蠕变载荷的三点弯曲装置中进行的。随着物理老化时间的增加,两种骨水泥均表现出蠕变顺应性的显着降低。用Struik在物理老化的背景下讨论的蠕变定律分析了实验数据,并使用了改进的Burgers模型将骨水泥的应变响应分为弹性,粘弹性和蠕变分量。 。骨水泥的蠕变行为基本上可以用Struik蠕变定律的一个参数来描述。修改后的Burgers模型的分析表明,物理老化会影响所有与聚合物链的迁移率直接相关的模型参数。特别是如果研究固化后不久的骨水泥的机械​​性能,则应考虑物理老化的影响。

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