Hayashi K, Takano H, Matsuda T, Umezu M
J Biomed Mater Res. 1985 Feb;19(2):179-93. doi: 10.1002/jbm.820190207.
As a series of studies on the mechanical properties of materials used in cardiac prostheses, static and dynamic characteristics and stability of five kinds of elastomeric polymers have been studied by uniaxial tensile and fatigue tests in air at room temperature and in saline solution at 37 degrees C. Of all materials tested in this study, Texin MD85A, a segmented polyether polyurethane, has the lowest flexibility under static and dynamic conditions, with relatively high strength. Hexsyn, a polyolefin rubber, is highly flexible with little stress relaxation. However, this material has very low tensile strength and short elongation, and shows unstable change in the elastic modulus during cyclic deformation. Avcothane 51, a copolymer of polyurethane and silicon, has unstable mechanical properties and gradually stiffens upon cyclic deformation. On the other hand, Biomer, a segmented polyether polyurethane, has high flexibility and shows the most stable behavior during cyclic deformation regardless of test environment. Toyobo TM5, a similar segmented polyurethane to Biomer, has higher strength and ductility than Biomer, although its static and dynamic flexibility are slightly worse and less stable than those of Biomer. These results indicate that Biomer and Toyobo TM5 are more suitable for flexible components of cardiac prostheses.
作为对心脏假体所用材料力学性能的一系列研究,通过在室温空气中以及37摄氏度盐溶液中的单轴拉伸和疲劳试验,研究了五种弹性聚合物的静态和动态特性以及稳定性。在本研究中测试的所有材料中,一种嵌段聚醚聚氨酯Texin MD85A在静态和动态条件下柔韧性最低,但强度相对较高。一种聚烯烃橡胶Hexsyn柔韧性很高,应力松弛很小。然而,这种材料的拉伸强度非常低,伸长率短,并且在循环变形过程中弹性模量呈现不稳定变化。一种聚氨酯与硅的共聚物Avcothane 51力学性能不稳定,在循环变形时会逐渐变硬。另一方面,一种嵌段聚醚聚氨酯Biomer柔韧性高,并且在循环变形过程中,无论试验环境如何,都表现出最稳定的性能。一种与Biomer类似的嵌段聚氨酯Toyobo TM5比Biomer具有更高的强度和延展性,尽管其静态和动态柔韧性比Biomer略差且稳定性更低。这些结果表明,Biomer和Toyobo TM5更适合作为心脏假体的柔性部件。