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基于六亚甲基二异氰酸酯的嵌段聚氨酯的合成及其在制造心血管应用弹性体复合材料中的用途。

Synthesis of HMDI-based segmented polyurethanes and their use in the manufacture of elastomeric composites for cardiovascular applications.

作者信息

Solís-Correa R E, Vargas-Coronado R, Aguilar-Vega M, Cauich-Rodríguez J V, Román J San, Marcos A

机构信息

Unidad de Materiales, Centro de Investigación Científica de Yucatán, A.C. Calle 43 #130, Col. Chuburná de Hidalgo, 97200, Mérida, Yucatán, México.

出版信息

J Biomater Sci Polym Ed. 2007;18(5):561-78. doi: 10.1163/156856207780852488.

Abstract

For short-term cardiovascular application, segmented polyurethanes (SPUs) based on 4,4-methylenebis(cyclohexyl isocyanate) (HMDI), polytetramethylenglycol (PTMG) and 1,4-butanediol (BD) were synthesized and characterized by spectroscopy (FT-IR, (1)H-NMR) and thermal (TGA, DMA, DSC) and mechanical techniques. The segmented nature of the SPUs was not easily established by spectroscopic means; however, TGA allowed the quantification of the rigid segments content by the significant mass loss between 348 and 356 degrees C. The alpha transition was detected by DMA and related to the T(g) of the soft segments at -50 degrees C, while DSC showed the presence of an endothermic transition above 80 degrees C attributed to the melting of rigid segments. Two types of composites were prepared using the synthesized SPUs and Lycra (either T162B or T162C). The first one consisted of a two layers casting laminated while the second one was a classic unidirectional fibre-reinforced material. Laminate composites prepared with SPU containing 23.9% and 33.9% of rigid segments and Lycra T162C exhibited a higher tensile modulus but lower tensile strength than composites prepared with Tecoflex SG-80A (39.7% of rigid segments). The energy of adhesion between layers on these composites ranged from 475 to 2150 J. Fibre-reinforced SPUs exhibited higher moduli than the two layer laminated composites with increasing amounts of rigid segments in the matrix and by increasing Lycra T162C content (up to 10%). This behaviour was explained by SEM, which showed a good fibre-matrix bonding.

摘要

对于短期心血管应用,合成了基于4,4-亚甲基双(环己基异氰酸酯)(HMDI)、聚四亚甲基二醇(PTMG)和1,4-丁二醇(BD)的嵌段聚氨酯(SPU),并通过光谱学(傅里叶变换红外光谱法(FT-IR)、氢核磁共振谱法(¹H-NMR))、热分析(热重分析法(TGA)、动态热机械分析(DMA)、差示扫描量热法(DSC))和力学技术对其进行了表征。通过光谱手段不容易确定SPU的嵌段性质;然而,热重分析法允许通过348至356摄氏度之间的显著质量损失来定量刚性链段含量。通过动态热机械分析检测到α转变,其与-50摄氏度下软链段的玻璃化转变温度(Tg)相关,而差示扫描量热法显示在80摄氏度以上存在归因于刚性链段熔化的吸热转变。使用合成的SPU和莱卡(T162B或T162C)制备了两种类型的复合材料。第一种由两层浇铸层压而成,而第二种是经典的单向纤维增强材料。用含有23.9%和33.9%刚性链段的SPU和莱卡T162C制备的层压复合材料比用Tecoflex SG-80A(39.

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