Weber U, Auff'm Ordt M, Rettig H, Hüttinger K J, Rosenblatt U, Brückmann H
Arch Orthop Unfallchir. 1977 Aug 26;89(2):169-77. doi: 10.1007/BF00415341.
Among others material problems are come to the fore in endoprothetic with growing biochemical knowledge, also because of the realisation that in different parts of the same prothesis functionally different mechanical demands must be set. Technological progress in carbon production has lead to the development of a spectrum of different carbon specialities with various mechanical properties. In orthopaedic surgery of endoprothetic high strengh isotropic carbon, impregnated carbon and fibrereinforced carbon-carbon-composites are of particular interest, because of their physical properties and unchanged favourable chemical and biological properties of carbon. Thereby it is on one side a question of carbon material with extraordinary tribological qualities, on the other side of carbons with nearly isoelastic behaviour towards the bone, respectively with equal quotient of breaking strength and young's modulus. Therefore in future the manufacture of components with functional approbiate material using the same basic material carbon seems to be possible for the production of endoprothesis with different working parts.
随着生物化学知识的不断增长,在植入物领域出现了其他一些材料问题,这也是因为人们认识到,在同一假体的不同部位,必须设定功能上不同的机械要求。碳生产技术的进步导致了一系列具有不同机械性能的不同碳特种材料的开发。在植入物矫形外科中,高强度各向同性碳、浸渍碳和纤维增强碳 - 碳复合材料特别受关注,这是由于它们的物理性能以及碳不变的良好化学和生物学性能。因此,一方面是具有非凡摩擦学特性的碳材料问题,另一方面是对骨骼具有近乎等弹性行为的碳材料问题,分别是具有相等断裂强度与杨氏模量商的碳材料问题。因此,未来似乎有可能使用相同的基础材料碳制造具有功能合适材料的部件,用于生产具有不同工作部件的植入物。