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Tailored Composite Titanium-Based Biomaterials

机译:定制的复合钛基生物材料

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Medical devices, implants and biomaterials must all keep in step with advances in medicine. For special applications biomaterials must often be tailor made if one single material is not able to fulfill the various requirements. Therefore composite materials must be developed if special properties are required. Due to their corrosion resistance, biocompatibility and bioadesion, titanium and its alloys are the metallic biomaterials of preference for use as structural components. Two examples are given for composite materials, i.e. functional layers on titanium and its alloys: 1. Improving the electrical conductivity of the surface of heart pacemaker leads consisting of porous sintered titanium by coating with TiN, TiB_2 and Ir respectively. 2. Development of a near β-alloy which has a reduced Young's modulus for a good load transfer and, in addition, due to an adapted thermal expansion coefficient, can be coated with hydroxyapatite (HA) possessing a high adhesion strength to the substrate.
机译:医疗器械,植入物和生物材料都必须步调一致,在医学的进步。对于特殊的应用生物材料必须经常裁缝如果一个单一材料不能满足各种要求做出。因此,如果需要特殊性质的复合材料必须发展。由于它们的耐腐蚀性,生物相容性和bioadesion,钛及其合金是优选的用作结构部件的金属生物材料。两个实施例用于复合材料,即在钛功能层及其合金:1.改善,分别用锡,TiB_2和Ir组成涂布多孔烧结钛的心脏起搏器引线的表面的导电性。 2.开发的近β合金,其具有降低的杨氏模量有一个良好的负载转移,此外,由于适于热膨胀系数,能够与羟基磷灰石(HA)被涂覆具有高粘合强度的底物。

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