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Mechanical characterization of anti-infectious, anti-allergic, and bioactive coatings on orthopedic implant surfaces

机译:整形外科植入物表面的抗感染,抗过敏和生物活性涂层的机械特性

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摘要

In total joint replacement much effort has been made to reduce implant loosening. We investigated different implant coatings (copper integrated titanium dioxide (TiO2–Cu), titanium nitride (TiN), plasma polymerized allylamine (PPAAm), and calcium phosphate (CaP)) regarding the adhesion strength and wear resistance. Standardized scratch and adhesive tests were applied. Abrasive wear was measured with artificial bone and bone cement using a special testing machine. All tested coatings have higher bonding strengths than the 22 N/mm2 required for medical implant surface coatings by ASTM standard 4711-F. Using bone cement, wear testing revealed higher wear rates in most cases. Polished surfaces reduce the amount of wear, whereas rough surfaces highly increase the wear rate due to three-body wear, especially ceramic surfaces. In general, the application of bone cement in conjunction with modified implant surfaces can lead to an increase in wear rate.
机译:在全关节置换中,已经做出了很多努力来减少植入物松动。我们研究了不同的植入物涂层(铜集成二氧化钛(TiO 2 –Cu),氮化钛(TiN),等离子聚合的烯丙胺(PPAAm)和磷酸钙(CaP))的粘附强度和磨损抵抗性。进行了标准化的划痕和粘合力测试。使用专用的测试机使用人造骨和骨水泥测量磨料磨损。所有测试的涂层具有比ASTM标准4711-F要求的医疗植入物表面涂层所需的22 N / mm 2 更高的粘结强度。使用骨水泥,磨损测试表明在大多数情况下磨损率更高。抛光的表面减少了磨损量,而粗糙的表面则由于三体磨损(特别是陶瓷表面)而大大提高了磨损率。通常,将骨水泥与改良的植入物表面结合使用可导致磨损率增加。

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