Bormann Therese, Mai Phuong Thao, Gibmeier Jens, Sonntag Robert, Müller Ulrike, Kretzer J Philippe
Laboratory of Biomechanics and Implant Research, Clinic for Orthopedics and Trauma Surgery, Heidelberg University Hospital, 69118 Heidelberg, Germany.
Institute for Applied Materials, Karlsruhe Institute of Technology, 76131 Karlsruhe, Germany.
Materials (Basel). 2020 Apr 25;13(9):2011. doi: 10.3390/ma13092011.
Corrosion of taper connections in total hip arthroplasty remains of concern, as particles and ions generated by corrosive processes can cause clinical problems such as periprosthetic osteolysis or adverse reaction to metallic debris. Mechanical surface treatments that introduce compressive residual stresses (RSs) in metallic materials can lead to a better performance in terms of fretting and fatigue and may lower the susceptibility to corrosion. The study investigates the impact of mechanical surface treatments on the corrosion behavior of metallic biomaterials. Compressive RSs were introduced by deep rolling and microblasting in Ti6Al4V and CoCrMo samples. Polished samples served as reference. Corrosion behavior was characterized by repeated anodic polarization. Residual stresses of up to about -900 MPa were introduced by deep rolling with a reach in depth of approximately 500 µm. Microblasting led to compressive RSs up to approximately -800 and -600 MPa for Ti6Al4V and CoCrMo, respectively, in the immediate vicinity of the surface. For Ti6Al4V, microblasting resulted in decreased corrosion resistance with lower breakdown potentials and/or increased passive current densities in comparison to the polished and deep-rolled samples. The corrosion behavior of CoCrMo on the other hand was not affected by the mechanical surface treatments.
全髋关节置换术中锥形连接的腐蚀问题仍然备受关注,因为腐蚀过程产生的颗粒和离子会引发诸如假体周围骨溶解或对金属碎屑的不良反应等临床问题。在金属材料中引入压缩残余应力(RSs)的机械表面处理可以在微动和疲劳方面带来更好的性能,并可能降低腐蚀敏感性。本研究调查了机械表面处理对金属生物材料腐蚀行为的影响。通过对Ti6Al4V和CoCrMo样品进行深滚压和微喷砂处理来引入压缩RSs。抛光样品作为对照。通过重复阳极极化来表征腐蚀行为。深滚压引入了高达约-900 MPa的残余应力,深度可达约500 µm。微喷砂在Ti6Al4V和CoCrMo表面附近分别导致高达约-800 MPa和-600 MPa的压缩RSs。对于Ti6Al4V,与抛光和深滚压样品相比,微喷砂导致耐腐蚀性降低,击穿电位更低和/或钝化电流密度增加。另一方面,CoCrMo的腐蚀行为不受机械表面处理的影响。