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FAILURES OF STAINLESS STEEL ORTHOPAEDIC DEVICES-CAUSES AND REMEDIES

机译:不锈钢矫形设备故障-原因和补救措施

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摘要

Orthopaedic implants are exposed to the biochemical and dynamic environments of the human body; their design is dictated by anatomy and restricted by physiological conditions. In every failure of an orthopaedic implant, the concerned patient is made to experience the trauma of repeated surgeries, besides the severe pain experienced during the process of rejection of the device. The removal of the failed implant will cause great expense and hardship to the patient. Therefore, it is highly desirable to keep the number of failures to a minimum. The determination of the mechanism by which failure of an implant occurred is important, but it is also necessary to explore the event, or sequence of events, that had caused a particular mechanism or mechanisms to be operative. Furthermore, failure analyses can help improving the overall performance of implant devices through revision engineering. In the framework of this study, a survey of failure investigations of stainless steel implants was undertaken. The use of advanced stainless steels and the application of nitrogen ion implantation and bioceramic hydroxyapatite coatings as potential remedies are evaluated. Failure analyses reveal the occurrence of significant localized corrosion attack viz., pitting and crevice corrosion. These findings support the need for the development of some innovative implant materials exhibiting resistance to localized corrosion attack. Cooperative efforts by the materials and medical/surgical disciplines may result in even greater improvements in the future with respect to the durability and safety of these implant devices.
机译:整形外科植入物会暴露于人体的生化和动态环境中。它们的设计取决于解剖结构,并受生理条件的限制。在整形外科植入物的每一次故障中,除了在拒绝该装置的过程中经历的剧烈疼痛之外,还使有关患者经历重复手术的创伤。去除失败的植入物将给患者带来巨大的费用和困难。因此,非常希望将故障次数保持在最少。确定植入物发生故障的机制很重要,但是也有必要探讨导致某种或多种特定机制起作用的事件或事件序列。此外,故障分析可以通过修订工程帮助改善植入设备的整体性能。在这项研究的框架内,进行了不锈钢植入物失效研究的调查。评估了先进不锈钢的使用以及氮离子注入和生物陶瓷羟基磷灰石涂层作为潜在疗法的应用。失效分析表明发生了明显的局部腐蚀侵蚀,即点蚀和缝隙腐蚀。这些发现支持开发一些创新的植入材料的需求,这些材料对局部腐蚀攻击具有抵抗力。材料和医学/外科学科的共同努力在未来可能会导致这些植入设备的耐用性和安全性得到更大的改善。

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