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Properties of open-cell porous metals and alloys for orthopaedic applications

机译:骨科应用的开孔多孔金属和合金的性能

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摘要

One shortcoming of metals and alloys used to fabricate various components of orthopaedic systems, such as the femoral stem of a total hip joint replacement and the tibial plate of a total knee joint replacement, is well-recognized. This is that the material modulus of elasticity (E') is substantially larger than that of the contiguous cancel-lous bone, a consequence of which is stress shielding which, in turn, has been postulated to be implicated in a cascade of events that culminates in the principal life-limiting phenomenon of these systems, namely, aseptic loosening. Thus, over the years, a host of research programs have focused on the synthesis of metallic biomate-rials whose E' can be tailored to match that of cancellous bone. The present work is a review of the extant large volume of literature on these materials, which are called open-cell porous metals/alloys (or, sometimes, metal foams or cellular materials). As such, its range is wide, covering myriad aspects such as production methods, characterization studies, in vitro evaluations, and in vivo performance. The review also includes discussion of seven areas for future research, such as parametric studies of the influence of an assortment of process variables (such as the space holder material and the laser power in the space holder method and the laser-engineered net-shaping process, respectively) on various properties (notably, permeability, fatigue strength, and corrosion resistance) of a given porous metal/alloy, innovative methods of determining fatigue strength, and modeling of corrosion behavior.
机译:众所周知,金属和合金用于制造整形外科系统各种组件的缺点,例如全髋关节置换的股骨柄和全膝关节置换的胫骨板。这是因为材料的弹性模量(E')基本上大于连续的松质骨的弹性模量,其结果是应力屏蔽,而应力屏蔽又被认为与一系列事件相关,最终导致这些系统的主要寿命限制现象就是无菌性松动。因此,这些年来,许多研究计划都集中在金属生物材料的合成上,其E'可以定制以匹配松质骨的材料。本工作是对这些材料的大量文献的回顾,这些材料被称为开孔多孔金属/合金(或有时称为泡沫金属或多孔材料)。因此,它的范围很广,涵盖了无数方面,例如生产方法,表征研​​究,体外评估和体内性能。审查还讨论了七个领域,供将来研究之用,例如对各种过程变量(例如空间保持器材料和空间保持器方法中的激光功率以及激光工程网成形过程)的影响进行参数研究。分别针对给定多孔金属/合金的各种特性(尤其是渗透性,疲劳强度和耐腐蚀性),确定疲劳强度的创新方法以及腐蚀行为建模。

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  • 来源
    《Journal of materials science》 |2013年第10期|2293-2325|共33页
  • 作者

    Gladius Lewis;

  • 作者单位

    Department of Mechanical Engineering, The University of Memphis, Memphis, TN 38152-3180, USA;

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  • 正文语种 eng
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