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Effects of bio-functionalizing surface treatments on the mechanical behavior of open porous titanium biomaterials

机译:生物功能化表面处理对开孔多孔钛生物材料力学行为的影响

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Bio-functionalizing surface treatments are often applied for improving the bioactivity of biomaterials that are based on otherwise bioinert titanium alloys. When applied on highly porous titanium alloy structures intended for orthopedic bone regeneration purposes, such surface treatments could significantly change the static and fatigue properties of these structures and, thus, affect the application of the biomaterial as bone substitute. Therefore, the interplay between biofunctionalizing surface treatments and mechanical behavior needs to be controlled. In this paper, we studied the effects of two bio-functionalizing surface treatments, namely alkali-acid heat treatment (AlAcH) and acid-alkali (AcAl), on the static and fatigue properties of three different highly porous titanium alloy implants manufactured using selective laser melting. It was found that AlAcH treatment results in minimal mass loss. The static and fatigue properties of AlAcH specimens were therefore not much different from as-manufactured (AsM) specimens. In contrast, AcAl resulted in substantial mass loss and also in significantly less static and fatigue properties particularly for porous structures with the highest porosity. The ratio of the static mechanical properties of AcAl specimens to that of AsM specimen was in the range of 1.5-6. The fatigue lives of AcAl specimens were much more severely affected by the applied surface treatments with fatigue lives up to 23 times smaller than that of AsM specimens particularly for the porous structures with the highest porosity. In conclusion, the fatigue properties of surface treated porous titanium are dependent not only on the type of applied surface treatment but also on the porosity of the biomaterial. (C) 2014 Elsevier Ltd. All rights reserved.
机译:生物功能化的表面处理通常用于改善基于生物惰性钛合金的生物材料的生物活性。当将其应用在用于骨科骨再生目的的高孔隙度钛合金结构上时,此类表面处理可能会显着改变这些结构的静态和疲劳特性,从而影响生物材料作为骨替代物的应用。因此,需要控制生物功能化表面处理与机械行为之间的相互作用。在本文中,我们研究了两种生物功能化表面处理,即碱-酸热处理(AlAcH)和酸-碱(AcAl),对使用选择性制造的三种不同的高孔隙度钛合金植入物的静态和疲劳性能的影响激光熔化。发现AlAcH处理导致最小的质量损失。因此,AlAcH试样的静态和疲劳特性与制成的(AsM)试样没有太大差异。相反,AcAl导致大量的质量损失,并且特别是对于孔隙率最高的多孔结构,其静态和疲劳性能明显降低。 AcAl样品与AsM样品的静态力学性能之比在1.5-6的范围内。 AcAl样品的疲劳寿命受表面处理的影响更大,疲劳寿命比AsM样品小23倍,特别是对于孔隙率最高的多孔结构而言。总之,经表面处理的多孔钛的疲劳性能不仅取决于所应用的表面处理的类型,还取决于生物材料的孔隙率。 (C)2014 Elsevier Ltd.保留所有权利。

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