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首页> 外文期刊>Surface & Coatings Technology >Developing a new laser cladded FeCrMoCB metallic glass layer on nickel-free stainless-steel as a potential superior wear-resistant coating for joint replacement implants
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Developing a new laser cladded FeCrMoCB metallic glass layer on nickel-free stainless-steel as a potential superior wear-resistant coating for joint replacement implants

机译:在无镍不锈钢上开发一种新的激光包覆Fecrmocb金属玻璃,作为关节置换植入物的潜在卓越的耐磨涂层

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摘要

Biomedical implants are made of biomaterials such as titanium, cobalt-based alloys or stainless-steel depending on which is the most suitable. However, metallic alloys have failed to prove high wear resistance alongside acceptable biocompatibility. Recently, metallic glasses (MG) have attracted more attention for joint replacement implants due to their superior wear resistance and acceptable biocompatibility, however, they are brittle material and constrained in size to few centimeters. Therefore, MG coating layer on ductile-core metallic alloy like stainless-steel would overcome the drawbacks of MG and develop a well-functioning joint replacement implant. In this research, FeCrMoCB MG is laser cladded on nickel-free stainless steel using three levels of specific energy, scanning speed, spot size and overlap percentage to develop different amorphous-crystalline composite structures. The cladded samples showed superior wear resistance in both dry and Ringer's solution conditions (up to 270 times that of the substrate) demonstrating comparable wear rate with common metallic biomaterials that leads to promoted durability. Furthermore, the cell-culture test applied to FeCrMoCB coating layer and substrate showed good cell morphology and growth on both surfaces indicating an acceptable cytocompatibility of both coating layer and substrate.
机译:生物医学植入物由生物材料如钛,钴基合金或不锈钢制成,这取决于最合适的。然而,金属合金未能证明具有可接受的生物相容性的高耐磨性。最近,由于其卓越的耐磨性和可接受的生物相容性,金属眼镜(MG)引起了接头更换植入物的重视,但是,它们是脆性材料,并且尺寸约为厘米。因此,如不锈钢等延性核金属合金上的Mg涂层将克服Mg的缺点,并开发一种功能良好的关节置换植入物。在本研究中,FECRMOCB MG使用三个水平的特定能量,扫描速度,光斑尺寸和重叠百分比来开发出无镍不锈钢的激光,以产生不同的无定形晶体复合结构。包覆的样品在干燥和林格的溶液条件下表现出优异的耐磨性(基板的底物的270倍),展示了具有普通金属生物材料的相当磨损,导致促进耐久性。此外,应用于FeCroCB涂层和底物的细胞培养试验在两个表面上显示出良好的细胞形态和生长,其表示涂层和基材的可接受的细胞织组织。

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