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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Mechanical and physical behavior of newly developed functionally graded materials and composites of stainless steel 316L with calcium silicate and hydroxyapatite
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Mechanical and physical behavior of newly developed functionally graded materials and composites of stainless steel 316L with calcium silicate and hydroxyapatite

机译:具有硅酸钙和羟基磷灰石的新开发的功能梯度材料的机械和物理性能和不锈钢316L的复合材料

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This study aimed to investigate the structural, physical and mechanical behavior of composites and functionally graded materials (FGMs) made of stainless steel (SS-316L)/hydroxyapatite (HA) and SS-316L/calcium silicate (CS) employing powder metallurgical solid state sintering. The structural analysis using X-ray diffraction showed that the sintering at high temperature led to the reaction between compounds of the SS-316L and HA, while SS-316L and CS remained intact during the sintering process in composites of SS-316L/CS. A dimensional expansion was found in the composites made of 40 and 50 wt% HA. The minimum shrinkage was emerged in 50 wt% CS composite, while the maximum shrinkage was revealed in samples with pure SS-316L, HA and CS. Compressive mechanical properties of SS-316L/HA decreased sharply with increasing of HA content up to 20 wt% and gradually with CS content up to 50 wt% for SS-316L/CS composites. The mechanical properties of the FGM of SS-316L/HA dropped with increase in temperature, while it was improved for the FGM of SS-316L/CS with temperature enhancement. It has been found that the FGMs emerged a better compressive mechanical properties compared to both the composite systems. Therefore, the SS-316L/CS composites and their FGMs have superior compressive mechanical properties to the SS-316L/HA composites and their FGMs and also the newly developed FGMs of SS-316L/CS with improved mechanical and enhanced gradation in physical and structural properties can potentially be utilized in the components with load-bearing application. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本研究旨在研究复合材料的结构,物理和力学行为和由不锈钢(SS-316L)/羟基磷灰石(HA)和SS-316L /硅酸钙(CS)采用粉末冶金固体状态制成的结构,物理和力学(FGM)烧结。使用X射线衍射的结构分析表明,在高温下烧结导致SS-316L和HA的化合物之间的反应,而SS-316L和CS在SS-316L / CS的复合材料中烧结过程中保持完整。在由40和50wt%HA制成的复合材料中发现尺寸膨胀。在50wt%CS复合材料中出现最小收缩,而在具有纯SS-316L,HA和Cs的样品中显示出最大收缩。 SS-316L / HA的压缩力学性能随着HA含量的增加,高达20wt%,并且Cs含量逐渐增加,SS-316L / CS复合材料高达50wt%。 SS-316L / HA的FGM的机械性能随温度的增加而下降,而具有温度增强的SS-316L / CS的FGM改善。已经发现,与复合系统相比,FGMS出现了更好的压缩机械性能。因此,SS-316L / CS复合材料及其FGMS对SS-316L / HA复合材料及其FGM具有优异的压缩机械性能,以及新开发的SS-316L / CS的FGM,具有改善的物理和结构的机械和增强的灰度可以在带承载应用的组件中使用性能。 (c)2015 Elsevier Ltd.保留所有权利。

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