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Study of accumulation behaviour of tungsten based composite using electron probe micro analyser for the application in bone tissue engineering

机译:电子探针微分析仪在骨组织工程中应用钨基复合材料累积行为研究

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摘要

In this research, a proto-type study we have conducted, where we have synthesized tungsten based composite materials which are tungsten along with combined oxides of other elements like calcium, scandium, barium, and aluminium in the form of powder with bones powder of mice devised by high energy ball mill and later on fabricating high dense pellets by sintering by spark plasma. The particle sizes of the composite materials are found to be 1–2 µm, as evidenced by the electron microscope, suggesting synthesized materials are of micron size. The quantitative and qualitative analysis of sintered pellets are well confirmed by electron probe micro analyzer (EPMA) and energy dispersive X-ray spectrometer (EDS) which illustrate the greater percentage of tungsten presents in the profound scan areas with other elements of the composite. The absence of pores across the 3D geometry suggesting dense sample, which is quite revealed by the X-ray tomography inspection. The prepared sintered pellets from the tungsten based composites are found to be ≈ 99.5% density with the observation of tungsten to be accumulated uniformly across the scan regions along with focussed hot spots as implied by EPMA. This study paves the way, to examine how the tungsten accumulation and the distribution with the other elements for future understanding in bone tissue engineering application and the in vivo specification of tungsten.
机译:在本研究中,我们进行了一种原型研究,我们已经进行了一种基于钨的钨的复合材料,以及铜,钪,钡和铝的其他元素的组合氧化物,用骨粉的小鼠粉末由高能量球磨机设计,后来通过火花等离子体烧结制造高密集的颗粒。复合材料的颗粒尺寸为1-2μm,如电子显微镜所证明,建议合成材料具有微米尺寸。通过电子探针微分析仪(EPMA)和能量分散X射线光谱仪(EDS)很好地确认了烧结颗粒的定量和定性分析,其示出了具有复合材料的其他元件的深度扫描区域中的钨百分比的百分比。横跨3D几何形状的孔隙,表明致密样品,这是由X射线断层扫描检查相当透露的。来自钨基复合材料的制备的烧结粒料是≈99.5%的密度,观察钨均匀地累积在扫描区域上,与EPMA所暗示的聚焦热点。这项研究铺平了道路,研究钨的积累和与其他元素的分布如何,以便在骨组织工程应用中的未来理解和钨的体内规格中的理解。

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