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Characterisation and Properties of Sintered Glass-Ceramics Produced from Recycling Glass by Using Pressure-less Method

机译:无压法回收玻璃制成的烧结玻璃陶瓷的表征与性能

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The aim of this research is to develop glass ceramic produced from recycling glass. Waste glass (e.g. container and bottles) of soda lime silica (SLS) glasses is utilised as main raw materials for the formulation of glass ceramic batch composition with the addition of ball clay. The ball clay was added in order to favour shaping. The recycled glass powder are then mixed with the ball clay according to the ratio of SLSG to ball clay of 95:5 wt.%, 90:10 wt.% and 85:15 wt.%. Differential Thermal Analyses (DTA) was carried out in order to determine the thermal characteristic glass powder prior to the batch formulation. The glass was then crushed, milled and sieved to < 75 μm and mixed with the ball clay before it was pressed to a pellet by pressure-less method. This pressure-less route is conducted as an approach to a simple fabrication route of the glass-ceramic samples. The green samples are then sintered at different temperature. The dense and strong glass ceramic samples were obtaining at 850°C, with holding time of one hour and morphological characterized with X-Ray Diffraction (XRD) and Scanning Electron Microscopy (SEM) analyses. Results shown that glass ceramic samples produced at this optimized sintering profile had high density and microhardness value with low porosity and negligible water absorption. Overall results indicates that glass ceramic samples have good mechanical properties (e.g. microhardness exceeding 700H_v) and physical properties (e.g. water absorption, density, porosity making them attractive to the structural application. These results are also utilised as a comparison to a glass ceramic samples produced via Cold Isostatic Press (CIP) from the same batch composition formulation and sintering profiles for the purpose of optimizing the waste glass utilization.
机译:这项研究的目的是开发由回收玻璃制成的玻璃陶瓷。苏打石灰二氧化硅(SLS)玻璃的废玻璃(例如容器和瓶子)被用作主要原料,用于在添加球形粘土的情况下配制玻璃陶瓷批料组合物。添加球粘土以利于成形。然后根据SLSG与球形粘土的比例为95:5wt。%,90:10 wt。%和85:15 wt。%,将回收的玻璃粉末与球形粘土混合。进行差示热分析(DTA),以便在分批配制之前确定玻璃粉末的热特性。然后将玻璃压碎,研磨并过筛至<75μm,并与球形粘土混合,然后再通过无压方法将其压成颗粒。该无压路径是作为玻璃陶瓷样品的简单制造路径的一种方法来进行的。然后将生坯样品在不同温度下烧结。在850℃下获得致密且坚固的玻璃陶瓷样品,保持时间为一小时,并且通过X射线衍射(XRD)和扫描电子显微镜(SEM)分析对形态进行表征。结果表明,以这种优化的烧结轮廓生产的玻璃陶瓷样品具有高密度和显微硬度值,且孔隙率低且吸水率可忽略不计。总体结果表明,玻璃陶瓷样品具有良好的机械性能(例如,显微硬度超过700H_v)和物理性能(例如,吸水率,密度,孔隙率)使其对结构应用具有吸引力,这些结果也可用于与生产的玻璃陶瓷样品进行比较通过冷等静压机(CIP)从相同的批料组成配方和烧结过程中获得,目的是优化废玻璃的利用率。

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