首页> 外文会议>ICAMET 2012 >PHYSICAL AND MECHANICAL PROPERTIES OF GLASS COMPOSITE MATERIAL MADE FROM INCINERATED SCHEDULED WASTE SLAG AND SLS WASTE GLASS
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PHYSICAL AND MECHANICAL PROPERTIES OF GLASS COMPOSITE MATERIAL MADE FROM INCINERATED SCHEDULED WASTE SLAG AND SLS WASTE GLASS

机译:由焚烧的预定废渣和SLS废玻璃制成的玻璃复合材料的物理和力学性能

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Incineration of scheduled waste and landfilling of the incineration residue (Bottom Slag) is extensively practised in Malaysia as a treatment method for scheduled waste. Land site disposal of Bottom Slag (BS) may lead to environmental health issues and reduces the availability of land to sustain the nation’s development. This research aims in producing Glass Composite Material (GCM) incorporating BS and Soda Lime Silicate (SLS) waste glass as an alternative method for land site disposal method and as an effort for recycling SLS waste glass.SLS waste glass originates from the urban waste and has been a waste stream in most of the nation whereby the necessity for recycling is in high priority.The effect of BS waste loading on the GCM is studied.Batches of powder mixture is formulated with 30 wt% to 70 wt % of BS powder and SLS waste glass powder for GCM sintering.The powder mixtures of BS and SLS waste glass is compacted by uniaxial pressing method and sintered at 800?C with heating rate of 2?C/min and 1 hour soaking time. Physical analysis of bulk density, apparent porosity, and water absorption is perfomed according to ASTM C-373 standard. Mechanical testing of microhardness vickers according to ASTM C1327 and Modulus of Rupture (MOR) according to ISO 10545-4 is conducted. Microstructural analysis is carried out using Scanning Electron Microscope and phase analysis by X-ray diffraction method.Phases identified are Anorthite sodian,Quartz,Hematite and Diopside from X-ray diffraction analysis. Higher BS waste loading shows weak physical and mechanical properties.GCM from batch formulation of 30 wt % BS and 70 wt% SLS waste glass has projected optimized physical and mechanical properties. It is observed this batch has projected lowest water absorption percentage of 1.17 %, lowest porosity percentage of 2.2 %, highest bulk density of 1.88 g/cm~3 and highest MOR of 70.57 Mpa and 5.6 GPa for Vickers Microhardness.
机译:的调度的浪费和焚烧残留物(底渣)的填埋焚化在马来西亚被广泛实践作为用于调度的废物的处理方法。土地现场处置底渣(BS)可能导致环境健康问题,并减少土地供应,以维持国家的发展。生产玻璃复合材料(GCM)将BS和硅酸盐钙钠(SLS)废玻璃作为土地现场处置方法的替代方法,并作为努力回收本研究旨在SLS浪费glass.SLS从城市垃圾废玻璃起源和已经在大多数国家的废物流,由此有必要进行回收是在BS废料加载对GCM高priority.The效果粉末混合物的studied.Batches配制用30%重量至BS粉末70重量%和用于BS和SLS废玻璃GCM sintering.The粉末混合物SLS废玻璃粉末通过单轴压制方法压制并在800烧结?℃下加热2?℃/分钟和1小时浸泡时间速率。体积密度,表观孔隙度和吸水率的物理分析根据ASTM C-373标准perfomed。根据按照ISO 10545-4断裂ASTM C1327和模量(MOR)维克斯硬度的机械测试进行的。微观结构分析从X射线衍射分析进行了使用扫描电子显微镜和由鉴定X射线衍射method.Phases相位分析是钙长石sodian,石英,赤铁矿和透辉石。从30%(重量)BS的批量配方和70重量%的SLS浪费玻璃已经预计优化的物理和机械性能更高BS废料加载显示弱的物理和机械properties.GCM。据观察该批次已投影的1.17%最低吸水率为2.2%最低孔隙度百分数,1.88克/厘米3〜并和5.6最高堆积密度70.57兆帕的最高MOR GPA为显微硬度。

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