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Geological study and mining plan importance for mitigating alkali silica reaction in aggregate quarry operation

机译:地质研究和采矿计划对减轻集料采石场中碱硅石反应的重要性

摘要

More than 80 million tonnes of construction aggregate are produced in Peninsular Malaysia. Majority of construction aggregate are produced from granite. Developing regions of Johor Bahru, Kuala Lumpur, Penang and Selangar utilize granite aggregates. Normally it is considered aggregates as non-alkali reactive. Geological study can identify various rock types, geological structures, and reactive minerals which contribute to Alkali Silica Reaction (ASR). Deformed granites formed through faulting results in reduction of quartz grain size. Microcrystalline quartz and phyllosilicates are found in granites in contact with country rocks. Secondary reactive minerals such as chalcedony and opal may be found in granite. Alkali Silica reaction is slow chemical reaction in concrete due to reactive silica minerals in aggregates, alkalis in cement and moisture. For long term durable concrete, it is essential to identify potential alkali silica reactive aggregates. Lack of identifying reactive aggregates may result spalling, cracking in concrete and ultimately ASR can result in hazard to concrete structure. This paper deals with geological study of any aggregate quarry to identify rock type and geological structures with laboratory test –petrographic analysis and bar mortar test can identify type of aggregates being produced. Mine plan with Surpac software can be developed for systematic working for aggregate quarry to meet construction aggregate demand.
机译:马来西亚半岛的建筑总产量超过8000万吨。大多数建筑骨料都是由花岗岩制成的。柔佛州新山,吉隆坡,槟城和雪兰莪州的发展中地区利用花岗岩骨料。通常将其视为非碱性反应性聚集体。地质研究可以识别出有助于碱二氧化硅反应(ASR)的各种岩石类型,地质结构和反应性矿物。通过断层形成的变形花岗岩导致石英晶粒尺寸减小。在与乡村岩石接触的花岗岩中发现了微晶石英和层状硅酸盐。花岗岩中可发现次生反应性矿物,如玉髓和蛋白石。由于骨料中的反应性硅石矿物,水泥中的碱和水分,碱二氧化硅反应是混凝土中缓慢的化学反应。对于长期耐用的混凝土,必须识别潜在的碱性二氧化硅反应性骨料。缺少活性骨料可能会导致混凝土剥落,开裂,最终ASR可能对混凝土结构造成危害。本文通过实验室测试对任何集料采石场进行地质研究,以鉴定岩石类型和地质结构-岩相分析和棒砂浆测试可以鉴定所生产集料的类型。可以开发具有Surpac软件的矿山计划,以用于骨料采石场的系统工作,以满足建筑的总需求。

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