Evaluation of aggregates from conglomerate beds of the Upper Siwalik Subgroup, Chure Khola area, Central Nepal Sub-Himalaya

Sunil Shanker Pradhananga, N. Tamrakar
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Abstract

Durability of infrastructures demands detail study of rocks which helps to give knowledge on physical properties, strength and durability of rocks, and their usefulness as construction materials. A wide belt of conglomerates of the Upper Siwalik Subgroup (Pliocene to Lower Pleistocene) extends in the Chure Hills of Central Nepal. These conglomerates are mostly loosely consolidated, matrix-supported and containing clast of diverse composition. Because of haphazard mining of the riverbeds of the Chure and Dudhaura Kholas, the present study was carried out for evaluation of clasts from the conglomerates distributed at the hillslopes of the Chure Khola, as alternative sources mainly for unbound pavement. Stiffness and durability of clasts from conglomerates was tested for grading, shape indices, Water Absorption Value (WAV), specific gravity, Aggregate Impact Value (AIV), Aggregate Crushing Value (ACV), Los Angles Abrasion Value (LAV), Sodium Sulphate Soundness Value (SSSV) and Slake Durability Index (SDI). The suitability of clast from conglomerates for unbound pavement was finally evaluated for the sample for intended uses following specifications of British standard, ASTM standard and Nepal standard.The clasts of conglomerate beds are composed of quartzite, sandstone, siltstone, schist, marble, phyllite, granite, limestone and amphibolite. Among all those clasts, quartzite is dominant in all samples. The texture of clast is smooth and rough surface. Flakiness index (FI) and Elongation index (EI) indicate that aggregates possess only some flat and elongate grains and are good in workability. WAV lies below 3% and the dry density (2260kg/m3–2750kg/m3) of aggregates, coincides with the standard average value of ASTM Standard, British Standard and Nepal Standard. The ACV of the sample lies in the range 17% to 26% within the limit of ASTM standard, BS and Nepal Standard. The Los Angles Value of the sample lies in the range 34% to 44.60% and therefore, they can be used for base course and sub base course. SSSV for five cycles was calculated to be less than 10%. SDI after second cycle is very high (94.29%) and samples are durable in nature according to ASTM D4644- 87 Standard. All parameters show that the sample of the clast of conglomerate deposited along the Chure Khola are durable meeting all ASTM, British and Nepal Standard and thus are suitable unbound pavement.Bulletin of the Department of Geology,  vol. 19, 2016, pp. 1–14
尼泊尔中部亚喜马拉雅地区Chure Khola地区上Siwalik亚群砾岩层团聚体评价
基础设施的耐久性要求对岩石进行详细的研究,这有助于了解岩石的物理特性、强度和耐久性,以及它们作为建筑材料的实用性。上Siwalik亚群(上新世至下更新世)的宽砾岩带延伸至尼泊尔中部的Chure山。这些砾岩多为松散固结,由基质支撑,含有多种成分的碎屑。由于Chure Khola和Dudhaura Khola河床的随意开采,本研究是为了评估分布在Chure Khola山坡上的砾岩碎屑,作为主要用于未结合路面的替代来源。对砾岩破碎体的刚度和耐久性进行了分级、形状指标、吸水值(WAV)、比重、骨料冲击值(AIV)、骨料破碎值(ACV)、洛杉矶磨损值(LAV)、硫酸钠健全值(SSSV)和湖泊耐久性指数(SDI)的测试。根据英国标准、美国材料试验协会标准和尼泊尔标准的规范,最终评估了砾石碎石用于无粘结路面的适用性。砾岩层碎屑主要由石英岩、砂岩、粉砂岩、片岩、大理岩、千层岩、花岗岩、灰岩和角闪岩组成。在所有样品中,石英岩均占主导地位。碎屑的质地光滑,表面粗糙。片状度指数(FI)和延伸度指数(EI)表明,团聚体具有较好的和易性。WAV低于3%,骨料干密度(2260kg/m3 ~ 2750kg/m3)符合ASTM标准、英国标准、尼泊尔标准的标准平均值。样品的ACV在ASTM标准、BS标准和尼泊尔标准的限定范围内,在17% ~ 26%之间。样本的Los angeles Value在34% - 44.60%的范围内,因此它们可以用于基础课程和子基础课程。计算出5个周期的SSSV小于10%。根据ASTM D4644- 87标准,二次循环后的SDI非常高(94.29%),样品本质上是耐用的。所有参数表明,沿Chure Khola沉积的砾岩碎屑样品具有良好的耐久性,符合ASTM、英国和尼泊尔标准,是一种适合的无粘结铺装材料。地质学报,2016年第19卷,第1-14页
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