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Using Sandstone as a Construction Material from Injana Formation, Koya Area, Kurdistan Region; an Evaluation

机译:采用砂岩作为来自Kurdistan地区Kya地区的内巴地区的建筑材料; 评价

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摘要

The aim of this research is to investigate the engineering properties and geochemical analysis of sandstone that is available in the Injana Formation to show its tentative quality assessment of the possibility of using sandstone as a construction material. Two sections of the laboratory experiment were discussed. The first part has discussed the physical and mechanical properties of sandstone aggregate which includes: porosity, moisture content, water absorption, dry density, uniaxial compressive strength, Schmidt Hammer Rebound, Los Angeles abrasion, weathering behavior and chemical composition. The second part has discussed the effect of sandstone powders as partial replacement of cement on the compressive strength of mortar. According to results obtained, the average values of Los Angeles abrasion values (33.36%), uniaxial compressive strength (57.43 MPa), and Schmidt's hardness (30) indicated that sandstone aggregate was strong and durable, making it suitable for use in concrete and road construction. On the other hand, the compressive strength of mortar-containing sandstone powders (SSP) up to 20% instead of cement there was no significant reduction in the compressive strength. So, it has been found that sandstone contributes to the decrease of cement consumption and can be considered a local economical material for non-structural concrete applications. The results indicate that there is a strong correlation relationship between the physical and strength properties of sandstone using regression models with statistical equations; it was found out that the sandstone aggregate has good engineering properties.
机译:该研究的目的是探讨砂岩的工程性质和地球化学分析,该砂岩是可用的内砂岩,以表明其暂定质量评估使用砂岩作为建筑材料的可能性。讨论了实验室实验的两部分。第一部分讨论了砂岩聚集体的物理和机械性能,包括:孔隙率,水分含量,吸水,干密度,单轴抗压强度,施密锤反弹,洛杉矶磨损,风化行为和化学成分。第二部分已经讨论了砂岩粉末作为砂浆抗压强度的部分替代水泥的影响。根据所得的结果,洛杉矶磨损值(33.36%),单轴抗压强度(57.43MPa)和Schmidt的硬度(30)的平均值表明砂岩骨料强壮且耐用,使其适用于混凝土和道路建造。另一方面,含砂浆砂岩粉末(SSP)的抗压强度高达20%而不是水泥,抗压强度没有显着降低。因此,已经发现砂岩有助于水泥消耗的降低,并且可以被认为是非结构混凝土应用的局部经济材料。结果表明,使用具有统计方程的回归模型的砂岩物理和强度特性存在强烈的相关关系;发现砂岩聚集体具有良好的工程性质。

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