废玻璃粉对地区卡拉克膨胀粘土溶胀及强度特性的影响

Bakht Zamin, H. Nasir, Beenish Jehan Khan, Asim Farooq
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引用次数: 8

摘要

膨胀土通常被认为是有问题的,因为它具有不良的岩土特性,如膨胀、收缩、沉降和起伏。这类土壤的抗剪强度较低,在湿润或其他物理恶化后会降低。因此,这种土壤在建造结构之前需要适当的改善。以往已有不同工业废弃物用于软弱土的稳定。研究了废玻璃粉对膨胀土强度和膨胀特性的影响。本试验的主要目的是研究废玻璃粉在岩土工程中的应用,以控制沉降和膨胀质量。为此,选取巴基斯坦Karak地区的当地膨胀土,并对其工程性质进行了评价。实验工作包括进行稠度极限、加州承载比(CBR)、比重标准宝洁试验。上述试验是在天然和改良的标本上进行的。改性用废玻璃粉(WGP)按不同比例添加,增量为4%,瞬间为0%、4%、8%、12%、16%、20%。废玻璃粉的加入大大降低了试验土的膨胀性能,改善了试验土的工程特性。废玻璃粉添加量为20%时,最大限度地减少了溶胀。同样,在最佳玻璃粉含量下,液限降低,比重和最大干密度增加。
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EFFECT OF WASTE GLASS POWDER ON THE SWELLING AND STRENGTH CHARACTERISTIC OF DISTRICT KARAK EXPANSIVE CLAY
Expansive soils are generally considered problematic due to undesirable geotechnical characteristics like expansion, shrinking, settlement, and heaving. Such soils have low shear strength which decreases after wetting or other physical aggravations. Subsequently, such soils need proper improvement before constructing a structure on them. Different industrial wastes have been used for the stabilization of weak soil in the past. In the current investigation, the impact of waste glass powder (WGP) on the strength and swelling characteristic of swelling soils have been assessed. The primary target of this examination was to research the utilization of waste glass powder in geotechnical applications for controlling the settlement and expanding qualities. For this reason, the local expansive soil of district Karak, Pakistan was selected and their engineering properties were assessed. The experimental work consists of conducting the consistency limits, California bearing ratio (CBR), specific gravity standard Procter tests.  The mentioned tests were carried out on both natural as well as modified specimens. For modification purposes, waste glass powder (WGP) was added in different proportions with the incremental rate of 4%,  for instant  0%,  4%, 8%, 12%, 16%, and 20%. The addition of waste glass powder greatly reduced the swelling properties of the tested soil and also improved the engineering characteristics. A maximum reduction in swelling was observed at 20% addition of waste glass powder. Similarly, the liquid limid also reduced, and the specific gravity and maximum dry density increased at optimum glass powder content.
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