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عنوان البحث(Papers / Research Title)


EFFECT OF NANOMATERIAL TREATMENT ON GEOTECHNICAL PROPERTIES OF A PENANG SOFT SOIL


الناشر \ المحرر \ الكاتب (Author / Editor / Publisher)

 
زيد حميد مجيد الحسون

Citation Information


زيد,حميد,مجيد,الحسون ,EFFECT OF NANOMATERIAL TREATMENT ON GEOTECHNICAL PROPERTIES OF A PENANG SOFT SOIL , Time 08/12/2016 23:09:44 : كلية الهندسة

وصف الابستركت (Abstract)


This study aims to investigate the effect of addition of different nanomaterials, including nano Cu, nano MgO, and nano clay, on the geotechnical properties of soft soil samples from Penang State. Various amounts of nanomaterials (0.05% to 1%) were added to the soil to study their effect on the soil’s compaction characteristics, consistency limits, and compressive strength. Improvements in these geotechnical properties depended on the type of nanomaterials added, and increasing the percentage of each of the added nanomaterials increased the maximum dry density of the soil. The linear shrinkage and plasticity index decreased with increasing nanomaterial content. The unconfined compressive strength increased as the nanomaterial content increased up to a certain percentage in the soil and then decreased afterwards.

الوصف الكامل (Full Abstract)

EFFECT OF NANOMATERIAL TREATMENT ON GEOTECHNICAL PROPERTIES OF A PENANG SOFT SOIL
Zaid Hameed Majeed1
Mohd Raihan Taha2
ABSTRACT
This study aims to investigate the effect of addition of different nanomaterials, including nano Cu, nano MgO, and nano clay, on the geotechnical properties of soft soil samples from Penang State. Various amounts of nanomaterials (0.05% to 1%) were added to the soil to study their effect on the soil’s compaction characteristics, consistency limits, and compressive strength. Improvements in these geotechnical properties depended on the type of nanomaterials added, and increasing the percentage of each of the added nanomaterials increased the maximum dry density of the soil. The linear shrinkage and plasticity index decreased with increasing nanomaterial content. The unconfined compressive strength increased as the nanomaterial content increased up to a certain percentage in the soil and then decreased afterwards.
Key Words: Soil Stabilisation; Nanomaterials; Consistency Limit; Unconfined Compressive Strength.

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