Bearing capacity of shallow footing on soft clay improved by compacted cement dust

Joint Authors

al-Musawi, Musa J. Aziz
Albusoda, Bushra S.
Yasin, Azhar S.

Source

Journal of Engineering

Issue

Vol. 15, Issue 4 (31 Dec. 2009), pp.4417-4428, 12 p.

Publisher

University of Baghdad College of Engineering

Publication Date

2009-12-31

Country of Publication

Iraq

No. of Pages

12

Main Subjects

Civil Engineering

Topics

Abstract AR

تمثل قابلية التحمل الواطئة للترب الضعيفة اسفل الأسس الضحلة من أهم مشاكل الأنشاء.

استخدمت تربة الكاؤولين بمحتوى رطوبة يقترب من حد السيولة لتمثيل التربة الضعيفة اسفل نموذج الأساس الضحل كما تم استعمال مادة غبار السمنت و هي من مواد المخلفات الصناعية التي تنتج من عملية صناعة الإسمنت و بكميات كبيرة تم استعمالها في تحسين قابلية تحمل التربة الضعيفة الممثلة بمادة الكائولين التجا ري في هذا البحث.

تم تحظير التربة داخل صندوق من الحديد بأبعاد X36X36 25 سم مع نموذج لا ساس مربع ضحل(6X6) سم.

أجريت مجموعة من الفحوص الفيزيائية و الكيميائية لمادة الكائولين و مادة غبار السمنت و تمت عملية التحسين من خلال عمل شق اسفل أنموذج ألأساس الضحل و بنفس طول و عرض الأساس و تم حدل مادة غبار السمنت فيه (عند محتوى الرطوبة الأمثل) و لثلاثة أعماق مختلفة (3B=D,2B=D,B=D)، علما أن B تمثل عرضا لأساس.

أجريت مجموعة من فحوص التحميل.

Abstract EN

Low bearing capacity of weak soil under shallow footings represents one of construction problems.

Kaolin with water content converges to liquid limit used to represent the weak soil under shallow footing prototype.

On the other hand, cement dust, which can be defined as undesirable industrial waste material come from cement industry, was used to improve the bearing capacity of the soft soil considered in this research.

The soft soil was prepared in steel box (36×36×25) cm and shallow square footing prototype (6×6) cm were used .Group of physical and chemical tests were conducted on kaolin and cement dust.

The improvement were performed by making trench under the footing filled with compacted cement dust (at its optimum moisture content) at three depths (D=B, D=2B, D=3B), the trench had the same footing Dimensions, note that (B) represent the footing width.

Pressure-settlement curves were used to predict the ultimate bearing capacity.

The improvement ratio in bearing capacity was calculated by comparing the ultimate bearing capacity value when testing the kaolin alone with its value of kaolin improved with compacted cement dust at the same value of eccentricity.

It is important to note that eccentricity values were chosen according to the rule of middle third of footing base(i.e.,e≤B/6).

The improvement ratio was about (197%) in average value, that represent a good ratio of improvement.

American Psychological Association (APA)

al-Musawi, Musa J. Aziz& Albusoda, Bushra S.& Yasin, Azhar S.. 2009. Bearing capacity of shallow footing on soft clay improved by compacted cement dust. Journal of Engineering،Vol. 15, no. 4, pp.4417-4428.
https://search.emarefa.net/detail/BIM-327302

Modern Language Association (MLA)

al-Musawi, Musa J. Aziz…[et al.]. Bearing capacity of shallow footing on soft clay improved by compacted cement dust. Journal of Engineering Vol. 15, no. 4 (Dec. 2009), pp.4417-4428.
https://search.emarefa.net/detail/BIM-327302

American Medical Association (AMA)

al-Musawi, Musa J. Aziz& Albusoda, Bushra S.& Yasin, Azhar S.. Bearing capacity of shallow footing on soft clay improved by compacted cement dust. Journal of Engineering. 2009. Vol. 15, no. 4, pp.4417-4428.
https://search.emarefa.net/detail/BIM-327302

Data Type

Journal Articles

Language

English

Notes

Includes appendices : p. 4428

Record ID

BIM-327302