IRJET- Experimental Study on Properties of Cement Stabilized Recycled Blocks

Page 7

[3]

[4]

[5]

[6]

[7]

[8]

[9]

[10]

[11]

[12]

[13]

International Research Journal of Engineering and Technology (IRJET)

e-ISSN: 2395-0056

Volume: 07 Issue: 10 | Oct 2020

p-ISSN: 2395-0072

www.irjet.net

Stabilized Earth Blocks (CSEB) For Low-cost Housing Construction: A preliminary Investigation.” International Journal of Sustainable Construction and technology, ISSN: 2180-3242, Vol-4, No 2, pp 39-46. Kabiraj.K, Mandal.U.K. (2012). “Experimental investigation and feasibility study on stabilized compacted earth block using local resources.” International Journal of civil and structural engineering, ISSN: 0976 – 4399, Vol-2, No 3. pp. 838-850. Raju Sathish Kumar, Janardhan Ganti and Daraga Kumar Nandyala. (2012). “Rice husk ash stabilized compressed earth block-A sustainable construction building material.” International Journal of civil engineering and technology (IJCIET), ISSN: 0976 – 6308(Print), ISSN 0976 – 6316(Online), Vol-3, Issue 1. pp. 01-14 Sadek Deboucha and Roslan Hashim. (2011). “A review on bricks and stabilized compressed earth blocks” Scientific Research and Essays, ISSN: 1992-2248, Vol-6(3), pp. 499-506. Fetra Venny Riza, Ismail Abdul Rahman and Ahmad Mujahid Ahmad Zaidi. (2011). “Preliminary Study of compressed Stabilized Earth Brick (CSEB).” Australian Journal of Basic and Applied Science, 5(6), ISSN 19918178. pp. 6-12. Bansal Deepak. (2011). “Masonry from stabilized earth Blocks-Sustainable & structurally viable Option” International Journal of Earth Sciences and Engineering,ISSN: 0974-5904, Vol-4, No 06 SPL. pp. 772-779. Chee-Ming Chan and Liang-Pin Low. (2010). “Development of strength Prediction Model for “Green” Compressed Stabilized Earth bricks”. Journal of Sustainable Development, ISSN: 1913-9063 E-ISSN 1913-9071, Vol-3, No 3. pp. 140 – 150 S.Krishnaiah and P. Suryanarayana Reddy. (2008). “Effect of Clay on Soil Cement Blocks” International Association for Computer Methods and Advances in Geomechanics (IACMAG). pp. 4362-4368. B.V. Venkatarama Reddy, Richardson Lal and K. S. Nanjunda Rao. (2007). “Enhancing Bond Strength and Characteristics of Soil-Cement Block Masonry” Journal of material in civil engineering © ASCE. pp. 164-172. B.V. Venkatarama Reddy, Richardson Lal and K. S. Nanjunda Rao. (2007). “Optimum Soil Grading for the Soil-Cement Blocks.” Journal of material in civil engineering © ASCE. pp.139-148. B.V. Venkatarama Reddy and Ajay Gupta. (2006). “Strength and Elastic Properties of Stabilized Mud Block Masonry Using Cement-Soil Mortars.” Journal of material in civil engineering © ASCE. pp. 472-476. B.V. Venkatarama Reddy and Ajay Gupta. (2006). “Tensile Bond Strength of Soil-Cement Block Masonry Couplets Using Cement-Soil Mortars” Journal of material in civil engineering © ASCE. pp. 36-45.

© 2020, IRJET

|

Impact Factor value: 7.529

[14]

|

G. Sarangapani, B. V. Venkatarama Reddy and K. S. Jagadish. (2005). “Brick-Mortar Bond and Masonry Compressive Strength.” Journal of material in civil engineering © ASCE. pp. 229-237.

ISO 9001:2008 Certified Journal

|

Page 202


Turn static files into dynamic content formats.

Create a flipbook
Issuu converts static files into: digital portfolios, online yearbooks, online catalogs, digital photo albums and more. Sign up and create your flipbook.
IRJET- Experimental Study on Properties of Cement Stabilized Recycled Blocks by IRJET Journal - Issuu