Assessment of Cement-Lime as Stabilizer on Mud Bricks  

Assessment of Cement-Lime as Stabilizer on Mud Bricks

在线阅读下载全文

作  者:Chrisdel Chancelice Ndjeumi Djonga Paul Nestor Djomou George Elambo Nkeng Fatoumata Adda Souaibou Soulemane Anong Chrisdel Chancelice Ndjeumi;Djonga Paul Nestor Djomou;George Elambo Nkeng;Fatoumata Adda Souaibou;Soulemane Anong(Department of Environmental Sciences, ENSPM, University of Maroua, Maroua, Cameroon;Department of Leather and Textile Engineering, ENSPM, University of Maroua, Maroua, Cameroon;Department of Civil, Environmental and Architectural Engineering, University of Padova, Padova, Italy;Laboratory of Analysis of CIMENCAM, Garoua, Cameroon)

机构地区:[1]Department of Environmental Sciences, ENSPM, University of Maroua, Maroua, Cameroon [2]Department of Leather and Textile Engineering, ENSPM, University of Maroua, Maroua, Cameroon [3]Department of Civil, Environmental and Architectural Engineering, University of Padova, Padova, Italy [4]Laboratory of Analysis of CIMENCAM, Garoua, Cameroon

出  处:《Journal of Materials Science and Chemical Engineering》2024年第7期1-13,共13页材料科学与化学工程(英文)

摘  要:The aim of this study was to evaluate the compressive strength of clay bricks and their stability to water absorption by inserting stabilizers such as lime and cement of 0%, 4%, 6%, 8%, 10%, 12% to 14%. Spectrometric analysis was used to characterize the various stabilizers and the clay used, and tests of resistance and water absorption were also carried out. The clay was found to be an aluminosilicate (15.55% to 17.17% Al2O3 and 42.12% to 44.15% SiO2). The lime contains 90.84% CaO and the cement has 17.80% SiO2, 3.46% Al2O3, 2.43% Fe2O3 and 58.47% CaO in the combined form of tricalcium silicate, dicalcium silicate, tricalcium aluminate and ferro-tetra calcium aluminate. The results showed that the insertion of locally available stabilizers (lime and cement) improved the strength of the material by almost 80% when the lime was increased from 0% to 14% for 14 days. For compressed cement, a 65% increase in strength was observed under the same conditions. Strength increases with drying time, with a 52% increase in strength at 28 days compared to 14 days. Furthermore, compressed cement bricks have a more compact structure, absorbing very little water (32%). In view of all these results, cement appears to be the best stabilizer, and compression improves compressive strength and reduces water absorption.The aim of this study was to evaluate the compressive strength of clay bricks and their stability to water absorption by inserting stabilizers such as lime and cement of 0%, 4%, 6%, 8%, 10%, 12% to 14%. Spectrometric analysis was used to characterize the various stabilizers and the clay used, and tests of resistance and water absorption were also carried out. The clay was found to be an aluminosilicate (15.55% to 17.17% Al2O3 and 42.12% to 44.15% SiO2). The lime contains 90.84% CaO and the cement has 17.80% SiO2, 3.46% Al2O3, 2.43% Fe2O3 and 58.47% CaO in the combined form of tricalcium silicate, dicalcium silicate, tricalcium aluminate and ferro-tetra calcium aluminate. The results showed that the insertion of locally available stabilizers (lime and cement) improved the strength of the material by almost 80% when the lime was increased from 0% to 14% for 14 days. For compressed cement, a 65% increase in strength was observed under the same conditions. Strength increases with drying time, with a 52% increase in strength at 28 days compared to 14 days. Furthermore, compressed cement bricks have a more compact structure, absorbing very little water (32%). In view of all these results, cement appears to be the best stabilizer, and compression improves compressive strength and reduces water absorption.

关 键 词:Cement-Stabilized Earth Lime-Stabilized Earth Compressed Earth Brick Compressive Strength Water Absorption Test 

分 类 号:TQ1[化学工程]

 

参考文献:

正在载入数据...

 

二级参考文献:

正在载入数据...

 

耦合文献:

正在载入数据...

 

引证文献:

正在载入数据...

 

二级引证文献:

正在载入数据...

 

同被引文献:

正在载入数据...

 

相关期刊文献:

正在载入数据...

相关的主题
相关的作者对象
相关的机构对象