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Characteristic Compressive Strength of Cement-Stabilized Rammed Earth

机译:水泥稳定夯土的抗压强度

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摘要

The standard codes of practice on the rammed-earth construction are limited. It is essential to ascertain the characteristic compressive strength of the cement-stabilized rammed earth (CSRE) for the structural design of CSRE walls. The test procedures for determining the characteristic compressive strength of CSRE are not available in the standard codes of practices. The specimen size and its slenderness can affect the compressive strength of CSRE elements. This paper deals with the relationships between the specimen's aspect ratio and compressive strength for CSRE using two cement contents (7 and 10%) and two densities. Both cylindrical and wallette specimens having an aspect ratio varying between 2 and 5.81 were tested for compressive strength. The results show that there is hardly any reduction in compressive strength as the aspect ratio was increased from 2 to 5.81 (a reduction in compressive strength of 1 and 3-5% for specimens with density of 1,800 and 1,700 kg/m~3, respectively). The study clearly demonstrates that the characteristic compressive strength of CSRE can be obtained by testing cylindrical (150 mm diameter and 300 mm height) or prism specimens (150 mm square cross section and 300 mm height) without applying any correction factor. Furthermore, since the moisture content in the specimen has a significant influence on the compressive strength of CSRE, it is recommended to adopt the wet compressive strength for structural design.
机译:夯土构造的标准操作规范受到限制。对于CSRE墙的结构设计,必须确定水泥稳定夯土(CSRE)的特征抗压强度。在标准操作规程中没有确定CSRE特性抗压强度的测试程序。试样的尺寸及其细长度会影响CSRE元件的抗压强度。本文使用两种水泥含量(7%和10%)和两种密度处理CSRE试样的纵横比与抗压强度之间的关系。测试纵横比在2到5.81之间变化的圆柱和薄壁试样的抗压强度。结果表明,随着长宽比从2增加到5.81,抗压强度几乎没有降低(密度分别为1,800和1,700 kg / m〜3的试样的抗压强度降低了1和3-5%) )。该研究清楚地表明,通过测试圆柱(直径150 mm和高度300 mm)或棱柱试样(150 mm正方形横截面和300 mm高)可以获得CSRE的特征抗压强度,而无需应用任何校正因子。此外,由于样品中的水分含量对CSRE的抗压强度有很大影响,因此建议在结构设计中采用湿抗压强度。

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  • 来源
    《Journal of materials in civil engineering》 |2017年第2期|04016203.1-04016203.7|共7页
  • 作者单位

    Dept. of Civil Engineering, Indian Institute of Science, Bangalore 560012, India;

    Dept. of Civil Engineering, Indian Institute of Science, Bangalore 560012, India;

    Dept. of Civil Engineering, Indian Insti-tute of Science, Bangalore 560012, India;

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