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Experimental Study of Adobe Masonry and its Adherence with Reinforced Concrete Confinement Elements

机译:Adobe Masonry的实验研究及其钢筋混凝土监禁元件的粘附性研究

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The constructions with adobe masonry confined with concrete elements, experience a separation between them, mainly due to the inherent physical and chemical characteristics of both materials that are not very compatible with each other; adobe, a raw masonry with a high clay content, undergoes changes in its shape in the presence of humidity and temperature variation, which affects its adherence to concrete elements, compromising the confinement, function and stability of the walls. The different coefficients of expansion and contraction between concrete and adobe, added to their physical properties, make it difficult to achieve adequate adherence between these two materials. In the present study, 6 mixtures of earth (adobe) were designed, with different granulometry proportions to measure the adherence between adobe and concrete, identifying the most suitable one with the purpose of using it as a bonding material in walls for houses, from this study, with the best response being the sample MA-3. The test methodology was based on standards applicable to concrete and annealed brick masonry, as there is no available one for this material. Thirty-six adobe specimens adhered to concrete were tested, to which a normal load was gradually applied to their cross section, to a piece of adobe between two pieces of concrete, recording the ultimate horizontal shear stress between both materials. The scope is considered the result of the test of adobe pieces adhered to concrete subjected to horizontal shear force, considering different granulometry in the composition of the adobe mixture. This work provides a starting point for the standardization of the test and the justification of the need for an additional element that contributes to the confinement.
机译:与Adobe Masonry限制的结构局限于混凝土元件,经历它们之间的分离,主要是由于两种材料的固有物理和化学特性,这些材料彼此不太兼容; Adobe是一种具有高粘土含量的未加工砌体,在湿度和温度变化存在下进行其形状的变化,这会影响其对混凝土元件的粘附,损害墙壁的限制,功能和稳定性。混凝土和土坯之间的不同系数和收缩系数加入其物理性质,使得难以在这两种材料之间实现充分的粘附性。在本研究中,设计了6个地球(Adobe)混合物,具有不同的粒度比例,以测量Adobe和混凝土之间的粘附,识别最合适的粒度,目的是使用它作为房屋墙壁的粘合材料研究,具有最佳反应是样品MA-3。测试方法基于适用于混凝土和退火砖砌砖的标准,因为这种材料没有可用的标准。测试了三十六个粘附在混凝土上的Adobe样本,将正常载荷逐渐施加到它们的横截面,到两片混凝土之间的一块土坯,记录两种材料之间的最终水平剪切应力。考虑到Adobe混合物的组合物中的不同粒度测定,认为该范围被认为是粘附在水平剪切力的混凝土中的粘附件的测试结果。这项工作为测试标准化提供了一个起点,以及需要有助于禁闭的额外元素的必要性的理由。

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