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Impact of relative humidity on the mechanical behavior of compacted earth as a building material

机译:相对湿度对夯实土建材料力学性能的影响

摘要

Earthen buildings can provide an answer to face difficulties in modern constructions in both terms of sociology, economics as well as ecology. However, the difficulty to understand and to predict their long term behavior represents an obstacle to their spreading. In some cases for example, unsuitable repairs on old constructions can lead to catastrophic situations.More specifically, during their lifetime, earthen walls have to face important variations of indoor and outdoor relative humidity, which induces variations and gradients in their water content. In this context, this paper aims at addressing an important aspect, not yet fully understood: the impact of these variations on the deformability and the strength of unstabilized earth. To that purpose, unconfined compression tests, with and without unload–reload cycles, were performed on different compacted earth samples conditioned at different relative humidities. Tested samples were prepared from materials coming from different existing constructions and sieved at 10 mm. During the tests, the axial and radial strains were measured using non-contact sensors and an image correlation system. This study shows that earthen materials have a complex mechanical behavior, involving the phenomena of plastic straining and mechanical damage. Moreover, both of these phenomena show a strong dependence on the relative humidity at which the samples were stored, as well as on the activity of the clayey portion of the earth.
机译:在社会学,经济学以及生态学方面,土木建筑都可以解决现代建筑面临的困难。但是,难以理解和预测其长期行为代表了其传播的障碍。例如,在某些情况下,对旧建筑的不适当维修可能导致灾难性的情况。更具体地说,土墙在其使用寿命期间必须面对室内和室外相对湿度的重要变化,从而导致含水量的变化和梯度。在这种情况下,本文旨在解决一个尚未充分理解的重要方面:这些变化对不稳定土的变形性和强度的影响。为此,在不同的相对湿度条件下,对不同的压实土样进行了无限制压缩试验(有无卸载-再加载循环)。测试样品是用来自不同现有结构的材料制备的,并以10 mm的筛网进行过筛。在测试过程中,使用非接触式传感器和图像关联系统测量了轴向和径向应变。这项研究表明,土质材料具有复杂的机械性能,涉及塑性应变和机械损伤现象。而且,这两种现象都显示出对样品存储的相对湿度以及地球黏土部分活性的强烈依赖性。

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