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首页> 外文期刊>Bulletin of earthquake engineering >Crack initiation and propagation in unreinforced masonry specimens subjected to repeated in-plane loading during light damage
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Crack initiation and propagation in unreinforced masonry specimens subjected to repeated in-plane loading during light damage

机译:在轻损伤期间在反复面内载荷的未原始砌体试样中的裂纹启动和繁殖

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摘要

In recent years, gas extraction in the northern part of the Netherlands has been causing low-magnitude, induced, shallow earthquakes. Besides safety, the prediction and evaluation of light' damage due to these induced ground motions is important, as it is related to economic and serviceability losses, and societal unrest. An experimental and numerical campaign is ongoing at Delft University of Technology, aiming to improve the knowledge of the underlying physics of crack initiation and propagation in unreinforced masonry (URM) structures typical in the Netherlands. A damage scale and damage parameter are defined herein in order to objectively quantify cracking damage as a function of the number, length, and width of cracks in masonry walls. The cracking mechanisms are studied for URM walls and spandrels subjected to in-plane loading. Displacements, strains, and loads under which cracking starts and propagates are evaluated and correlations are sought. The Digital Image Correlation measuring system is used to accurately detect crack formation and the evolution of the cracking pattern. This is also utilised to validate and calibrate non-linear finite element models. From the experiments, drift values are obtained for the light damage state of the masonry walls. A range between 0.3 parts per thousand and 1.1 parts per thousand is set as belonging to light damage. Moreover, a damage accumulation or material degradation was observed during cyclic testing. Additionally, fracture-mechanics based, micro and macro finite element models are capable of reproducing the repetitive behaviour of the tests.
机译:近年来,荷兰北部的天然气提取一直导致低幅度,诱导,浅地震。除了安全,由于这些诱导的地面运动引起的光线损坏的预测和评价是重要的,因为它与经济和可维护性损失以及社会骚乱有关。 Delft技术大学进行了一个实验和数值运动,旨在提高荷兰典型典型的典型砌体(URM)结构中裂纹启动和繁殖的潜在物理学的知识。在此定义了损伤量表和损伤参数,以便于客观地量化裂缝损伤作为砖石墙壁中裂缝的数量,长度和宽度的函数。研究了urm壁和经过面内载荷的螺旋壁和刮刀的裂缝机构。评估开裂和传播的位移,菌株和负载,并寻求相关性。数字图像相关测量系统用于精确地检测裂缝形成和裂缝图案的演化。这也用于验证和校准非线性有限元模型。从实验中,获得漂移值,用于砌体墙壁的光损伤状态。每千份0.3份和1.1份千分之一的范围设定为属于灯损伤。此外,在循环测试期间观察到损伤积累或物质降解。此外,基于骨折,微观和宏的有限元模型能够再现测试的重复行为。

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