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Healing performance on concrete under mode I fracture by ultrasonic testing using embedded transducers, acoustic emission and digital image correlation method

机译:用嵌入式换能器,声发射和数字图像相关方法对MODE I裂缝混凝土中混凝土的愈合性能

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Crack formation is the main cause of concrete mechanical properties degradation. Autonomous self-healing (i.e.SH) encapsulation systems promise material recovery by filling the cracks with healing agent (providing healing and sealing). The cracking of concrete elements is experimentally investigated by mode-I failure tests in small-dimensioned concrete beams subjected to three-point bending tests. The perplexing fracture process phenomena require an advanced monitoring system. In this study, an optical method (i.e. Digital Image Correlation- DIC), Acoustic Emission (i.e. AE) and an ultrasonic wave propagation technique based on embedded piezoelectric transducers, are combined in order to evaluate the crack formation and opening of three concrete beams in which embedded SH encapsulated system is applied. The loading is applied in two stages. The initial loading is responsible for the crack initiation and formation as well as for the SH capsules breakage. After the healing agent is released and dried, the concrete samples are reloaded. The DIC technique calculates the crack opening and visualizes the crack formation and propagation path. In parallel, the features extracted by the AE technique quantify the fracture process at different loading stages and detect the regions in which healing occurs by indicating the SH capsule breakage. Finally, a few couples of low-cost PZT transducers based on the concept of Smart Aggregates (i.e. SMAGs) are embedded in the concrete beams for the estimation of the state of damage. Incorporation of the aforementioned fracture analysis provides a full-field view of concrete failure performance and is the keystone to characterize healing performance.
机译:裂纹的形成是混凝土的机械性能退化的主要原因。自主自愈(i.e.SH)封装系统通过与愈合剂(提供愈合和密封)填充所述裂缝保证物料回收。混凝土元件的开裂通过实验模式-I故障测试在小尺寸的混凝土梁进行三点弯曲试验,研究。错综复杂断裂过程现象需要一个先进的监控系统。在这项研究中,光学方法(即数字图像相关 - DIC),声发射(即AE)和基于嵌入式压电换能器的超声波传输技术中,被组合,以评估所述裂纹形成和三个具体的开口梁在该嵌入式SH包封系统被应用。装载在两个阶段中应用。初始加载负责裂纹萌生和形成以及用于SH胶囊破裂。的愈合剂被释放并干燥后,混凝土样品被重新加载。该DIC技术计算裂缝开口和可视化的裂纹的形成和传播路径。并行地,由AE技术提取的特征量化在不同装载台断裂过程,并检测在其中通过指示SH胶囊破损发生愈合的区域。最后,基于智能聚集体(即SMAGs)的概念低成本PZT换能器的一些夫妇埋置在混凝土梁的损害的状态的估计。上述断裂分析的掺入提供了混凝土破坏性能全场图,并且是表征愈合性能的基石。

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