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Smart monitoring of strengthened beams made of ultrahigh performance concrete using integrated and nonintegrated acoustic emission approach

机译:使用集成和非整体声发射方法对超高性能混凝土制成的加强梁的智能监控

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摘要

Ultrahigh performance concrete (UHPC) is one of the recent advancements in construction building materials and popularly used as a precast applications or strengthening material. The current paper attempts to improve understanding about fracture and failure mechanisms of UHPC application as a strengthening material using acoustic emission (AE) technique. The paper proposes an integrated and nonintegrated approach to relate the mechanical energy with AE energy for (i) undamaged reinforced concrete (RC) beams and (ii) damaged RC beams strengthened with UHPC. The integrated approach evaluates the damage mechanisms by evaluating sentry function (logarithmic ratio of mechanical and acoustic energy), while nonintegrated approach considers superimposition of flexure and AE response, load versus AE energy behavior and damage index. To validate the proposed approach, experiments are conducted on (i) control RC beams and (ii) RC beams strengthened with UHPC layers of t, 1.5t, and 2t thickness (where t = 10 mm). From the study, it is found that analysis of structures using both the approaches can overcome corresponding limitations. Hence, to completely characterize the damage, both methods are recommended.
机译:超高性能混凝土(UHPC)是施工建筑材料最近的最新进步之一,并用作预制应用或加强材料。目前的纸张试图改善使用声发射(AE)技术的UHPC应用的裂缝和失效机制的理解。本文提出了一种集成和非整治方法,以将机械能与AE能量的机械能(I)造成的抗性钢筋混凝土(RC)梁和(ii)用UHPC加强的损坏的RC梁。综合方法通过评估哨兵函数(机械和声能量的对数比)来评估损坏机制,而非整治方法认为弯曲和AE响应的叠加,负荷与AE能量行为和损伤指数。为了验证所提出的方法,对(i)控制RC梁和(ii)使用UHPC层的RC梁进行实验,用T,1.5T和2T厚度(其中T = 10mm)加强。从研究来看,发现使用两种方法的结构分析可以克服相应的限制。因此,要完全表征损坏,建议两种方法。

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