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使用声发射和超声联合技术对有缺陷灌浆套筒连接中的损伤进展进行表征

Characterization of Damage Progress in the Defective Grouted Sleeve Connection Using Combined Acoustic Emission and Ultrasonics.

作者信息

Zhang Lu, Fang Zhenmin, Tang Yongze, Li Hongyu, Liu Qizhou

机构信息

College of Civil Engineering and Architecture, Guilin University of Technology, Guilin 541004, China.

出版信息

Sensors (Basel). 2022 Nov 7;22(21):8579. doi: 10.3390/s22218579.

Abstract

The grouted sleeve connection is one of the most widely used connections for prefabricated buildings (PBs). Usually, its quality can have a significant impact on the safety of the whole PB, especially for the internal flaws that form during sleeve grouting. It is directly related to the mechanical performance and failure behavior of the grouted sleeve. Therefore, it is essential to understand the damage progression of the defective grouted sleeve connection. However, destructive testing is the mainstream measure to evaluate the grout sleeves, which is not applicable for in situ inspection. Therefore, this paper proposes a combined acoustic emission (AE) and ultrasonic testing (UT) method to characterize the damage progress of a grouted sleeve with different degrees of internal flaws under tensile loading. The UT was conducted before loading to evaluate the internal flaws. Additionally, the AE was used as the processing monitoring technique during the tensile testing. Two damage modes were identified: (i) brittle mode associated with the rebar pullout; (ii) ductile mode associated with the rapture of the rebar. The UT energy ratio was selected as the most sensitive feature to the internal flaws, both numerically and experimentally. The AE signatures of different damage phases and different damage modes were determined and characterized. For the brittle and ductile damage modes, two and three phases appeared in the AE activities, respectively. The proposed combined AE and UT method can provide a reliable and convenient nondestructive evaluation of grouted sleeves with internal flaws. Moreover, it can also characterize the damage progress of the grouted sleeve connections in real-time.

摘要

灌浆套筒连接是预制建筑(PBs)中使用最广泛的连接方式之一。通常,其质量会对整个预制建筑的安全产生重大影响,尤其是套筒灌浆过程中形成的内部缺陷。这直接关系到灌浆套筒的力学性能和破坏行为。因此,了解有缺陷的灌浆套筒连接的损伤发展过程至关重要。然而,破坏性试验是评估灌浆套筒的主流方法,不适用于现场检测。因此,本文提出了一种声发射(AE)和超声检测(UT)相结合的方法,以表征在拉伸载荷下具有不同程度内部缺陷的灌浆套筒的损伤进展。在加载前进行超声检测以评估内部缺陷。此外,在拉伸试验过程中使用声发射作为过程监测技术。识别出两种破坏模式:(i)与钢筋拔出相关的脆性模式;(ii)与钢筋断裂相关的延性模式。通过数值和实验验证,超声能量比被选为对内部缺陷最敏感的特征。确定并表征了不同损伤阶段和不同损伤模式的声发射信号特征。对于脆性和延性损伤模式,声发射活动分别出现了两个和三个阶段。所提出的声发射和超声检测相结合的方法可以为具有内部缺陷的灌浆套筒提供可靠且便捷的无损评估。此外,它还可以实时表征灌浆套筒连接的损伤进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/42c5/9656869/770e0c43f31e/sensors-22-08579-g001.jpg

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