线弧加成型钢单圈剪切螺栓连接的压磁行为

IF 2.6 3区 材料科学 Q2 MATERIALS SCIENCE, CHARACTERIZATION & TESTING
Sheng Bao, Yan Li, Jun Ye
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引用次数: 0

摘要

本文研究了线弧快速成型(WAAM)钢螺栓连接单圈剪切破坏的压磁响应。其目的是探索将压磁测量作为一种无损方法来检测 WAAM 钢连接在剪切载荷作用下的失效过程。通过对相对于沉积方向的不同加载方向的试样进行单调拉伸试验,获得了材料的机械性能。然后,对 36 个具有两种印刷层方向和不同尺寸的连接试样进行了失效测试。在整个加载过程中,试样周围的应力诱导磁场由磁性探头在线监测。结果发现,从压磁响应可以观察到 WAAM 钢的各向异性。搭接连接的破坏模式包括净截面拉伸、端部劈裂、剪切破坏和倾斜承载。结果表明,磁响应表现出与机械响应类似的行为。利用磁场-位移曲线可以预测试样的破坏模式。研究表明,压磁场可以作为 WAAM 钢构件即将发生剪切破坏的重要指标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Piezomagnetic Behaviour of Wire Arc Additively Manufactured Steel Single-lap Shear Bolted Connections

In this paper, the piezomagnetic response of single-lap shear failure of wire arc additively manufactured (WAAM) steel bolted connections was investigated. It aims to explore the use of piezomagnetic measurement as a nondestructive method to detect the failure process of WAAM steel connections under shear loads. The mechanical properties of the materials were obtained by monotonic tensile tests on coupons with different directions of loading relative to the deposition direction. Then, 36 connecting specimens with two printing layer orientations and varying dimensions were tested to failure. The stress-induced magnetic fields around the specimens were monitored online by magnetic probes throughout the loading process. It is found that the anisotropy of WAAM steel can be observed from the piezomagnetic response. The failure modes of lap connections include net section tension, end-splitting, shear-out and tilt-bearing. The results show that the magnetic response exhibits similar behavior to the mechanical response. It is possible to predict the failure mode of the specimens using the magnetic field-displacement curve. The study demonstrates that the piezomagnetic field can be an important indicator of impending shear failure of WAAM steel elements.

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来源期刊
Journal of Nondestructive Evaluation
Journal of Nondestructive Evaluation 工程技术-材料科学:表征与测试
CiteScore
4.90
自引率
7.10%
发文量
67
审稿时长
9 months
期刊介绍: Journal of Nondestructive Evaluation provides a forum for the broad range of scientific and engineering activities involved in developing a quantitative nondestructive evaluation (NDE) capability. This interdisciplinary journal publishes papers on the development of new equipment, analyses, and approaches to nondestructive measurements.
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