带中间节点的棱柱构件冲击响应试验性能

Saman Rashidyan, A. Maji, T. Ng
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引用次数: 1

摘要

近几十年来,无损检测(NDT)方法被广泛用于评估民用基础设施的状况。在各种无损检测技术中,脉冲响应(IR)由于其简单性和低成本而具有广泛的应用。然而,诸如沿所研究构件的阻抗变化引起的反射等因素可能会对该方法的成功产生不利影响。已经进行了大量的数值和实验研究,以评估机械阻抗变化的影响,如膨胀、颈缩和类似的异常。在这项研究中,证明了连接所研究构件和其他构件的接头的存在,作为阻抗变化的另一个来源。选取某建筑的三层钢-混凝土组合柱进行了试验,并进行了IR试验。所获得的迁移率图是清晰的,并且柱的高度易于测量,具有可接受的误差。这项研究的结果表明,尽管位于受试构件顶部和底部之间的接头是机械阻抗变化的来源,但它们不会掩盖构件底部反射波的谐振频率。因此,IR方法似乎适用于确定具有中间节点的棱柱构件的长度,例如具有支撑的未知桥梁基础的桩和地下建筑的柱。
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Performance of Impulse Response Testing on Prismatic Members with Intermediate Joints
Nondestructive Testing (NDT) methods have extensively been used to assess the conditions of civil infrastructure in the recent decades. Among various NDT techniques, Impulse Response (IR) has a vast application due to its simplicity and low cost. However, factors such as reflections from changes in impedance along the investigated members can adversely influence the success of the method. Numerous numerical and experimental studies have already been performed to evaluate the effect of change in mechanical impedances such as bulging, necking and similar anomalies. In this study, the effect of the presence of joints connecting the investigated members to other members, as another source of impedance change, is demonstrated.  A three-story steel-concrete composite column of a building was selected for testing and IR tests were conducted. The obtained mobility graphs were clear, and the height of the column was easily measured with an acceptable error. The results of this study show that although the joints located between the top and bottom of the tested member are sources of change in mechanical impedance, they do not result in concealing the resonant frequencies from the wave reflected from the bottom of the member. Thus, IR method seems to be applicable in determining the length of prismatic members with intermediate joints such as piles of unknown bridge foundations with bracing and columns of buried buildings.
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来源期刊
CiteScore
1.30
自引率
60.00%
发文量
0
审稿时长
47 weeks
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