首页> 外文期刊>NDT & E international >A feasibility analysis on the application of eddy current testing to the detection of the most detrimental defects in historical metallic tie-rods
【24h】

A feasibility analysis on the application of eddy current testing to the detection of the most detrimental defects in historical metallic tie-rods

机译:涡流探伤法检测历史金属拉杆中最有害缺陷的可行性分析

获取原文
获取原文并翻译 | 示例
           

摘要

Historical metallic tie-rods have a very important structural role in buildings characterized by arches and vaults because they balance the horizontal thrusts, avoiding the overturning of vertical supports. Nowadays, no information can be found in the literature about the non-destructive detection of possible defects in historical tie rods and their effects on the in-service structural integrity. On the other hand, many Non-Destructive Techniques are commonly used to inspect modern metallic components and structures, but their viability for cultural heritage is still to be assessed.In this paper, the application of eddy current testing to the historical metallic tie-rods of the Milan cathedral (Italy) is evaluated, discussed and adapted. The considered historical structures are characterized by a very heterogeneous material, irregular surface geometry and high inherent defectiveness. Recently, in-service failures showed the most detrimental flaws in tie-rods consist of handmade straight scarf forged welds. A first experimental eddy current testing approach, based on off-the-shelf high and low frequency probes, was performed. Results were partially unsatisfactory and showed the challenge is not the maximization of sensitivity and spatial resolution, as in typical modern applications, but their suitable minimization. Consequently, a customized eddy current testing technique, based on a novel low frequency probe, was designed and optimized. Its performance was evaluated by numerical simulations as well as by experimental testing. Based on the satisfactory achievements, the customized eddy current testing technique was applied on site on seven tie-rods. The most significant discontinuities could be effectively detected.
机译:具有历史意义的金属拉杆在以拱门和拱顶为特征的建筑物中具有非常重要的结构作用,因为它们平衡了水平推力,避免了垂直支撑的倾覆。如今,在文献中找不到有关历史拉杆中可能存在的缺陷的无损检测及其对在役结构完整性的影响的信息。另一方面,许多非破坏性技术通常用于检查现代金属部件和结构,但其在文化遗产中的可行性尚待评估。本文将涡流测试在历史金属拉杆中的应用对米兰大教堂(意大利)的外观进行了评估,讨论和改编。所考虑的历史结构的特征是非常异质的材料,不规则的表面几何形状和很高的固有缺陷。最近,在役故障表明,拉杆中最有害的缺陷是手工制作的直围巾锻造焊缝。基于现成的高频和低频探头,进行了第一个实验性涡流测试方法。结果部分不尽人意,表明挑战不是像典型的现代应用中的灵敏度和空间分辨率最大化,而是其合适的最小化。因此,设计和优化了一种基于新型低频探头的定制涡流测试技术。通过数值模拟和实验测试来评估其性能。基于令人满意的成绩,在七根拉杆上现场应用了定制的涡流测试技术。可以最有效地检测出最重要的不连续性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号