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应用无损和半无损检测方法评估木轴导轨的技术状况和耐久性

Evaluation of Technical Condition and Durability of Wooden Shaft Guides with Application of Non-Destructive and Semi-Destructive Testing Methods.

作者信息

Pasek Rafał, Jaskowska-Lemańska Justyna, Wałach Daniel, Rokita Tomasz, Kamiński Paweł

机构信息

Faculty of Mechanical Engineering and Robotics, AGH University of Science and Technology, Adama Mickiewicza Ave. 30, 30-059 Krakow, Poland.

Faculty of Civil Engineering and Resource Management, AGH University of Science and Technology, Adama Mickiewicza Ave. 30, 30-059 Kraków, Poland.

出版信息

Materials (Basel). 2022 Jul 7;15(14):4769. doi: 10.3390/ma15144769.

Abstract

This article addresses the issue of the durability of mining shaft equipment elements. Shafts as a transport route are one of the most exploited parts of a mine. Consequently, their components are exposed to high mechanical stresses, which cause the deterioration of their mechanical properties. In the case of shafts with timber components, elements such as the shaft guides are evaluated on a purely macroscopic basis and are often unnecessarily replaced. This paper presents the possibilities for the application of non-destructive methods (ultrasound and laser scanning) and semi-destructive methods (sclerometric and drill resistance tests). The experimental results suggest that it was possible to derive correlations between penetration depth and drill resistance tests with bulk density. However, these tests were not directly correlated with flexural strength. The ultrasound studies did not indicate a significant relationship with the physical or mechanical properties. In contrast, the method of comparing the variation (wear) in the tested guides using 3D laser scanning demonstrated a high accuracy; moreover, this method is independent of factors that may affect the results of penetration depth or drill resistance measurements. The application of non-destructive and semi-destructive tests for the determination of the physical and mechanical properties of timber elements of mine shafts' equipment may enable the detection of a defect earlier or extend the service life of elements, hence limiting the downtime of shaft operation related to the replacement of elements.

摘要

本文探讨了矿井井筒设备部件的耐久性问题。井筒作为运输通道,是矿井中使用最为频繁的部分之一。因此,其部件承受着巨大的机械应力,这会导致其机械性能下降。对于带有木质部件的井筒,诸如井筒罐道之类的部件仅在宏观层面进行评估,并且常常被不必要地更换。本文介绍了应用无损检测方法(超声检测和激光扫描)以及半无损检测方法(硬度测试和钻阻力测试)的可能性。实验结果表明,有可能得出钻阻力测试中的穿透深度与体积密度之间的相关性。然而,这些测试与抗弯强度并无直接关联。超声研究并未表明其与物理或机械性能存在显著关系。相比之下,使用三维激光扫描比较被测罐道的变化(磨损)的方法显示出了高精度;此外,该方法不受可能影响穿透深度或钻阻力测量结果的因素的影响。应用无损和半无损检测来确定矿井井筒设备木质部件的物理和机械性能,可能会更早地检测到缺陷或延长部件的使用寿命,从而减少与部件更换相关的井筒运行停机时间。

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