Thermoelastic effect in compacted steel wire ropes under uniaxial loading

IF 3.7 3区 工程技术 Q1 INSTRUMENTS & INSTRUMENTATION
Piotr Szade, Mariusz Szot, B. Kubiś
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引用次数: 8

Abstract

ABSTRACT The aim of the research presented in this work was to verify the occurrence of the thermoelastic effect in compacted steel wire ropes for future research applications and TSA methods. It was examined using a Testo 890 thermal camera during tests consisting of 10 cycles of loading of rope samples to levels under the yield stress, performed on a tensile strength machine. Average measured changes of temperature caused by a 1000 MPa change of stress were 0.8 K during loading and 1.0 K during unloading. It was found that rapid unloading caused temperature changes that were closer to the theoretical values calculated for an isotropic body and adiabatic conditions. Probable reasons for those differences were investigated. Furthermore, temperatures of samples recorded after each cycle of loading were analysed. Heating of samples during cycles of elastic elongation was observed, pointing to exothermal processes taking place in the internal structure of the ropes. Application of IR cameras to detect dynamic load changes using the thermoelastic effect in steel wire ropes was proposed and evaluated. Usage of described novelty method in inspection of steel wire ropes during the operation was discussed.
单轴载荷作用下压实钢丝绳的热弹性效应
摘要本文研究的目的是验证压实钢丝绳中热弹性效应的存在,以供未来的研究应用和TSA方法。在拉伸强度机上进行的测试中,使用Testo 890热像仪对其进行了检查,测试包括将绳索样品加载到屈服应力下的水平的10个循环。由1000MPa的应力变化引起的温度的平均测量变化在加载期间为0.8K,在卸载期间为1.0K。研究发现,快速卸载引起的温度变化更接近各向同性体和绝热条件下计算的理论值。调查了这些差异的可能原因。此外,对每个加载循环后记录的样品的温度进行了分析。观察到样品在弹性伸长率循环过程中的加热,表明绳索的内部结构发生了放热过程。提出并评价了红外摄像机在利用钢丝绳热弹性效应检测动态载荷变化方面的应用。讨论了所述新颖方法在钢丝绳运行过程中的检测中的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Quantitative Infrared Thermography Journal
Quantitative Infrared Thermography Journal Physics and Astronomy-Instrumentation
CiteScore
6.80
自引率
12.00%
发文量
17
审稿时长
>12 weeks
期刊介绍: The Quantitative InfraRed Thermography Journal (QIRT) provides a forum for industry and academia to discuss the latest developments of instrumentation, theoretical and experimental practices, data reduction, and image processing related to infrared thermography.
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