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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Research on the Mechanical Characteristics of Cyclic Loading and Unloading of Rock Based on Infrared Thermal Image Analysis
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Research on the Mechanical Characteristics of Cyclic Loading and Unloading of Rock Based on Infrared Thermal Image Analysis

机译:基于红外线热图像分析的岩石循环加载与卸载力学特性研究

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In the operations of underground rock engineering, such as mining, the formation of goafs is often accompanied by unloading and energy effects. In this study, a cyclic loading and unloading stress test is carried out to analyze the strength characteristics of the loaded samples under different loading and unloading ranges as well as different numbers of cycles. The rock force is accompanied by substantial energy changes. To better fit the energy analysis under cyclic loading and unloading conditions, thermal infrared radiation characteristic analysis is performed during rock loading and unloading. An infrared radiation camera is adopted to detect the infrared characteristics of the rock force process after cyclic loading and unloading. Multiangle detection is implemented on the temperature, temperature field, and frequency histogram. The analysis shows that cyclic loading and unloading first strengthen and then weaken the rock. Moreover, the failure caused by the local stress concentration leads to a sharp increase in the temperature. There are significant temperature fluctuations before and after failure, and the temperature field after failure can be divided into three zones, namely, the normal temperature zone, heating zone, and mutational temperature zone, to comprehensively reflect that rock compression failure which is accompanied by the process of energy accumulation and release. On the basis of infrared energy analysis, the index of the energy release rate is introduced, and the loading and unloading analysis model is constructed. The research results reveal that rock failure is accompanied by the process of energy accumulation and release, which provides evidence for the analysis of the spatial stability of the rock mass under cyclic loading and unloading conditions and engineering excavation.
机译:在地下岩石工程的运作中,如采矿,缺羊的形成往往伴随着卸载和能量效应。在该研究中,进行了循环加载和卸载应力测试,以分析不同装载和卸载范围下加载样品的强度特性以及不同数量的循环。摇滚力伴随着大量能量变化。为了更好地拟合循环加载和卸载条件下的能量分析,在岩石装载和卸载期间进行热红外辐射特性分析。采用红外辐射相机来检测循环加载和卸载后摇滚力过程的红外特性。在温度,温度场和频率直方图上实现多层次检测。分析表明,循环加载和卸载首先加强,然后削弱岩石。此外,由局部应力集中引起的故障导致温度急剧增加。发生故障前后存在显着的温度波动,并且故障后的温度场可分为三个区域,即常温区,加热区和突变温度区,全面反映岩石压缩失效,伴随着伴随的岩石压缩失效能量积累和释放过程。在红外能量分析的基础上,介绍了能量释放率的指标,构建了装载和卸载分析模型。研究结果表明,岩石故障伴随着能量积累和释放过程,为循环加载和卸载条件下的岩石质量的空间稳定性分析了证据。

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