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基于细观力学的木材干燥应力演变机制研究 被引量:7
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作者 郝晓峰 徐康 +2 位作者 李贤军 乔建政 吴义强 《林产工业》 北大核心 2021年第6期1-6,20,共7页
为探明木材微观组织对木材干燥应力的影响规律,从木材微观构造角度出发,结合复合材料细观力学理论构建了木材干燥破坏力学模型,定量分析了不同薄/厚壁细胞力学性能比及二者体积含量对干燥应力的影响机制,为精准优化木材干燥工艺提供理... 为探明木材微观组织对木材干燥应力的影响规律,从木材微观构造角度出发,结合复合材料细观力学理论构建了木材干燥破坏力学模型,定量分析了不同薄/厚壁细胞力学性能比及二者体积含量对干燥应力的影响机制,为精准优化木材干燥工艺提供理论基础。 展开更多
关键词 木材干燥 应力 薄壁细胞 厚壁细胞 破坏力学模型
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开采沉陷对供电铁塔破坏的安全评价准则
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作者 王孝义 宋选民 《山西煤炭》 2018年第5期1-6,共6页
基于理论分析和现场实际情况,对山区开采沉陷对地面供电铁塔的影响进行分析,建立对应的安全评价准则。研究结果表明:影响高压线路正常运行的主要因素是地表不均匀下沉、水平拉伸变形和倾斜;地面供电铁塔顶端两端点之间的位移差值大,倾... 基于理论分析和现场实际情况,对山区开采沉陷对地面供电铁塔的影响进行分析,建立对应的安全评价准则。研究结果表明:影响高压线路正常运行的主要因素是地表不均匀下沉、水平拉伸变形和倾斜;地面供电铁塔顶端两端点之间的位移差值大,倾斜度大,线路的斜长变化大,易引起线路绷直或拉断事故;给出预测供电铁塔的变形情况和计算导线在绷紧和拉断状态的临界值计算方法,线路绷直的评价准则由线路的抗拉强度所决定的最大伸长量ΔL决定。研究结果可为山区开采沉陷引起高压供电铁塔的保护提供有益的借鉴和参考。 展开更多
关键词 开采沉陷 供电铁塔 破坏力学模型 安全准则
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Analytical solution for stress and deformation of the mining floor based on integral transform 被引量:5
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作者 Feng Qiang Jiang Binsong 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2015年第4期581-586,共6页
Following exploitation of a coal seam, the final stress field is the sum of in situ stress field and an excavation stress field. Based on this feature, we firstly established a mechanics analytical model of the mining... Following exploitation of a coal seam, the final stress field is the sum of in situ stress field and an excavation stress field. Based on this feature, we firstly established a mechanics analytical model of the mining floor strata. Then the study applied Fourier integral transform to solve a biharmonic equation,obtaining the analytical solution of the stress and displacement of the mining floor. Additionally, this investigation used the Mohr–Coulomb yield criterion to determine the plastic failure depth of the floor strata. The calculation process showed that the plastic failure depth of the floor and floor heave are related to the mining width, burial depth and physical–mechanical properties. The results from an example show that the curve of the plastic failure depth of the mining floor is characterized by a funnel shape and the maximum failure depth generates in the middle of mining floor; and that the maximum and minimum principal stresses change distinctly in the shallow layer and tend to a fixed value with an increase in depth. Based on the displacement results, the maximum floor heave appears in the middle of the stope and its value is 0.107 m. This will provide a basis for floor control. Lastly, we have verified the analytical results using FLAC3 Dto simulate floor excavation and find that there is some deviation between the two results, but their overall tendency is consistent which illustrates that the analysis method can well solve the stress and displacement of the floor. 展开更多
关键词 Integral transform Mining floor Plastic failure depth Floor heave Analytical solution
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