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基于能量与损伤演化模型的装配式钢管混凝土支撑变形机理
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作者 申培武 欧阳冬 何成 《安全与环境工程》 北大核心 2025年第5期137-146,共10页
开展装配式支撑变形机理的研究可为相关工程应用提供理论依据,促进行业的可持续发展。为深入研究装配式钢管混凝土支撑的变形机理,制备了2组足尺寸钢管混凝土柱体试样,开展了试样的单轴压缩模型试验,同时基于试验结果建立了试样的能量... 开展装配式支撑变形机理的研究可为相关工程应用提供理论依据,促进行业的可持续发展。为深入研究装配式钢管混凝土支撑的变形机理,制备了2组足尺寸钢管混凝土柱体试样,开展了试样的单轴压缩模型试验,同时基于试验结果建立了试样的能量演化模型,结合能量参数和损伤力学提出了试样的损伤演化模型。结果表明:试样的峰前变形过程包含3个阶段,试样端部混凝土的张裂是造成试样最终破坏的主要原因,钢管的设置和混凝土厚度的增加可提升试样的抗变形能力;能量演化模型可较好地分析试样的能量演化过程,能量的输入、储存及耗散过程与试样各变形阶段存在明显的对应关系,混凝土厚度的增加提高了试样内部的可储存能量,导致系统需要输入更多的能量来完成试样的变形过程;损伤演化模型可较好地分析试样的损伤演化过程,试样的损伤程度与试样的耗散能、变形程度呈正相关;考虑到试样的实际损伤程度低于1,在模型试验与工程应用中应重点关注试样的前2个损伤演化阶段,混凝土厚度的增加会导致试样的损伤过程变慢而最终损伤程度增大,试样的剩余可损伤程度可用来评价试样的残余抗变形能力。研究成果有利于进一步理解装配式钢管混凝土支撑的变形机理,并为相关工程应用提供理论参考。 展开更多
关键词 装配式支撑 钢管混凝土 变形机理 能量演化模型 损伤演化模型
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Energy evolution model and energy response characteristics of freeze-thaw damaged sandstone under uniaxial compression
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作者 ZHANG Chun-yang TAN Tao ZHAO Er-cheng 《Journal of Central South University》 2025年第6期2328-2348,共21页
Rocks will suffer different degree of damage under freeze-thaw(FT)cycles,which seriously threatens the long-term stability of rock engineering in cold regions.In order to study the mechanism of rock FT damage,energy c... Rocks will suffer different degree of damage under freeze-thaw(FT)cycles,which seriously threatens the long-term stability of rock engineering in cold regions.In order to study the mechanism of rock FT damage,energy calculation method and energy self-inhibition model are introduced to explore their energy characteristics in this paper.The applicability of the energy self-inhibition model was verified by combining the data of FT cycles and uniaxial compression tests of intact and pre-cracked sandstone samples,as well as published reference data.In addition,the energy evolution characteristics of FT damaged rocks were discussed accordingly.The results indicate that the energy self-inhibition model perfectly characterizes the energy accumulation characteristics of FT damaged rocks under uniaxial compression before the peak strength and the energy dissipation characteristics before microcrack unstable growth stage.Taking the FT damaged cyan sandstone sample as an example,it has gone through two stages dominated by energy dissipation mechanism and energy accumulation mechanism,and the energy rate curve of the pre-cracked sample shows a fall-rise phenomenon when approaching failure.Based on the published reference data,it was found that the peak total input energy and energy storage limit conform to an exponential FT decay model,with corresponding decay constants ranging from 0.0021 to 0.1370 and 0.0018 to 0.1945,respectively.Finally,a linear energy storage equation for FT damaged rocks was proposed,and its high reliability and applicability were verified by combining published reference data,the energy storage coefficient of different types of rocks ranged from 0.823 to 0.992,showing a negative exponential relationship with the initial UCS(uniaxial compressive strength).In summary,the mechanism by which FT weakens the mechanical properties of rocks has been revealed from an energy perspective in this paper,which can provide reference for related issues in cold regions. 展开更多
关键词 freeze-thaw damage energy self-inhibition model energy evolution linear energy storage equation
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Brittleness evaluation of gas-bearing coal based on statistical damage constitution model and energy evolution mechanism
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作者 XUE Yi WANG Lin-chao +5 位作者 LIU Yong RANJITH P G CAO Zheng-zheng SHI Xu-yang GAO Feng KONG Hai-ling 《Journal of Central South University》 2025年第2期566-581,共16页
Accurate assessment of coal brittleness is crucial in the design of coal seam drilling and underground coal mining operations.This study proposes a method for evaluating the brittleness of gas-bearing coal based on a ... Accurate assessment of coal brittleness is crucial in the design of coal seam drilling and underground coal mining operations.This study proposes a method for evaluating the brittleness of gas-bearing coal based on a statistical damage constitutive model and energy evolution mechanisms.Initially,integrating the principle of effective stress and the Hoek-Brown criterion,a statistical damage constitutive model for gas-bearing coal is established and validated through triaxial compression tests under different gas pressures to verify its accuracy and applicability.Subsequently,employing energy evolution mechanism,two energy characteristic parameters(elastic energy proportion and dissipated energy proportion)are analyzed.Based on the damage stress thresholds,the damage evolution characteristics of gas bearing coal were explored.Finally,by integrating energy characteristic parameters with damage parameters,a novel brittleness index is proposed.The results demonstrate that the theoretical curves derived from the statistical damage constitutive model closely align with the test curves,accurately reflecting the stress−strain characteristics of gas-bearing coal and revealing the stress drop and softening characteristics of coal in the post-peak stage.The shape parameter and scale parameter represent the brittleness and macroscopic strength of the coal,respectively.As gas pressure increases from 1 to 5 MPa,the shape parameter and the scale parameter decrease by 22.18%and 60.45%,respectively,indicating a reduction in both brittleness and strength of the coal.Parameters such as maximum damage rate and peak elastic energy storage limit positively correlate with coal brittleness.The brittleness index effectively captures the brittleness characteristics and reveals a decrease in brittleness and an increase in sensitivity to plastic deformation under higher gas pressure conditions. 展开更多
关键词 gas pressure statistical damage constitutive model energy evolution mechanism brittleness evaluation gas bearing coal
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