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单轴受压下钢纤维再生骨料混凝土本构模型 被引量:15
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作者 高丹盈 朱倩 刘杰 《应用基础与工程科学学报》 EI CSCD 北大核心 2020年第2期396-406,共11页
通过150mm×150mm×300mm钢纤维再生骨料混凝土棱柱体的单轴受压试验,研究了水胶比、再生骨料取代率和钢纤维体积率等参数对钢纤维再生混凝土轴压应力-应变全曲线的影响,揭示了钢纤维再生混凝土的破坏机理和参数变化对钢纤维再... 通过150mm×150mm×300mm钢纤维再生骨料混凝土棱柱体的单轴受压试验,研究了水胶比、再生骨料取代率和钢纤维体积率等参数对钢纤维再生混凝土轴压应力-应变全曲线的影响,揭示了钢纤维再生混凝土的破坏机理和参数变化对钢纤维再生混凝土单轴受压力学性能影响的规律.结果表明,钢纤维改变了再生混凝土的破坏形态,随着钢纤维体积率增大,试件由劈裂破坏转变为剪切破坏,剪切面与荷载垂线的夹角增大,峰值应力和峰值应变均有一定程度的提高.相同钢纤维体积率下,钢纤维再生混凝土峰值应力受再生骨料取代率变化的影响较小;但是,随着再生骨料取代率的增加,钢纤维再生混凝土峰值应变增大,初始弹性模量减小.与普通混凝土类似,随水胶比的减小,钢纤维再生混凝土应力应变曲线下降段的斜率增大.基于对试验数据的综合分析,建立了考虑再生骨料取代率、钢纤维体积率影响的钢纤维再生混凝土轴压本构模型. 展开更多
关键词 钢纤维再生混凝土 钢纤维体积率 再生骨料取代率 水胶比 轴压本构模型
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A whole process damage constitutive model for layered sandstone under uniaxial compression based on Logistic function
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作者 LIU Dong-qiao GUO Yun-peng +1 位作者 LING Kai LI Jie-yu 《Journal of Central South University》 SCIE EI CAS 2024年第7期2411-2430,共20页
Bedding structural planes significantly influence the mechanical properties and stability of engineering rock masses.This study conducts uniaxial compression tests on layered sandstone with various bedding angles(0... Bedding structural planes significantly influence the mechanical properties and stability of engineering rock masses.This study conducts uniaxial compression tests on layered sandstone with various bedding angles(0°,15°,30°,45°,60°,75°and 90°)to explore the impact of bedding angle on the deformational mechanical response,failure mode,and damage evolution processes of rocks.It develops a damage model based on the Logistic equation derived from the modulus’s degradation considering the combined effect of the sandstone bedding dip angle and load.This model is employed to study the damage accumulation state and its evolution within the layered rock mass.This research also introduces a piecewise constitutive model that considers the initial compaction characteristics to simulate the whole deformation process of layered sandstone under uniaxial compression.The results revealed that as the bedding angle increases from 0°to 90°,the uniaxial compressive strength and elastic modulus of layered sandstone significantly decrease,slightly increase,and then decline again.The corresponding failure modes transition from splitting tensile failure to slipping shear failure and back to splitting tensile failure.As indicated by the modulus’s degradation,the damage characteristics can be categorized into four stages:initial no damage,damage initiation,damage acceleration,and damage deceleration termination.The theoretical damage model based on the Logistic equation effectively simulates and predicts the entire damage evolution process.Moreover,the theoretical constitutive model curves closely align with the actual stress−strain curves of layered sandstone under uniaxial compression.The introduced constitutive model is concise,with fewer parameters,a straightforward parameter determination process,and a clear physical interpretation.This study offers valuable insights into the theory of layered rock mechanics and holds implications for ensuring the safety of rock engineering. 展开更多
关键词 layered sandstone uniaxial compression damage evolution Logistic function constitutive model
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