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两相合金中的水静应力对宏观流变行为和微观断裂机制的影响 被引量:1
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作者 李中华 顾海澄 《西安交通大学学报》 EI CAS CSCD 北大核心 1991年第1期97-106,共10页
理论分析和有限元数值结果表明,由软、硬两相相互作用而产生的水静拉伸和压缩应力使两相合金中软质相硬化而硬质相软化。这种软化和硬化倾向与相连续性无关。软化、硬化程度随相含量的增加而下降。组分相的硬化和软化效应对两相合金的... 理论分析和有限元数值结果表明,由软、硬两相相互作用而产生的水静拉伸和压缩应力使两相合金中软质相硬化而硬质相软化。这种软化和硬化倾向与相连续性无关。软化、硬化程度随相含量的增加而下降。组分相的硬化和软化效应对两相合金的流变行为有着重要影响,是使用混合律估计双相合金流变应力失效的一个重要原因。本文还给出相间应力三轴性(定义为水静应力与等效应力之比)的分布形态。为揭示双相合金的微观断裂机制提供了一个清晰的物理图景。 展开更多
关键词 两相合金 水静应力 流变行为 断裂
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Dynamic characteristics of coal specimens with varying static preloading levels under low-frequency disturbance load
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作者 WEN Xiao-ze FENG Guo-rui +5 位作者 GUO Jun YU Lu-yang QIAN Rui-peng ZHANG Jie ZHANG Peng-fei FENG Wen-ming 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第8期2644-2657,共14页
The mechanical properties of residual coal pillars under the influence of upward mining disturbances significantly affect the safety of residual mining activities on working faces.This study conducted low-frequency di... The mechanical properties of residual coal pillars under the influence of upward mining disturbances significantly affect the safety of residual mining activities on working faces.This study conducted low-frequency disturbance dynamic uniaxial compression tests on coal specimens using a self-developed dynamic-static load coupling electro-hydraulic servo system,and studied the strength evolutions,surface deformations,acoustic emission(AE)characteristic parameters,and the failure modes of coal specimens with different static preloading levels were studied.The disturbance damage is positively correlated with the coal specimen static preload level.Specifically,the cumulative AE count rates of the initial accelerated damage stage for the coal specimens with static preloading level of 60%and 70%of the uniaxial compressive strength(UCS)were 2.66 and 3.19 times that of the 50%UCS specimens,respectively.Macroscopically,this behaviour manifested as a decrease in the compressive strength,and the mean strengths of the disturbance-damaged coal specimens with 60%and 70%of UCS static preloading decreased by 8.53%and 9.32%,respectively,compared to those of the specimens under pure static loading.The crack sources,such as the primary fissures,strongly control the dynamic response of the coal specimen.The difference between the dynamic responses of the coal specimens and that of dense rocks is significant. 展开更多
关键词 low-frequency disturbance dynamic response coal specimens static preloading level
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Crack propagation mechanism of compression-shear rock under static-dynamic loading and seepage water pressure 被引量:10
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作者 周志华 曹平 叶洲元 《Journal of Central South University》 SCIE EI CAS 2014年第4期1565-1570,共6页
To reveal the water inrush mechanics of underground deep rock mass subjected to dynamic disturbance such as blasting, compression-shear rock crack initiation rule and the evolution of crack tip stress intensity factor... To reveal the water inrush mechanics of underground deep rock mass subjected to dynamic disturbance such as blasting, compression-shear rock crack initiation rule and the evolution of crack tip stress intensity factor are analyzed under static-dynamic loading and seepage water pressure on the basis of theoretical deduction and experimental research. It is shown that the major influence factors of the crack tip stress intensity factor are seepage pressure, dynamic load, static stress and crack angle. The existence of seepage water pressure aggravates propagation of branch cracks. With the seepage pressure increasing, the branch crack experiences unstable extension from stable propagation. The dynamic load in the direction of maximum main stress increases type I crack tip stress intensity factor and its influence on type II crack intensity factor is related with crack angle and material property. Crack initiation angle changes with the dynamic load. The initial crack initiation angle of type I dynamic crack fracture is 70.5°. The compression-shear crack initial strength is related to seepage pressure, confining pressure, and dynamic load. Experimental results verify that the initial crack strength increases with the confining pressure increasing, and decreases with the seepage pressure increasing. 展开更多
关键词 static-dynamic loading seepage pressure stress intensity factor initiation of crack
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Prediction of plastic zone size around circular tunnels in non-hydrostatic stress field 被引量:6
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作者 Behnam Bagheri Fazlollah Soltani Hamid Mohammadi 《International Journal of Mining Science and Technology》 SCIE EI 2014年第1期81-85,共5页
This paper discusses the calculation of plastic zone properties around circular tunnels to rock-masses that satisfy the Hoek–Brown failure criterion in non-hydrostatic condition,and reviews the calculation of plastic... This paper discusses the calculation of plastic zone properties around circular tunnels to rock-masses that satisfy the Hoek–Brown failure criterion in non-hydrostatic condition,and reviews the calculation of plastic zone and displacement,and the basis of the convergence–confinement method in hydrostatic condition.A two-dimensional numerical simulation model was developed to gain understanding of the plastic zone shape.Plastic zone radius in any angles around the tunnel is analyzed and measured,using different values of overburden(four states)and stress ratio(nine states).Plastic zone radius equations were obtained from fitting curve to data which are dependent on the values of stress ratio,angle and plastic zone radius in hydrostatic condition.Finally validation of this equation indicate that results predict the real plastic zone radius appropriately. 展开更多
关键词 Plastic zone radius Convergence-confinement method Non-hydrostatic condition Stress ratio
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FEM Static Analysis of ITER Overall Gravity Support System
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作者 JIAN Guangde MOU Zongze LONG Yongxing ZHOU Caipin WANG Aike HOU Binglin ZOU Hui 《Southwestern Institute of Physics Annual Report》 2006年第1期186-187,共2页
For the static structural of ITER overall gravity support are analyzed by the ANSYS software of finite element method (FEM). All the maximum stress intensity and maximum displacement of overall gravity support syste... For the static structural of ITER overall gravity support are analyzed by the ANSYS software of finite element method (FEM). All the maximum stress intensity and maximum displacement of overall gravity support system are within the allowable stress limit and displacement limit. 展开更多
关键词 Stress analysis Static stress Stress intensity DISPLACEMENT
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