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浅埋煤层开采顶板切落条件下支架动载效应 被引量:12
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作者 陈忠辉 张凌凡 +1 位作者 杨登峰 江博文 《煤炭学报》 EI CAS CSCD 北大核心 2017年第2期322-327,共6页
针对浅埋煤层开采周期来压过程中顶板沿煤壁切落时对支架造成冲击的现象,根据基本顶回转切落造成直接顶岩体非线性破坏特征,建立了由基本顶-直接顶-支架-采空区矸石组成的力学模型,应用突变理论和岩石动力学方法,推导了直接顶失稳前后... 针对浅埋煤层开采周期来压过程中顶板沿煤壁切落时对支架造成冲击的现象,根据基本顶回转切落造成直接顶岩体非线性破坏特征,建立了由基本顶-直接顶-支架-采空区矸石组成的力学模型,应用突变理论和岩石动力学方法,推导了直接顶失稳前后基本顶切落荷载作用下的支架压缩量表达式,分析了顶板切落过程中的动载效应,获得了顶板切落条件下支架工作阻力。研究结果表明:基本顶回转切落和直接顶失稳破坏是造成支架冲击的主因,直接顶岩体变形的突变量决定了冲击荷载的大小,系统失稳时的支架荷载除了与基本顶的周期来压步距、上覆岩层荷载、直接顶厚度有关外,还与支架和直接顶岩体的刚度比、直接顶岩体性质等因素相关。 展开更多
关键词 浅埋煤层 顶板切落 突变理论 动载效应
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面向门式起重机机-结构一体化的起升动力学模型构建方法
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作者 贾璇斌 苏友成 +2 位作者 董青 徐格宁 李屹东 《机床与液压》 北大核心 2025年第17期214-225,共12页
起重机货物起升过程的振动会降低起升过程的平稳性、影响设备的本质安全。要准确、有针对性地消除或减轻动载效应对设备本体的影响,需精确建模。针对现有起升动力学模型存在建模不精确和机构不全面的问题,提出一种面向门式起重机机-结... 起重机货物起升过程的振动会降低起升过程的平稳性、影响设备的本质安全。要准确、有针对性地消除或减轻动载效应对设备本体的影响,需精确建模。针对现有起升动力学模型存在建模不精确和机构不全面的问题,提出一种面向门式起重机机-结构一体化的起升动力学模型构建方法。以75 t-65.5 m门式起重机为工程实例,根据其机-结构组成方式,结合起升拖动传递方案,建立门式起重机动力学模型,并推导出起升振动系统的运动微分方程。在确定起升过程三阶段特征的基础上,借助MATLAB/Simulink工具,建立机-结构一体化多自由度联合仿真模型。通过模型求解,得到不同质量货物离地起升过程中钢丝绳拉力及起升动载系数的变化情况。利用控制变量法,分析起升质量、驱动类型、起升速度、系统刚度4种因素对起升动载系数的影响程度,并提出抑制动载效应的有效控制方案。结果表明:系统刚度、起升速度、驱动类型、起升载荷4种因素对动载系数的影响程度依次减小;分别控制系统刚度、起升速度、驱动类型、起升质量单一因素,动载系数分别下降14.66%、13.33%、3.02%、1.48%;综合控制各影响因素,起升动载系数从1.425降低至1.091,下降23.44%,证明所提方法的科学性和可行性,从理论层面上为起重机械本质安全设计、疲劳寿命预测提供动载效应控制依据。 展开更多
关键词 门式起重机 力学模型 起升系数 动载效应
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Fatigue Crack Growth Behavior of High-strength Steel for Ships
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作者 LEI Yin−hui WANG Ke +3 位作者 ZHANG Ruo−nan LI Yong−zheng QIN Chuang WEI Peng−yu 《船舶力学》 北大核心 2025年第6期952-963,共12页
As a typical steel,the fatigue of marine high-strength steels has been emphasized by scholars.In this paper,the fatigue performance and crack growth mechanism of a high-strength steel for ships are investigated by exp... As a typical steel,the fatigue of marine high-strength steels has been emphasized by scholars.In this paper,the fatigue performance and crack growth mechanism of a high-strength steel for ships are investigated by experimental methods.First,the fatigue threshold test and fatigue crack growth rate test of this high-strength steel under different stress ratios were carried out.The influence of stress ratio on the fatigue properties of this steel was analyzed.Secondly,scanning electron microscope was used to analyze the crack growth specimen section of this steel.The crack growth and failure mechanism of this steel were revealed.Finally,based on the above research results,the stress ratio effect of high-strength steel was investigated from the perspectives of crack closure and driving force.Considering the fatigue behavior in the near-threshold stage and the destabilization stage,a fatigue crack growth behavior prediction model of highstrength steel was established.The accuracy of the model was verified by test data.Moreover,the applicability of the modified model to various materials and its excellent predictive ability were verified through comparison with literature data and existing models. 展开更多
关键词 high-strength steel fatigue test load ratio effect dual-parameter-driving force prediction model
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Brazilian disc test study on tensile strength-weakening effect of high pre-loaded red sandstone under dynamic disturbance 被引量:20
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作者 GONG Feng-qiang WU Wu-xing ZHANG Le 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第10期2899-2913,共15页
Tensile failure(spalling or slabbing)often occurs on the sidewall of deep tunnel,which is closely related to the coupled stress state of deep rock mass under high pre-static load and dynamic disturbance.To reveal the ... Tensile failure(spalling or slabbing)often occurs on the sidewall of deep tunnel,which is closely related to the coupled stress state of deep rock mass under high pre-static load and dynamic disturbance.To reveal the mechanism of rock tensile failure caused by this coupled stress mode,the Brazilian disc tests were carried on red sandstone under high pre-static load induced by dynamic disturbance.Based on the pure static tensile fracture load of red sandstone specimen,two static load levels(80%and 90%of the pure static tensile fracture load)were selected as the initial high pre-static loading state,and then the dynamic disturbance load was applied until the rock specimen was destroyed.The dynamic disturbance loading mode adopted a sinusoidal wave(sine-wave)load,and the loading wave amplitude was 20%and 10%of the pure static tensile fracture load,respectively.The dynamic disturbance frequencies were set to 1,10,20,30,40,and 50 Hz.The results show that the tensile failure strength and peak displacement of red sandstone specimens under coupled load actions are lower than those under pure static tensile load,and both parameters decrease significantly with the increase of dynamic disturbance frequency.With the increase of dynamic disturbance frequency,the decrease range of tensile strength of red sandstone increased from 3.3%to 9.4%when the pre-static load level is 80%.While when the pre-static load level is 90%,the decrease range will increase from 7.4%to 11.6%.This weakening effect of tensile strength shows that the deep surrounding rock is more likely to fail under the coupled load actions of pre-static load and dynamic disturbance.In this tensile failure mechanism of the deep surrounding rock,the stress environment of deep sidewall rock determines that the failure mode of rock is a tensile failure,the pre-static load level dominates the tensile failure strength of surrounding rock,and dynamic disturbance promotes the strength-weakening effect and affects the weakening range. 展开更多
关键词 SPALLING deep surrounding rock strength-weakening effect pre-static load dynamic disturbance tensile failure Brazilian disc test
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Practical elasto-plastic damage model for dynamic loading and nonlinear analysis of Koyna concrete dam 被引量:2
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作者 齐虎 李云贵 吕西林 《Journal of Central South University》 SCIE EI CAS 2013年第9期2586-2592,共7页
The elasto-plastic damage model for concrete under static loading,previously proposed,was extended to account for the concrete strain-rate through viscous regularization of the evolution of the damage variables.In ord... The elasto-plastic damage model for concrete under static loading,previously proposed,was extended to account for the concrete strain-rate through viscous regularization of the evolution of the damage variables.In order to describe the energy dissipation by the motion of the structure under dynamic loading,a damping model which only includes stiffness damp stress was proposed and incorporated into the proposed rate dependent model to consider the energy dissipation at the material scale.The proposed model was developed in ABAQUS via UMAT and was verified by the simulations of concrete specimens under both tension and compression uniaxial loading at different strain rates.The nonlinear analysis of Koyna concrete dam under earthquake motions indicates that adding stiffness damp into the constitutive model can significantly enhance the calculation efficiency of the dynamic implicit analysis for greatly improving the numerical stability of the model.Considering strain rate effect in the model can affect the displacement reflection of this structure for slightly enhancing the displacement of the top,and can improve the calculation efficiency for greatly reducing the cost time. 展开更多
关键词 stiffness damp strain-rate sensitivity CONCRETE constitutive model
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A nonlinear hydroelastic method considering wave memory effect for ship load responses in irregular waves
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作者 陈占阳 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第9期2058-2070,共13页
Since the amplitude and frequency of irregular waves change with time,great difficulties are brought for solving ship load responses in random waves.To take the effect of various frequencies of irregular waves into co... Since the amplitude and frequency of irregular waves change with time,great difficulties are brought for solving ship load responses in random waves.To take the effect of various frequencies of irregular waves into consideration in load responses of hull,the wave memory effect is necessary.A semi-analytical method is introduced for the time-domain retardation functions,and then a nonlinear hydroelastic method considering memory effect for ships in irregular waves is proposed.Segmented self-propelling model experiments of a container ship were carried out in a towing tank,a ship motion measuring device for self-propelling model test was designed.Whipping responses of the ship in regular and irregular waves are analyzed.Finally,the calculation results are compared with those measured by segmented model experiments,and the result indicates that the memory effect has little effect on load responses of ship in regular waves,but pronounced effect on results in irregular waves.Moreover,the presented method is reasonable for the prediction of ship load responses in irregular waves. 展开更多
关键词 HYDROELASTICITY memory effect retardation function segmented self-propelling model test irregular waves
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