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Case study on the mechanics of NPR anchor cable compensation for large deformation tunnel in soft rock in the Transverse Mountain area,China 被引量:1
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作者 LI Yong ZHENG Jing +3 位作者 HUO Shu-sen WANG Feng-nian HE Man-chao TAO Zhi-gang 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第6期2054-2069,共16页
A study was conducted to analyze the deformation mechanism of strongly weathered quartz schist in the Daliangshan Tunnel,located in the western Transverse Mountain area.A large deformation problem was experienced duri... A study was conducted to analyze the deformation mechanism of strongly weathered quartz schist in the Daliangshan Tunnel,located in the western Transverse Mountain area.A large deformation problem was experienced during the tunnel construction.To mitigate this problem,a support system was designed incorporating negative Poisson ratio(NPR)anchor cables with negative Poisson ratio effect.Physical model experiments,field experiments,and numerical simulation experiments were conducted to investigate the compensation mechanical behavior of NPR anchor cables.The large deformations of soft rocks in the Daliangshan Tunnel are caused by a high ground stress,a high degree of joint fracture development,and a high degree of surrounding rock fragmentation.A compensation mechanics support system combining long and short NPR anchor cables was suggested to provide sufficient counter-support force(approximately 350 kN)for the surrounding rock inside the tunnel.Comparing the NPR anchor cable support system with the original support system used in the Daliangshan tunnel showed that an NPR anchor cable support system,combining cables of 6.3 m and 10.3 m in length,effectively prevented convergence of surrounding rock deformation,and the integrated settlement convergence value remained below 300 mm.This study provides an effective scientific basis for resolving large deformation problems in deeply buried soft rocks in western transverse mountain areas. 展开更多
关键词 soft rock large deformation NPR anchor cable physical model numerical simulation compensation mechanics
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Effect of annealing temperature on microstructure and mechanical properties of Mg-Zn-Zr-Nd alloy with large final rolling deformation
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作者 ZHANG Jin-hai NIE Kai-bo +2 位作者 ZHANG Jin-hua DENG Kun-kun LIU Zhi-long 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第6期1774-1789,共16页
In this study,the Mg-3Zn-0.5Zr-χNd(χ=0,0.6)alloys were subjected to final rolling treatment with large deformation of 50%.The impact of annealing temperatures on the microstructure and mechanical properties was inve... In this study,the Mg-3Zn-0.5Zr-χNd(χ=0,0.6)alloys were subjected to final rolling treatment with large deformation of 50%.The impact of annealing temperatures on the microstructure and mechanical properties was investigated.The rolled Mg-3Zn-0.5Zr-0.6Nd alloy exhibited an ultimate tensile strength of 386 MPa,a yield strength of 361 MPa,and an elongation of 7.1%.Annealing at different temperatures resulted in reduced strength and obviously increased elongation for both alloys.Optimal mechanical properties for the Mg-3Zn-0.5Zr-0.6Nd alloy were achieved after annealing at 200℃,with an ultimate tensile strength of 287 MPa,a yield strength of 235 MPa,and an elongation of 26.1%.The numerous deformed microstructures,twins,and precipitated phases in the rolled alloy could impede the deformation at room temperature and increase the work hardening rate.After annealing,a decrease in the work hardening effect and an increase in the dynamic recovery effect were obtained due to the formation of fine equiaxed grains,and the increased volume fraction of precipitated phases,which significantly improved the elongation of the alloy.Additionally,the addition of Nd element could enhance the annealing recrystallization rate,reduce the Schmid factor difference between basal and prismatic slip systems,facilitate multi-system slip initiation and improve the alloy plasticity. 展开更多
关键词 Mg-Zn-Zr-Nd alloy large final rolling deformation annealing temperatures microstructures mechanical properties
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LARGE DEFORMATION OF CIRCULAR MEMBRANE UNDER THE CONCENTRATED FORCE 被引量:11
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作者 陈山林 郑周练 《应用数学和力学》 CSCD 北大核心 2003年第1期25-28,共4页
Making use of basic equation of large deformation of circular membrane under the concentrated force and its boundary conditions and Hencky transformation, the problems of nonlinear boundary condition were solved. The ... Making use of basic equation of large deformation of circular membrane under the concentrated force and its boundary conditions and Hencky transformation, the problems of nonlinear boundary condition were solved. The Hencky transformation was extended and a exact solution of large deformation of circular membrane under the concentrated force has been obtained. 展开更多
关键词 圆薄膜 集中力 大变形 精确解 Hercky变换
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Anchoring effect and energy-absorbing support mechanism of large deformation bolt 被引量:14
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作者 ZHAO Tong-bin XING Ming-lu +2 位作者 GUO Wei-yao WANG Cun-wen WANG Bo 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第2期572-581,共10页
To research the anchoring effect of large deformation bolt,tensile and drawing models are established.Then,the evolution laws of drawing force,bolt axial force and interfacial shear stress are analyzed.Additionally,th... To research the anchoring effect of large deformation bolt,tensile and drawing models are established.Then,the evolution laws of drawing force,bolt axial force and interfacial shear stress are analyzed.Additionally,the influence of structure element position on the anchoring effect of large deformation bolt is discussed.At last,the energy-absorbing support mechanism is discussed.Results show that during the drawing process of normal bolt,drawing force,bolt axial force and interfacial shear stress all gradually increase as increasing the drawing displacement,but when the large deformation bolt enters the structural deformation stage,these three values will keep stable;when the structure element of large deformation bolt approaches the drawing end,the fluctuation range of drawing force decreases,the distributions of bolt axial force and interfacial shear stress of anchorage section are steady and the increasing rate of interfacial shear stress decreases,which are advantageous for keeping the stress stability of the anchorage body.During the working process of large deformation bolt,the strain of bolt body is small,the working resistance is stable and the distributions of bolt axial force and interfacial shear stress are steady.When a rock burst event occurs,the bolt and bonding interface cannot easily break,which weakens the dynamic disaster degree. 展开更多
关键词 rock burst large deformation bolt numerical simulation pull-out test anchoring effect energy-absorbing mechanism
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Characteristics of microseismic b-value associated with rock mass large deformation in underground powerhouse caverns at different stress levels 被引量:13
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作者 LI Biao DING Quan-fu +3 位作者 XU Nu-wen DAI Feng XU Yuan QU Hong-lue 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第2期693-711,共19页
Rock mass large deformation in underground powerhouse caverns has been a severe hazard in hydropower engineering in Southwest China.During the development of rock mass large deformation,a sequence of fractures was gen... Rock mass large deformation in underground powerhouse caverns has been a severe hazard in hydropower engineering in Southwest China.During the development of rock mass large deformation,a sequence of fractures was generated that can be monitored using microseismic(MS)monitoring techniques.Two MS monitoring systems were established in two typical underground powerhouse caverns featuring distinct geostress levels.The MS b-values associated with rock mass large deformation and their temporal variation are analysed.The results showed that the MS bvalue in course of rock mass deformation was less than 1.0 in the underground powerhouse caverns at a high stress level while larger than 1.5 at a low stress level.Prior to the rock mass deformation,the MS b-values derived from both the high-stress and low-stress underground powerhouse caverns show an incremental decrease over 10%within 10 d.The results contribute to understanding the fracturing characteristics of MS sources associated with rock mass large deformation and provide a reference for early warning of rock mass large deformation in underground powerhouse caverns. 展开更多
关键词 underground powerhouse caverns rock mass large deformation stress level microseismic monitoring bvalue
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Effects of liquefaction-induced large lateral ground deformation on pile foundations 被引量:5
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作者 王艳丽 程展林 王勇 《Journal of Central South University》 SCIE EI CAS 2013年第9期2510-2518,共9页
The pile-soil system interaction computational model in liquefaction-induced lateral spreading ground was established by the finite difference numerical method.Considering an elastic-plastic subgrade reaction method,n... The pile-soil system interaction computational model in liquefaction-induced lateral spreading ground was established by the finite difference numerical method.Considering an elastic-plastic subgrade reaction method,numerical methods involving finite difference approach of pile in liquefaction-induced lateral spreading ground were derived and implemented into a finite difference program.Based on the monotonic loading tests on saturated sand after liquefaction,the liquefaction lateral deformation of the site where group piles are located was predicted.The effects of lateral ground deformation after liquefaction on a group of pile foundations were studied using the fmite difference program mentioned above,and the failure mechanism of group piles in liquefaction-induced lateral spreading ground was obtained.The applicability of the program was preliminarily verified.The results show that the bending moments at the interfaces between liquefied and non-liquefied soil layers are larger than those at the pile's top when the pile's top is embedded.The value of the additional static bending moment is larger than the peak dynamic bending moment during the earthquake,so in the pile foundation design,more than the superstructure's dynamics should be considered and the effect of lateral ground deformation on pile foundations cannot be neglected. 展开更多
关键词 liquefaction-induced lateral spreading ground pile foundation large post-liquefaction deformation finite difference method
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Static-deformation based fault diagnosis for damping spring of large vibrating screen 被引量:7
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作者 彭利平 刘初升 +1 位作者 李珺 王宏 《Journal of Central South University》 SCIE EI CAS 2014年第4期1313-1321,共9页
Based on the statics theory, a novel and feasible twice-suspended-mass method(TSMM) was proposed to deal with the seldom-studied issue of fault diagnosis for damping springs of large vibrating screen(LVS). With the st... Based on the statics theory, a novel and feasible twice-suspended-mass method(TSMM) was proposed to deal with the seldom-studied issue of fault diagnosis for damping springs of large vibrating screen(LVS). With the static balance characteristic of the screen body/surface as well as the deformation compatibility relation of springs considered, static model of the screen surface under a certain load was established to calculate compression deformation of each spring. Accuracy of the model was validated by both an experiment based on the suspended mass method and the properties of the 3D deformation space in a numerical simulation. Furthermore, by adopting the Taylor formula and the control variate method, quantitative relationship between the change of damping spring deformation and the change of spring stiffness, defined as the deformation sensitive coefficient(DSC), was derived mathematically, from which principle of the TSMM for spring fault diagnosis is clarified. In the end, an experiment was carried out and results show that the TSMM is applicable for diagnosing the fault of single spring in a LVS. 展开更多
关键词 static deformation suspended mass method large vibrating screen damping spring fault diagnosis
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Methods of configuration test and deformation analysis for large airship 被引量:1
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作者 ZHAI Yutao SHEN Yongzheng +1 位作者 YAN Xiangbin TAN Huifeng 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2022年第4期951-960,共10页
In recent years, high-altitude aerostats have been increasingly developed in the direction of multi-functionality and large size. Due to the large size and the high flexibility, new challenges for large aerostats have... In recent years, high-altitude aerostats have been increasingly developed in the direction of multi-functionality and large size. Due to the large size and the high flexibility, new challenges for large aerostats have appeared in the configuration test and the deformation analysis. The methods of the configuration test and the deformation analysis for large airship have been researched and discussed. A tested method of the configuration,named internal scanning, is established to quickly obtain the spatial information of all surfaces for the large airship by the three-dimensional(3D) laser scanning technology. By using the surface wrap method, the configuration parameters of the large airship are calculated. According to the test data of the configuration, the structural dimensions such as the distances between the characteristic sections are measured. The method of the deformation analysis for the airship contains the algorithm of nonuniform rational B-splines(NURBS) and the finite element(FE)method. The algorithm of NURBS is used to obtain the reconfiguration model of the large airship. The seams are considered and the seam areas are divided. The FE model of the middle part of the large airship is established. The distributions of the stress and the strain for the large airship are obtained by the FE method. The position of the larger deformation for the airship is found. 展开更多
关键词 large airship deformation analysis three-dimensional(3D)laser scanning technology non-uniform rational B-splines(NURBS) system engineering
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On Numerical Modelling of Industrial Powder Compaction Processes for Large Deformation of Endochronic Plasticity at Finite Strains
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作者 A R Khoei A Bakhshiani M Mofid 《厦门大学学报(自然科学版)》 CAS CSCD 北大核心 2002年第S1期95-96,共2页
Compaction processes are one the most important par ts of powder forming technology. The main applications are focused on pieces for a utomotive, aeronautic, electric and electronic industries. The main goals of the c... Compaction processes are one the most important par ts of powder forming technology. The main applications are focused on pieces for a utomotive, aeronautic, electric and electronic industries. The main goals of the compaction processes are to obtain a compact with the geometrical requirements, without cracks, and with a uniform distribution of density. Design of such proc esses consist, essentially, in determine the sequence and relative displacements of die and punches in order to achieve such goals. A.B. Khoei presented a gener al framework for the finite element simulation of powder forming processes based on the following aspects; a large displacement formulation, centred on a total and updated Lagrangian formulation; an adaptive finite element strategy based on error estimates and automatic remeshing techniques; a cap model based on a hard ening rule in modelling of the highly non-linear behaviour of material; and the use of an efficient contact algorithm in the context of an interface element fo rmulation. In these references, the non-linear behaviour of powder was adequately desc ribed by the cap plasticity model. However, it suffers from a serious deficiency when the stress-point reaches a yield surface. In the flow theory of plasticit y, the transition from an elastic state to an elasto-plastic state appears more or less abruptly. For powder material it is very difficult to define the locati on of yield surface, because there is no distinct transition from elastic to ela stic-plastic behaviour. Results of experimental test on some hard met al powder show that the plastic effects were begun immediately upon loading. In such mater ials the domain of the yield surface would collapse to a point, so making the di rection of plastic increment indeterminate, because all directions are normal to a point. Thus, the classical plasticity theory cannot deal with such materials and an advanced constitutive theory is necessary. In the present paper, the constitutive equations of powder materials will be discussed via an endochronic theory of plasticity. This theory provides a unifi ed point of view to describe the elastic-plastic behaviour of material since it places no requirement for a yield surface and a ’loading function’ to disting uish between loading an unloading. Endochronic theory of plasticity has been app lied to a number of metallic materials, concrete and sand, but to the knowledge of authors, no numerical scheme of the model has been applied to powder material . In the present paper, a new approach is developed based on an endochronic rate independent, density-dependent plasticity model for describing the isothermal deformation behavior of metal powder at low homologous temperature. Although the concept of yield surface has not been explicitly assumed in endochronic theory, it is shown that the cone-cap plasticity yield surface (Fig.1), which is the m ost commonly used plasticity models for describing the behavior of powder materi al can be easily derived as a special case of the proposed endochronic theory. Fig.1 Trace of cone-cap yield function on the meridian pl ane for different relative density As large deformation is observed in powder compaction process, a hypoelastic-pl astic formulation is developed in the context of finite deformation plasticity. Constitutive equations are stated in unrotated frame of reference that greatly s implifies endochronic constitutive relation in finite plasticity. Constitutive e quations of the endochronic theory and their numerical integration are establish ed and procedures for determining material parameters of the model are demonstra ted. Finally, the numerical schemes are examined for efficiency in the model ling of a tip shaped component, as shown in Fig.2. Fig.2 A shaped tip component. a) Geometry, boundary conditio n and finite element mesh; b) density distribution at final stage of 展开更多
关键词 In On Numerical Modelling of Industrial Powder Compaction Processes for large deformation of Endochronic Plasticity at Finite Strains
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A phenomenological model for plastic flow behavior of rotating band material with a large temperature range 被引量:2
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作者 Yi-cheng Zhu Jia-wei Fu +1 位作者 Lin-fang Qian Jing-hua Cao 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2023年第7期121-133,共13页
The plastic flow behavior of the rotating band material is investigated in this paper. The rotating band material is processed from H96 brass alloy, which is hardened to a much higher yield strength compared to the an... The plastic flow behavior of the rotating band material is investigated in this paper. The rotating band material is processed from H96 brass alloy, which is hardened to a much higher yield strength compared to the annealed one. The dynamically uniaxial compression behavior of the material is tested using the split Hopkinson pressure bar(SHPB) with temperature and strain rate ranging from 297 to 1073 K and500 to 3000 s^(-1), respectively, and a phenomenological plastic flow stress model is developed to describe the mechanical behavior of the material. The material is found to present noticeable temperature sensitivity and weak strain-rate sensitivity. The construction of the plastic flow stress model has two steps. Firstly, three univariate stress functions, taking plastic strain, plastic strain rate and temperature as independent variable, respectively, are proposed by fixing the other two variables. Then, as the three univariate functions describe the special cases of flow stress behavior under various conditions, the principle of stress compatibility is adopted to obtain the complete flow stress function. The numerical results show that the proposed plastic flow stress model is more suitable for the rotating band material than the existing well-known models. 展开更多
关键词 rotating band Plastic flow behavior large temperature range Phenomenological model
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Effects of stress conditions on rheological properties of granular soil in large triaxial rheology laboratory tests 被引量:3
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作者 陈晓斌 张家生 +1 位作者 刘宝琛 唐孟雄 《Journal of Central South University》 SCIE EI CAS 2008年第S1期397-401,共5页
In order to study the rheological properties of red stone granular soil,a series of rheological experiments were executed on large tri-axial rheological apparatus.Under 100,200 and 300 kPa confining stress conditions,... In order to study the rheological properties of red stone granular soil,a series of rheological experiments were executed on large tri-axial rheological apparatus.Under 100,200 and 300 kPa confining stress conditions,the rheological tests were carried out.These experiment results showed that the stress conditions,especially the stress level were the critical influencing factors of the rheological deformation properties.Under the low stress level(S=0.1),the granular soil showed the elastic properties,and there was no obvious rheological deformation.Under the middle stress level(0.2<S≤0.6),creep curves showed the linear viscoelastic rheological properties.However,under the high stress level(S>0.8) creep curves showed the non-linear viscous plastic rheological properties.Especially,under the stress level of S=1.0,the accelerated rheological phase of creep curves occurred at early time with a trend of failure.The stress level had obvious effects on the final rheological deformation of the soil sample,and the final rheological deformation increments nonlinearly increased with stress level.The final rheological deformation increment and step was little under low stress level,while it became large under high stress level,which showed the nonlinearly rheological properties of the granular soil.The confining pressure also had direct effects on final rheological deformation,and the final rheological deformation linearly increased with confining pressure increments. 展开更多
关键词 stress conditions GRANULAR SOIL CREEP large TRIAXIAL rheology test redstone GRANULAR SOIL final CREEP deformation
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挤压性大变形隧道橡塑海绵缓冲层变形释能效应研究 被引量:1
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作者 匡亮 朱建林 +5 位作者 陶伟明 刘志强 吴剑 唐思聪 周路军 齐春 《铁道标准设计》 北大核心 2025年第2期104-110,共7页
为探究橡塑海绵缓冲层在挤压性大变形隧道让压支护中的适用性,采用室内试验、数值模拟、现场测试等手段开展橡塑海绵缓冲层的释能效能研究。主要结论包括:(1)橡塑海绵的单轴压缩试验表明,橡塑海绵受力和变形满足线性关系,当橡塑海绵压... 为探究橡塑海绵缓冲层在挤压性大变形隧道让压支护中的适用性,采用室内试验、数值模拟、现场测试等手段开展橡塑海绵缓冲层的释能效能研究。主要结论包括:(1)橡塑海绵的单轴压缩试验表明,橡塑海绵受力和变形满足线性关系,当橡塑海绵压缩比达到70%时,材料尚未发生破坏,橡塑海绵的压缩变形性能和强度性能均良好,可作为缓冲层设置于挤压大变形隧道各层支护结构之间;(2)数值模拟结果表明,相较于40 cm厚衬砌无缓冲层支护体系和50 cm厚衬砌无缓冲层支护体系,40 cm厚衬砌+10 cm厚缓冲层支护体系对应的围岩拱顶沉降量分别增加7.23%、14.50%,仰拱隆起量分别增加8.86%、17.01%,第三主应力最大值分别降低53.35%和49.86%;(3)兰渝铁路木寨岭隧道大变形段有无缓冲层段受力测试对比试验表明,相较于无缓冲层支护体系,有缓冲层支护体系的支护接触压力、钢筋应力、混凝土应力分别降低55.7%、69.5%、60.9%。综上所述,橡塑海绵缓冲层具有较显著的释能效用,可提升支护体系的受力安全性,可作为一种让压支护手段在挤压性大变形隧道进行应用。 展开更多
关键词 铁路隧道 挤压性大变形 让压支护 缓冲层 橡塑海绵 释能效果
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大断面管幕箱涵顶进引起地表变形的解析解答 被引量:1
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作者 张坤勇 李丹阳 +1 位作者 张梦 沈小锐 《岩土工程学报》 EI CAS 北大核心 2025年第1期184-191,共8页
研究大断面管幕箱涵顶进全过程对土体变形和周围环境的影响,对于事前预测变形并控制施工扰动影响具有重要意义。基于Mindlin解答、修正Sagaseta公式等经典理论解答,分别考虑由正面推进力、摩擦力和土体损失等因素引起的地表变形,提出考... 研究大断面管幕箱涵顶进全过程对土体变形和周围环境的影响,对于事前预测变形并控制施工扰动影响具有重要意义。基于Mindlin解答、修正Sagaseta公式等经典理论解答,分别考虑由正面推进力、摩擦力和土体损失等因素引起的地表变形,提出考虑三者共同作用下的大断面管幕箱涵顶进引起的地表变形计算方法。建立管幕箱涵顶进作用下土体受力模型,采用Mindlin解答分别给出正面推进力和摩擦力引起的土体变形计算公式;基于当层法原理提出由土体损失引起的横向地表沉降计算公式。根据各影响因素的相对独立性,将各因素引起的土体变形量叠加,从而得到一种适用于大断面管幕箱涵顶进施工,可综合考虑多种施工因素和土体三维变形的理论解答公式。通过工程实例验证公式的合理性,研究成果可为实际施工变形预测提供参考。 展开更多
关键词 大断面管幕箱涵 MINDLIN解 地表变形 变形预测
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深部软岩大变形巷道变径分区卸压围岩控制技术及应用 被引量:1
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作者 吴锋锋 谷浩源 +4 位作者 杨培举 刘长友 魏民涛 蒋与飞 王平 《煤炭科学技术》 北大核心 2025年第2期53-67,共15页
为解决深部软岩巷道围岩大变形、返修次数多难题,以泉店煤矿21运输下山为工程背景,采用理论分析、数值模拟及工程实践等方法,提出了巷道变径分区卸压技术,建立了卸压参数理论模型,得出了卸压关键参数选取区间与弹性应变能密度分布规律,... 为解决深部软岩巷道围岩大变形、返修次数多难题,以泉店煤矿21运输下山为工程背景,采用理论分析、数值模拟及工程实践等方法,提出了巷道变径分区卸压技术,建立了卸压参数理论模型,得出了卸压关键参数选取区间与弹性应变能密度分布规律,揭示了钻孔卸压能量耗散原理,确定了卸压关键参数的最佳取值。研究表明:(1)通过变径分区卸压技术改善了浅部围岩能量环境,减少了顶底板能量升高区面积,并将肩角和底角区域聚集能量向深部转移,实现了巷道精准卸压控制。(2)随着浅部小直径钻孔长度(L1)、深部大直径钻孔长度(L2)、深部大直径钻孔半径(r)增加,其弹性应变能密度曲线相应的前峰值、后峰值以及后峰值升高,整体呈正相关。(3)随着深部大直径钻孔间距(D)增加,孔间弹性应变能密度峰值变化呈现先升高后降低再稳定的特点,而钻孔间联合卸压效果与其呈现负相关,依据弹性应变能量峰值增幅得出了影响卸压效果的关键参数权重顺序依次为:L1、L2、r、D。(4)依据理论分析和数值模拟确定了21采区运输下山巷道卸压技术关键参数合理值,巷道实施变径分区卸压技术后,两帮及顶底板变形量分别降低了58.7%、23.7%以及27.4%,巷道稳定得到有效控制,证实了变径分区卸压技术的有效性。 展开更多
关键词 深部大变形巷道 软岩 能量释放 弹性能密度 变径分区卸压技术
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深埋高应力隧道软岩大变形开挖补偿控制研究
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作者 陶志刚 许闯 +2 位作者 李勇 王祥 王欢 《西安科技大学学报》 北大核心 2025年第1期86-97,共12页
随着中国西部地区隧道工程建设的蓬勃发展,深埋、高应力、高海拔隧道的软岩大变形灾害愈发严重,已经成为隧道灾害控制领域的研究重点和难点。位于横断山脉的大亮山公路隧道因其埋深大、断层多、突涌水、围岩强度低、地应力高等特点,隧... 随着中国西部地区隧道工程建设的蓬勃发展,深埋、高应力、高海拔隧道的软岩大变形灾害愈发严重,已经成为隧道灾害控制领域的研究重点和难点。位于横断山脉的大亮山公路隧道因其埋深大、断层多、突涌水、围岩强度低、地应力高等特点,隧道围岩大变形现象十分严重。为了探索这种类型隧道围岩大变形控制策略,提出了一种基于NPR材料的深埋隧道软岩大变形开挖补偿控制对策,为了验证其可行性和科学性,通过现场观测、室内物理模型试验与数值模拟进行深入研究。结果表明:NPR锚索可承受的最大动力冲击荷载为284.811 kN,抗冲击性能最高约为Q235锚杆的2倍,非线性吸能效果显著;NPR锚索开挖补偿控制体系能够有效调节围岩应力分布特征,及时为受开挖扰动的围岩提供补偿支护力,约束围岩塑性区扩展并吸收围岩释放的变形能;在正常与超载条件下,分别将软岩隧道围岩变形量控制在3 mm与5.8 mm以内,且无明显应力集中区域;NPR锚索开挖补偿支护体系可有效约束隧道围岩位移,最大水平位移量控制在3.35 mm以内,最大竖向位移量控制在15.21 mm以内。NPR锚索补偿开挖支护体系能够有效控制深埋高应力隧道软岩大变形灾害。 展开更多
关键词 NPR锚索 软岩隧道 大变形灾害 物理模型试验
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基于EE-YOLOv8s的多场景火灾迹象检测算法 被引量:1
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作者 崔克彬 耿佳昌 《图学学报》 北大核心 2025年第1期13-27,共15页
针对目前烟火场景检测中,光照变化、烟火动态性、复杂背景、目标过小等干扰因素导致的火灾迹象目标误检和漏检的问题,提出一种YOLOv8s改进模型EE-YOLOv8s。设计MBConv-Block卷积模块融入YOLOv8的Backbone部分,实现EfficientNetEasy特征... 针对目前烟火场景检测中,光照变化、烟火动态性、复杂背景、目标过小等干扰因素导致的火灾迹象目标误检和漏检的问题,提出一种YOLOv8s改进模型EE-YOLOv8s。设计MBConv-Block卷积模块融入YOLOv8的Backbone部分,实现EfficientNetEasy特征提取网络,保证模型轻量化的同时,优化图像特征提取;引入大型可分离核注意力机制LSKA改进SPPELAN模块,将空间金字塔部分改进为SPP_LSKA_ELAN,充分捕获大范围内的空间细节信息,在复杂多变的火灾场景中提取更全面的特征,从而区分目标与相似物体的差异;Neck部分引入可变形卷积DCN和跨空间高效多尺度注意力EMA,实现C2f_DCN_EMA可变形卷积校准模块,增强对烟火目标边缘轮廓变化的适应能力,促进特征的融合与校准,突出目标特征;在Head部分增设携带有轻量级、无参注意力机制SimAM的小目标检测头,并重新规划检测头通道数,加强多尺寸目标表征能力的同时,降低冗余以提高参数有效利用率。实验结果表明,改进后的EE-YOLOv8s网络模型相较于原模型,其参数量减少了13.6%,准确率提升了6.8%,召回率提升了7.3%,mAP提升了5.4%,保证检测速度的同时,提升了火灾迹象目标的检测性能。 展开更多
关键词 烟火目标检测 EfficientNetEasy主干网络 大型可分离核注意力机制 可变形卷积校准模块 小目标检测
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大型薄壁构件加工变形误差综合补偿方法
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作者 宜亚丽 陈一凡 +2 位作者 程阳洋 王志勇 金贺荣 《仪器仪表学报》 北大核心 2025年第4期1-10,共10页
针对大型薄壁构件弱刚性和壁厚不均匀特性,导致在断续开槽铣削加工中槽底易发生加工变形,影响加工精度的问题,提出了一种加工变形误差综合补偿方法。首先,基于经验法开展铣削力测量试验,通过回归分析建立加工参数与铣削力映射关系,构建... 针对大型薄壁构件弱刚性和壁厚不均匀特性,导致在断续开槽铣削加工中槽底易发生加工变形,影响加工精度的问题,提出了一种加工变形误差综合补偿方法。首先,基于经验法开展铣削力测量试验,通过回归分析建立加工参数与铣削力映射关系,构建铣削力预测模型。针对大型薄壁构件仿真计算效率低的问题,采用等效刚度理论对薄壁构件的变形区域进行简化;在此基础上,提出了一种通过替换主结构模拟多层铣削加工的改进子结构仿真方法,并结合铣削力预测模型对大型薄壁构件进行预测加工变形,相较于全结构有限元方法计算效率提高了27.27%。其次,基于在机测量系统采集槽底壁厚数据,构建变形修正模型,综合应用层间修正系数与节点修正系数修正预测加工变形量,结合割线法对层间修正系数进行迭代计算,并基于非均匀有理B样条对离散补偿点进行加工路径拟合。最后,设计并搭建适用于大型薄壁构件机器人铣削系统的在机测量系统,并开展铣削加工误差补偿对比试验。试验结果表明,采用综合补偿方法后,加工误差较无补偿和采用镜像迭代补偿方法分别减少92.09%和77.63%。结果验证了所提出的加工变形误差综合补偿方法有效性。 展开更多
关键词 大型薄壁构件 加工变形 在机测量 综合补偿
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大悬伸工况下刀具铣削稳定性的影响研究
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作者 韩毅 熊计 +2 位作者 杨露 郭仕华 代洋 《工具技术》 北大核心 2025年第3期94-99,共6页
针对大悬伸工况下铣刀加工稳定性差的问题,对铣削过程中的刀具刚性进行仿真分析。结合大悬伸工况下的实际加工情况,对刀具进行简化并建模,建立用于大悬伸加工的铣刀模型。选择铣刀片前角、加工主轴转速和加工进给速率三个主要因素进行... 针对大悬伸工况下铣刀加工稳定性差的问题,对铣削过程中的刀具刚性进行仿真分析。结合大悬伸工况下的实际加工情况,对刀具进行简化并建模,建立用于大悬伸加工的铣刀模型。选择铣刀片前角、加工主轴转速和加工进给速率三个主要因素进行有限元仿真实验。基于DEFORM软件分析加工过程中的平均扭矩和径向载荷等,以提升刀具刚性为优化目标,得到最适合的加工参数。分析单个刀片铣削过程的受力变化趋势,确定加工过程中最大载荷出现的大致位置。 展开更多
关键词 大悬伸铣削 刀具刚性 deform有限元仿真 参数优化
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煤矿深部巷道碎胀大变形灾害控制及大变形灾变环境下TBM快速成巷技术
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作者 刘泉声 刘滨 +14 位作者 唐彬 康永水 卢海峰 朱元广 黄兴 潘玉丛 邓鹏海 孙磊 唐永志 卢兴利 张程远 余宏淦 李培涛 雷一鸣 贾浩男 《煤炭学报》 北大核心 2025年第1期224-244,共21页
随着浅部煤炭资源逐步枯竭,煤炭开采不断向深部发展,我国东部矿区和中西部部分矿区已经进入深部开采阶段。然而,由于深部岩体的高地应力环境及采掘过程的强扰动效应,深部巷道大变形灾害频发,严重制约了深部煤炭资源的安全高效开发。如... 随着浅部煤炭资源逐步枯竭,煤炭开采不断向深部发展,我国东部矿区和中西部部分矿区已经进入深部开采阶段。然而,由于深部岩体的高地应力环境及采掘过程的强扰动效应,深部巷道大变形灾害频发,严重制约了深部煤炭资源的安全高效开发。如何有效控制巷道围岩稳定及提升掘进效率已成为深部煤炭开发面临的重大技术挑战,主要体现在:对深部巷道米级大变形灾变的机理认识尚不清晰;缺乏适用于深部巷道大变形灾害控制的理论与技术;缺乏适应大变形灾变环境的快速成巷技术。针对以上问题,围绕中东部典型矿区深部巷道米级大变形灾变机理、深部巷道大变形灾害控制理论及技术体系、大变形灾变环境下的快速成巷技术等方面展开了系统研究,取得了以下进展:提出了深部巷道围岩应力场和变形破裂导致的围岩结构扰动演化过程的探测表征方法,发展了深部巷道大变形灾变过程模拟分析的FDEM方法,揭示了深部巷道米级大变形灾害孕育形成的破裂碎胀-大位移运动机理;提出了由“应力恢复、围岩增强、固结修复、应力转移-承载圈控制”四项控制原理构成的深部围岩稳定性分步联合控制理论,建立了精准介入围岩结构与扰动应力场演化过程、多重手段分步协同的灾害控制理论与技术体系;研发出深部巷道大变形灾变环境下TBM安全高效掘进关键技术,发展了TBM掘进过程挤压变形卡机灾害预测控制方法,建立了深部煤系地层TBM系统适应性设计理论与评价决策体系。研究成果实现了典型矿区深部巷道碎胀大变形灾害的有效控制和安全高效掘进,解决了深部矿井采掘接替的技术难题。 展开更多
关键词 煤矿深部巷道 碎胀大变形灾害 灾变机理 控制理论与技术 TBM快速成巷
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基于绝对节点坐标法下不同模型的柔性板力学特性分析
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作者 伍松 曲汉龙 +4 位作者 赵鑫 伍炜 罗淇译 符黄彬 牛彩云 《机床与液压》 北大核心 2025年第8期182-191,共10页
为了研究柔性板结构在不同模型下的动力学特性差异,基于绝对节点坐标法建立大变形柔性板的动力学模型。该方法通过变形梯度和格林-拉格朗日应变描述结构的运动以及变形,采用斜率矢量替代传统有限元法中的转角坐标,可有效求解大位移、大... 为了研究柔性板结构在不同模型下的动力学特性差异,基于绝对节点坐标法建立大变形柔性板的动力学模型。该方法通过变形梯度和格林-拉格朗日应变描述结构的运动以及变形,采用斜率矢量替代传统有限元法中的转角坐标,可有效求解大位移、大转动及大变形问题。基于绝对节点坐标法理论框架,对比分析线弹性和超弹性本构模型(薄板和全参数板单元、基于Mooney-Rivlin和Neo-Hookean本构模型的超弹性板)的力学特性。通过连续介质力学推导了单元广义弹性力矩阵与切线刚度矩阵,进而构建系统动力学方程。最后通过MATLAB软件分析线弹性模型和超弹性模型,得到了不同激励条件及材料模量对柔性板动力学行为的影响规律。仿真结果表明:当线弹性板受到外部激励时,三轴位移曲线较为吻合,超弹性板位移曲线存在一定差异,材料模量的增大使得两种板的变形减小,结构更加稳定,线弹性板及超弹性板模型对于大变形动力学问题都具有一定的适用性。 展开更多
关键词 绝对节点坐标法 动力学模型 大变形 超弹性本构模型
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