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Mechanical responses of anchoring structure under triaxial cyclic loading 被引量:2
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作者 Peng Wang Nong Zhang +5 位作者 Qun Wei Xingliang Xu Guangzhen Cui Aoran Li Sen Yang Jiaguang Kan 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2024年第2期545-560,共16页
Dynamic load on anchoring structures(AS)within deep roadways can result in cumulative damage and failure.This study develops an experimental device designed to test AS under triaxial loads.The device enables the inves... Dynamic load on anchoring structures(AS)within deep roadways can result in cumulative damage and failure.This study develops an experimental device designed to test AS under triaxial loads.The device enables the investigation of the mechanical response,failure mode,instability assessment criteria,and anchorage effect of AS subjected to combined cyclic dynamic-static triaxial stress paths.The results show that the peak bearing strength is positively correlated with the anchoring matrix strength,anchorage length,and edgewise compressive strength.The bearing capacity decreases significantly when the anchorage direction is severely inclined.The free face failure modes are typically transverse cracking,concave fracturing,V-shaped slipping and detachment,and spallation detachment.Besides,when the anchoring matrix strength and the anchorage length decrease while the edgewise compressive strength,loading rate,and anchorage inclination angle increase,the failure intensity rises.Instability is determined by a negative tangent modulus of the displacement-strength curve or the continued deformation increase against the general downward trend.Under cyclic loads,the driving force that breaks the rock mass along the normal vector and the rigidity of the AS are the two factors that determine roadway stability.Finally,a control measure for surrounding rock stability is proposed to reduce the internal driving force via a pressure relief method and improve the rigidity of the AS by full-length anchorage and grouting modification. 展开更多
关键词 Triaxial stress Dynamic-static combination load Cyclic loading anchoring structure(AS) Cumulative damage
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The Multi-Objective Optimization of AFPM Generators with Double-Sided Internal Stator Structures for Vertical Axis Wind Turbines
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作者 Dandan Song Lianjun Zhou +2 位作者 Ziqi Peng Senhua Luo Jun Zhu 《Energy Engineering》 EI 2021年第5期1439-1452,共14页
The axial flux permanent magnet(AFPM)generator with double-sided internal stator structure is highly suitable for vertical axis wind turbines due to its high power density.The performance of the AFPM generator with do... The axial flux permanent magnet(AFPM)generator with double-sided internal stator structure is highly suitable for vertical axis wind turbines due to its high power density.The performance of the AFPM generator with double-sided internal stator structure can be improved by the reasonable design of electromagnetic parameters.To further improve the overall performance of the AFPM generator with double-sided internal stator structure,multivariable(coil widthω_(c),permanent magnet thickness h,pole arc coefficient α_(p) and working air gap l_(g))and multi-objective(generator efficiencyη,total harmonic distortion of the voltage THD and induced electromotive force amplitude EMF)functional relationships are innovatively established.Orthogonal analysis,mean analysis and variance analysis are performed on the influence parameters by combining the Taguchi method and response surface methodology to study the influence degrees of each influence parameter on the optimization objectives to determine the most appropriate electromagnetic parameters.The optimization results are verified by 3D finite element analysis.The optimized APFM generator with double-sided internal stator structure exhibits superior economy,stronger magnetic density,higher efficiency and improved power quality. 展开更多
关键词 Wind turbine double-sided internal stator structure multi-objective optimization axial flux permanent magnet generator
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Seabed structures and foundations related to deep-sea resource development:A review based on design and research 被引量:1
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作者 Shengjie Rui Haojie Zhang +3 位作者 Hang Xu Xing Zha Mengtao Xu Kanmin Shen 《Deep Underground Science and Engineering》 2024年第2期131-148,共18页
The deep‐sea ground contains a huge amount of energy and mineral resources,for example,oil,gas,and minerals.Various infrastructures such as floating structures,seabed structures,and foundations have been developed to... The deep‐sea ground contains a huge amount of energy and mineral resources,for example,oil,gas,and minerals.Various infrastructures such as floating structures,seabed structures,and foundations have been developed to exploit these resources.The seabed structures and foundations can be mainly classified into three types:subsea production structures,offshore pipelines,and anchors.This study reviewed the development,installation,and operation of these infrastructures,including their structures,design,installation,marine environment loads,and applications.On this basis,the research gaps and further research directions were explored through this literature review.First,different floating structures were briefly analyzed and reviewed to introduce the design requirements of the seabed structures and foundations.Second,the subsea production structures,including subsea manifolds and their foundations,were reviewed and discussed.Third,the basic characteristics and design methods of deep‐sea pipelines,including subsea pipelines and risers,were analyzed and reviewed.Finally,the installation and bearing capacity of deep‐sea subsea anchors and seabed trench influence on the anchor were reviewed.Through the review,it was found that marine environment conditions are the key inputs for any offshore structure design.The fabrication,installation,and operation of infrastructures should carefully consider the marine loads and geological conditions.Different structures have their own mechanical problems.The fatigue and stability of pipelines mainly depend on the soil‐structure interaction.Anchor selection should consider soil types and possible trench formation.These focuses and research gaps can provide a helpful guide on further research,installation,and operation of deep‐sea structures and foundations. 展开更多
关键词 anchorS floating structures pipelines RISERS subsea foundations
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Investigation on seismic response of a three-stage soil slope supported by anchor frame structure 被引量:5
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作者 LIN Yu-liang LI Ying-xin +1 位作者 ZHAO Lian-heng YANG T Y 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第4期1290-1305,共16页
Based on a typical prototype of a soil slope in engineering practice, a numerical model of a three-stage soil slope supported by the anchor frame structure was established by means of FLAC3D code. The dynamic response... Based on a typical prototype of a soil slope in engineering practice, a numerical model of a three-stage soil slope supported by the anchor frame structure was established by means of FLAC3D code. The dynamic responses of three-stage soil slope and frame structure were studied by performing a series of bidirectional Wenchuan motions in terms of the failure mode of three-stage structure, the acceleration of soil slope, the displacement of frame structure, and the anchor stress of frame structure. The response accelerations in both horizontal and vertical directions are the most largely amplified at the slope top of each stage subjected to different shaking cases. The platforms among the stages reduce the amplification effect of response acceleration. The residual displacement of frame structure increases significantly as the intensity of shaking case increases. The frame structure at each stage presents a combined displacement mode consisting of a translation and a rotation around the vertex. The anchor stress of frame structure is mainly increased by the first intense pulse of Wenchuan seismic wave, and it is sensitive to the intensity of shaking case. The anchor stress of frame structure at the first stage is the most considerably enlarged by earthquake loading. 展开更多
关键词 three-stage soil slope anchor frame structure ACCELERATION DISPLACEMENT anchor stress
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Influence of spiral anchor composite foundation on seismic vulnerability of raw soil structure
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作者 Shiwei Hou Guangliang Gao +2 位作者 Hao Zhang Zhanwen Lai Junyan Han 《Earthquake Research Advances》 CSCD 2022年第4期79-85,共7页
A typical single-layer raw soil structure in villages and towns in China is taken as the research object.In the probabilistic seismic demand analysis,the seismic demand model is obtained by the incremental dynamic tim... A typical single-layer raw soil structure in villages and towns in China is taken as the research object.In the probabilistic seismic demand analysis,the seismic demand model is obtained by the incremental dynamic time history analysis method.The seismic vulnerability analysis is carried out for the raw soil structure of nonfoundation,strip foundation,and spiral anchor composite foundation,respectively.The spiral anchor composite foundation can reduce the seismic response and failure state of raw soil structure,and the performance level of the structure is significantly improved.Structural requirements sample data with the same ground motion intensity are analyzed by linear regression statistics.Compared with the probabilistic seismic demand model under various working conditions,the seismic demand increases gradually with the increase of intensity.The seismic vulnerability curve is summarized for comparative analysis.With the gradual deepening of the limit state,the reduction effect of spiral anchor composite foundation on the exceedance probability becomes more and more obvious,which can reduce the probability of structural failure to a certain extent. 展开更多
关键词 Spiral anchor Raw soil structure Probabilistic seismic demand analysis Incremental dynamic time history analysis Seismic vulnerability analysis
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Accumulated damage failure mechanism of anchoring structures under cyclic impact disturbance
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作者 Peng Wang Nong Zhang +7 位作者 Jiaguang Kan Qun Wei Zhengzheng Xie Aoran Li Zhe He Jinghua Qi Xingliang Xu Changrui Duan 《International Journal of Mining Science and Technology》 SCIE EI CAS 2024年第12期1693-1709,共17页
Cyclic impact induces ongoing fatigue damage and performance degradation in anchoring structures,ser-ving as a critical factor leading to the instability of deep roadways.This paper takes the intrinsic spatio-temporal... Cyclic impact induces ongoing fatigue damage and performance degradation in anchoring structures,ser-ving as a critical factor leading to the instability of deep roadways.This paper takes the intrinsic spatio-temporal relationship of macro-microscopic cumulative damage in anchoring structures as the main thread,revealing the mechanism of bearing capacity degradation and progressive instability of anchoring structure under cyclic impact.Firstly,a set of impact test devices and methods for the prestressed solid anchor bolt anchoring structure were developed,effectively replicating the cyclic impact stress paths in situ.Secondly,cyclic impact anchoring structure tests and simulations were conducted,which clarifies the damage evolution mechanism of the anchoring structure.Prestress loss follows a cubic decay func-tion as the number of impacts increases.Under the same impact energy and pretension force,the impact resistance cycles of extended anchoring and full-length anchoring were increased by 186.7%and 280%,respectively,compared to end anchoring.The rate of internal damage accumulation is positively corre-lated with impact energy and negatively correlated with anchorage length.Internal tensile cracks account for approximately 85%.Stress transmission follows a fluctuating pattern.Compared to the extended anchoring,the maximum vibration velocity of the exposed end particles in the full-length anchoring was reduced by 59.31%.Damage evolution exhibits a pronounced cumulative mutation effect.Then,a three-media,two-interface mechanical model of the anchoring structure was constructed.It has been clarified that the compressive stress,tensile stress,and oscillation effect arising from rapid transi-tions between compression and tension are the primary internal factors responsible for the degradation of the anchoring structure’s bearing capacity.Finally,the progressive instability mechanism of the anchoring structure under cyclic impact was elucidated.The mutual feedback and superposition of media rupture,interface debonding,and bearing capacity degradation result in overall failure.The failure pro-cess involves stages dominated by oscillation-compression,tensile stress,and compression failure.A tar-geted control strategy was further proposed.This provides a reference for maintaining the long-term stability of deep roadways under dynamic impact loads. 展开更多
关键词 Cyclic impact anchoring structure Cumulative damage Bearing capacity degradation Progressive instability
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3D anchoring structured for LiFe_(0.5)Mn_(0.5)PO_(4)@cornstalk-C cathode materials 被引量:2
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作者 Guangliang Zhang Riran Zang +13 位作者 Man Mo Zhijie Fang Yangxian Huang Kunsong Hu Jiali Huang Xinxiang Liu Lingyun Huang Guohui Kang Weijian Li Haiqing Zhan Xianquan Ming Guanhan Huang Guiliang Li Feng Zhan 《Chinese Chemical Letters》 SCIE CAS CSCD 2023年第8期302-305,共4页
The organic carbon source coating LiFe_(x)Mn_(1-x)PO_(4)suffers from the problem of non-uniform carbon cladding.Too thick carbon cladding layer instead hinders the de-embedding of lithium ions.In this paper,we choose ... The organic carbon source coating LiFe_(x)Mn_(1-x)PO_(4)suffers from the problem of non-uniform carbon cladding.Too thick carbon cladding layer instead hinders the de-embedding of lithium ions.In this paper,we choose cornstalk as the carbon source,then LiFe_(0.5)Mn_(0.5)PO_(4)@cornstalk-C(LFMP@C-C)with 3D anchoring structure is prepared by the solvothermal method.The results show that the LFMP with cornstalk as the carbon source has better performance compared to the sucrose-coated LFMP material(LFMP@C).The discharge capacity of LFMP@C-C is 116 mAh/g for the first cycle at 1 C and the capacity retention rate is 94.0%after 500 cycles,and the discharge capacity of LFMP@C-C is more than 17.17%higher than that of LFMP@C. 展开更多
关键词 LiFe_(0.5)Mn_(0.5)PO_(4) Cornstalk Solvothermal method 3D anchoring structure Cathode materials
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A new anchor-siphon drainage combined method used for slope stabilization
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作者 SUN Hong-yue WANG Xu +4 位作者 YU Yang SHU Jun-wei WANG Tian-long LUO Rui CHU Zhao-wei 《Journal of Mountain Science》 SCIE CSCD 2023年第11期3295-3311,共17页
A new anchor-siphon drainage combined method used for slope stabilization is proposed in this paper.It includes an anchoring section and a siphon drainage section.The novelty of the anchor-siphon drainage combined met... A new anchor-siphon drainage combined method used for slope stabilization is proposed in this paper.It includes an anchoring section and a siphon drainage section.The novelty of the anchor-siphon drainage combined method is the realization of the drainage and anchoring in the one inclined borehole.The engineering cost of drilling and the resulting disturbance to the slope is reduced.To validate the feasibility of the proposed method,a numerical method that combines the pore water pressure distribution after siphon drainage and the anchoring force of the anchoring section is used to evaluate the safety of the slope with the anchor-siphon drainage method.The proposed method was illustrated and validated with the Hongpu Village landslide,in Tonglu County,Zhejiang Province,in China.Compared with the common anchor bar with the same length in the anchoring section,the factor of safety(FOS)for Hongpu Village slope with anchorsiphon drainage is increased by 0.085.The calculation method of the optimal length ratio between the drainage section and the anchoring section and its influencing factors were studied.For the different design parameters,there is always an optimal length ratio of the drainage section.Compared with the siphon drainage and full-length anchor bar with the same borehole length,the anchor-siphon drainage combined method shows better landslide prevention ability.Moreover,when the optimized parameters with a bond strength of 560kPa,a borehole inclination of 35°,and no reduction in length are used,the calculated safety factor is 1.316,which is significantly higher than the FOS of 1.131 for the slope with siphon drainage. 展开更多
关键词 LANDSLIDE Safety factor Optimized design Siphon drainage anchor New structure
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Study on damage-stress loss coupling model of rock and prestressed anchor cable in dry-wet environment
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作者 Yu Zhao Huasu Wang +3 位作者 Jing Bi Zhijun Wu Chaolin Wang Jiabao Ma 《International Journal of Mining Science and Technology》 SCIE EI CAS CSCD 2023年第12期1451-1467,共17页
The loss of anchoring force is one of the problems to be solved urgently.The anchorage loss is a key factor causing the failure of anchoring engineering,so it is crucial to study the time-dependent variation of anchor... The loss of anchoring force is one of the problems to be solved urgently.The anchorage loss is a key factor causing the failure of anchoring engineering,so it is crucial to study the time-dependent variation of anchoring force.Alternating dry and wet(D-W)conditions have a significant effect on deformation of rock.The anchoring system is composed of anchoring components and rock mass,and thus rock deformation has a significant impact on the loss of anchoring force.Quantifying rock deformation under the effects of D-W cycles is a prerequisite to understanding the factors that influence loss of anchoring force in anchor bolts.In this study,we designed an anchoring device that enabled real-time monitoring of the variation in strain during D-W periods and rock testing.Nuclear magnetic resonance(NMR)measurements showed that under D-W conditions,the increment in porosity was smaller for prestressed rock than unstressed rock.The trends of prestress loss and strain variation are consistent,which can be divided into three characteristic intervals:rapid attenuation stage,slow attenuation stage and relatively stable stage.At the same stress level,the rate of stress loss and strain for the soaking specimen was the highest,while that of the dried specimen was the lowest.In the same D-W cycling conditions,the greater the prestress,the smaller the strain loss rate of the rock,especially under soaking conditions.The characteristics of pore structure and physical mechanical parameters indicated that prestress could effectively suppress damage caused by erosion related to D-W cycles.The study reveals the fluctuation behavior of rock strain and prestress loss under D-W conditions,providing a reference for effectively controlling anchoring loss and ideas for inventing new anchoring components. 展开更多
关键词 D-W cycles anchoring force loss Coupled model Pore structure Prestressed device
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Stress Analysis of New Type Pre-Stressed Anchor Bearing Plate Combining Stamping with Welding Forming and Its Anchorage Zone
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作者 Daosen Chen Nianchun Deng +1 位作者 Zanzhi Wang Haining Zuo 《World Journal of Engineering and Technology》 2017年第4期33-41,共9页
An anchor bearing plate transfers the anchoring force from anchor plate to the concrete and the pre-stress is formed in the concrete structure. Currently, the main type of anchor bearing plate is cast iron. It is brit... An anchor bearing plate transfers the anchoring force from anchor plate to the concrete and the pre-stress is formed in the concrete structure. Currently, the main type of anchor bearing plate is cast iron. It is brittle during transportation and tension process. This paper presents a new type of anchor bearing plate combined stamping with welding forming. The structure of the new type anchor bearing plate is introduced. The stress states of the anchor bearing plate and anchorage zone under work are studied. Various specifications of anchor bearing plate are studied by ANSYS finite element analysis software following the AASHTO specification. The analysis results are compared with the results of the same type of OVM round-shaped anchor plate. The study results show that the new pre-stressed anchor plates combined stamping with welding forming are feasible and more sturdy which can meet the engineering demand. 展开更多
关键词 Pre-Stressed Concrete structure Finite Element Analysis anchor BEARING Plate Stress of anchorAGE Zone
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托顶煤巷道锚固“梁-拱”结构分类及顶板冲击失稳机制 被引量:1
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作者 曹安业 郭文豪 +5 位作者 温颖远 王崧玮 刘耀琪 郝琪 吕国伟 李庚 《煤炭学报》 EI CAS CSCD 北大核心 2024年第4期1752-1770,共19页
我国煤矿托顶煤巷道冲击地压频发,且冲击动载下顶板灾害尤为严重。为探究托顶煤巷道顶板锚固结构类型和冲击失稳机制,以陕西某矿301工作面回风巷道大面积冲击垮顶为工程背景,运用相似实验、理论分析及数据统计等方法,分析了托顶煤巷道... 我国煤矿托顶煤巷道冲击地压频发,且冲击动载下顶板灾害尤为严重。为探究托顶煤巷道顶板锚固结构类型和冲击失稳机制,以陕西某矿301工作面回风巷道大面积冲击垮顶为工程背景,运用相似实验、理论分析及数据统计等方法,分析了托顶煤巷道围岩应力、位移和巷表加速度的动载响应特征,研究了顶煤厚度与支护构件影响下顶板锚固结构的分类特征,探究了弹性波下托顶煤巷道的应力响应机制,提出顶板锚固“梁-拱”结构的冲击失稳机制,评估了301工作面回风巷道的抗冲能力,并提出了相应的抗冲支护优化方案。结果表明:①冲击动载下托顶煤围岩应力和位移等监测数据验证了顶板存在内、外层的梁或拱形锚固结构,因顶煤厚度增加,顶板内层锚固结构存在由“梁”向“拱”的转换;②基于顶煤厚度与支护构件相对关系,将顶板锚固结构划分为薄顶煤的“叠加梁-拱”、厚顶煤的“组合梁-拱”和特厚顶煤的“组合拱”,建立了厚煤梁由“梁”向“拱”转化的临界厚度指标;③顶板锚固梁结构和锚固拱结构的冲击失稳机制为动静载荷下分别达到其拉伸、剪切强度极限后破坏,锚固“梁-拱”结构对冲击载荷的放大效应受其尺寸影响明显;④特厚顶煤的“组合拱”结构中内层拱承载强度较低,可增加锚杆长度提升内层拱厚,对应的“组合拱”结构的承载能力上升明显,与抗冲能力评估结果相符。 展开更多
关键词 锚固“梁-拱”结构 顶煤厚度 载荷放大效应 弹性波 支护优化
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高频低能冲击扰动下锚固结构渐进失效试验研究
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作者 张农 王朋 +3 位作者 阚甲广 许兴亮 谢正正 魏群 《煤炭学报》 EI CAS CSCD 北大核心 2024年第1期309-319,共11页
高频低能冲击扰动对巷道围岩及锚固结构造成持续疲劳损伤,是深部巷道趋向失稳的重要诱因,合理构建抗冲击动载巷道锚固支护体系及避免锚固结构失效已经成为深部煤炭开采面临的重要课题之一。采用理论分析、实验室试验、数值模拟等方法,... 高频低能冲击扰动对巷道围岩及锚固结构造成持续疲劳损伤,是深部巷道趋向失稳的重要诱因,合理构建抗冲击动载巷道锚固支护体系及避免锚固结构失效已经成为深部煤炭开采面临的重要课题之一。采用理论分析、实验室试验、数值模拟等方法,研究了冲击载荷下锚固结构内部应力传递转化机制,阐明了锚固结构累积损伤与渐进失效机理,提出了冲击动载巷道控制准则。结果表明:压缩应力、拉伸应力与压拉快速转换形成的震荡效应是造成锚固结构损伤的三大要素;压缩、拉伸作用下介质抗压强度与不协调变形是导致锚固界面破坏的关键因素,锚固结构在内部法向驱动力作用下损伤累积,切线模量为负或单次动载冲击变形量持续逆势上扬时锚固结构失效,压缩、拉伸、震荡叠加影响下锚固结构预紧力损失及内部损伤存在明显的累积突变效应,内部裂隙以张拉裂隙为主,整体破坏从震荡效应向拉伸效应再向压缩破坏效应逐渐演化。通过提高围岩/锚固剂协调变形能力,增加锚固长度调动大范围岩体承载、保护锚固界面,保持锚固结构承载区抗剪阻滑强度大于动载冲击时内部法向驱动力,同时削弱震荡效应可有效降低锚固结构累积损伤程度。最后提出了降能-高阻-让压的冲击动载巷道控制技术准则,包括远场卸压、近场强支、破碎围岩改性、预紧力维持和让压结构,可为类似条件巷道维控提供指导。 展开更多
关键词 冲击动载 高频低能 锚固结构 累积损伤 渐进失效
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锚杆钻车运行中支护承载结构及围岩受力变形分析
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作者 王雁冰 梅洪嘉 +3 位作者 张京泉 李凯 刘珍 李杨 《安徽理工大学学报(自然科学版)》 CAS 2024年第1期1-11,共11页
目的针对单轨液压锚杆钻车运行过程中支护承载结构及围岩受力变形难以观测分析的问题。方法利用研发的CMMD4-35煤矿用单轨液压锚杆钻车,结合长城五矿1902S回风巷巷道现场情况综合分析钻车在大断面大倾角巷道动态运行的支护、承载及围岩... 目的针对单轨液压锚杆钻车运行过程中支护承载结构及围岩受力变形难以观测分析的问题。方法利用研发的CMMD4-35煤矿用单轨液压锚杆钻车,结合长城五矿1902S回风巷巷道现场情况综合分析钻车在大断面大倾角巷道动态运行的支护、承载及围岩协同受力变形特征。结果研究表明,钻车运行过程中吊挂板的受力变形在悬吊点处均达到峰值,工字钢在悬吊点的部分位移最小,与钻车直接接触的部分受力最大;锚索中部主要受到拉应力,靠近巷道一侧主要受到剪应力,而巷道两帮的锚杆拉应力主要分布在靠近巷道内部一侧;巷道顶板悬吊点处位移最大,两帮靠近顶板位移高于底板处,而巷道偏向低帮处底板的位移大于高帮处;以单轨液压锚杆钻车为核心的新型配套工艺可以有效控制围岩变形,支护效果良好,比传统以掘锚一体机为中心的机器化工艺掘进效率更高。结论研究明确了CMMD4-35煤矿用单轨液压锚杆钻车在实际应用的可行性,解决了现有掘锚一体机难以在复杂地质条件下大断面煤巷自动化掘进支护的问题,提升了煤巷支护效果掘进效率,为CMMD4-35煤矿用单轨液压锚杆钻车的现场应用提供了理论依据。 展开更多
关键词 锚杆钻车 锚杆锚索 承载结构 支护结构 巷道围岩 受力变形
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具有自组装特性的有机小分子材料研究进展
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作者 王桂霞 王佳伟 +3 位作者 王彩钥 张新宇 周超 孔翔飞 《精细化工》 EI CAS CSCD 北大核心 2024年第11期2334-2344,共11页
具有自组装特性的有机小分子结构一般由三部分构成:分子一端为锚定基团,另一端为调控性能的尾部基团,中间通过主链相连。此类分子通常采用硅烷类、硫醇类、酸类等作为锚定基团;尾部基团一般由吸电子基团或供电子基团构成;主链一般由不... 具有自组装特性的有机小分子结构一般由三部分构成:分子一端为锚定基团,另一端为调控性能的尾部基团,中间通过主链相连。此类分子通常采用硅烷类、硫醇类、酸类等作为锚定基团;尾部基团一般由吸电子基团或供电子基团构成;主链一般由不同长度的烷基链或芳香环组成。该文综述了近年来具有自组装特性的有机分子结构的特点和性质,并介绍其在生物医学、传感及防腐领域中的应用。通过比较此类分子自组装成膜改性器件的优缺点,总结其构效关系,并对未来自组装特性有机小分子的结构提出一定的设想。 展开更多
关键词 自组装 锚定基团 链长 尾部基团 构效关系
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公铁合建钢混板-桁斜拉桥悬挑式钢锚箱受力特性及结构优化
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作者 施洲 周勇聪 +3 位作者 江峰 刘振标 夏正春 印涛 《中国铁道科学》 EI CAS CSCD 北大核心 2024年第3期50-60,共11页
为研究大跨度公铁合建钢混板-桁斜拉桥主梁悬挑式索梁钢锚箱结构的受力特性及结构优化,以主跨808 m的洪奇沥特大桥钢锚箱为背景,采用仿真分析方法,研究钢锚箱3个设计方案主要板件应力、焊缝应力以及推荐方案锚箱节点的传力特性和锚箱参... 为研究大跨度公铁合建钢混板-桁斜拉桥主梁悬挑式索梁钢锚箱结构的受力特性及结构优化,以主跨808 m的洪奇沥特大桥钢锚箱为背景,采用仿真分析方法,研究钢锚箱3个设计方案主要板件应力、焊缝应力以及推荐方案锚箱节点的传力特性和锚箱参数对钢锚箱受力的影响。结果表明:锚箱尺寸较大、顶底板加肋方案的主要板件应力最大为300 MPa,小于其他2种方案,且6条焊缝的最大应力和应力不均匀系数较优,因此确定该方案为最终设计方案;索力首先由锚垫板直接向钢锚箱顶、底板和内外腹板较为均匀传递,最终边弦杆底板、内腹板和外腹板分别承担了22.2%,46.4%和31.4%的索力;节点处副桁斜杆、近桥塔侧和远桥塔侧边弦杆、混凝土桥面、节点横梁分别传递约66.71%,9.72%,9.32%,9.68%和4.56%的斜拉索竖向分力;板件应力随顶底板厚度增加而减小,顶底板深入边弦杆长度增加可以降低底板-内腹板焊缝峰值应力,顶底板间距减小可降低内外腹板和顶底板与锚垫板接触区域应力;顶底板厚44 mm、锚箱顶底板深入边弦杆长度1800 mm、顶底板间距660 mm时较为合理。 展开更多
关键词 公铁合建斜拉桥 索梁钢锚箱 受力特性 传力特性 结构优化
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锚栓屈服型可抬升柱脚节点抗震性能试验研究
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作者 陈刚 高玲 +1 位作者 张煜坤 郑七振 《上海理工大学学报》 CAS CSCD 北大核心 2024年第2期190-198,共9页
为满足结构在震中安全且震后可修复使用的目的,设计了一种锚栓屈服型可抬升柱脚节点,该节点是一种半刚性节点,将柱脚锚栓的一部分作为节点的阻尼器,阻尼器为柱脚提供抗弯能力和可抬升能力,在地震时柱脚节点塑性变形主要集中在阻尼器上,... 为满足结构在震中安全且震后可修复使用的目的,设计了一种锚栓屈服型可抬升柱脚节点,该节点是一种半刚性节点,将柱脚锚栓的一部分作为节点的阻尼器,阻尼器为柱脚提供抗弯能力和可抬升能力,在地震时柱脚节点塑性变形主要集中在阻尼器上,震后通过更换阻尼器即可完成柱脚节点的修复。为此,设计一组普通外露式柱脚节点和锚栓屈服型可抬升柱脚节点进行对比试验,并通过拟静力试验,研究它们在低周往复荷载下的滞回特性、抗弯承载力、刚度退化、耗能能力等抗震性能,同时研究柱脚节点在更换阻尼器前后的抗震性能。研究结果表明:对比普通外露式柱脚节点,锚栓屈服型可抬升柱脚具有更好的耗能能力和变形能力,试件的损伤基本集中在可更换的阻尼器上,耗能模式和损伤机制较为合理。在进行修复后,除初期转动刚度略低于修复前试件外,整体抗震性能基本可恢复至震前水平。另外,该新型柱脚的阻尼器拆卸和更换较为简便。 展开更多
关键词 可恢复功能结构 可抬升柱脚 可更换构件 锚栓屈服 抗震性能
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深水FPSO吸力锚建造工艺
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作者 张耀 汪春标 +2 位作者 闫运强 韩辉 赵献 《金属加工(热加工)》 2024年第7期72-78,共7页
以某深水浮式生产储卸油装置(FPSO)的吸力锚建造为例,对吸力锚的钢制筒体、顶盖结构、内部切泥板、铸造吊耳及锚链等主要结构预制安装流程与吸力锚整体装船工艺进行阐述。研究结果表明:深水FPSO吸力锚在建造过程中通过制定合理的施工顺... 以某深水浮式生产储卸油装置(FPSO)的吸力锚建造为例,对吸力锚的钢制筒体、顶盖结构、内部切泥板、铸造吊耳及锚链等主要结构预制安装流程与吸力锚整体装船工艺进行阐述。研究结果表明:深水FPSO吸力锚在建造过程中通过制定合理的施工顺序、严格控制组对尺寸公差和焊接参数等措施,对整个项目的质量管控和工效提升至关重要,也为后期同类大型管状结构物的建造提供了有益的参考。 展开更多
关键词 吸力锚 钢制筒体 顶盖结构 附属结构 装船
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桩锚结构在市政既有高边坡改建加固中的应用研究
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作者 孙林锋 《福建建筑》 2024年第8期45-49,共5页
结合福州市某道路既有高边坡改建加固的工程实例,分析既有边坡改建加固的不利因素,探讨桩锚结构在既有高边坡改建加固中的运用。结合数值模拟方法,采用强度折减法,对边坡施工各阶段的稳定性进行分析,预测周边建(构)筑物变形,并根据计算... 结合福州市某道路既有高边坡改建加固的工程实例,分析既有边坡改建加固的不利因素,探讨桩锚结构在既有高边坡改建加固中的运用。结合数值模拟方法,采用强度折减法,对边坡施工各阶段的稳定性进行分析,预测周边建(构)筑物变形,并根据计算结果,提出成桩工序优化等措施。监测及实际施工效果显示,桩锚结构在此工程中得到了良好的应用效果。 展开更多
关键词 边坡改建 桩锚结构 数值模拟 稳定性分析
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高速公路边坡预应力锚索桩板墙结构参数优化与受力特征分析 被引量:1
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作者 刘兴雷 吴顺川 +1 位作者 韩龙强 曹振生 《科学技术与工程》 北大核心 2024年第15期6439-6447,共9页
桩板墙是高速公路滑坡治理中常用的一种支护措施,其结构参数的优化设计是工程施工的研究重点。以云南省红河州建水(个旧)至元阳高速公路工程AK0+560~AK0+660段桩板墙工程为背景,采用数值模拟与灰色关联分析、正交试验设计相结合的方法,... 桩板墙是高速公路滑坡治理中常用的一种支护措施,其结构参数的优化设计是工程施工的研究重点。以云南省红河州建水(个旧)至元阳高速公路工程AK0+560~AK0+660段桩板墙工程为背景,采用数值模拟与灰色关联分析、正交试验设计相结合的方法,研究桩体嵌固长度、桩间距、桩宽3种结构参数的影响与优化,最终验证优化后的结构参数在地震工况下的稳定性。结果表明:桩间距为主要影响因素,桩体嵌固长度和桩宽的关联度相近,为次要影响因素;桩板墙结构参数最优组合为桩体嵌固长度15.0 m、桩间距5.0 m、桩宽3.0 m;地震工况下,抗滑桩悬臂段土压力以及桩身偏移量和沉降差满足规范要求,边坡稳定性较好。 展开更多
关键词 高速公路 预应力锚索桩板墙 结构参数优化 地震响应 数值模拟
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Dynamic calculation model and seismic response for frame supporting structure with prestressed anchors 被引量:16
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作者 DONG JianHua1’2, ZHU YanPeng1, ZHOU Yong1 & MA Wei2 1 College of Civil Engineering, Lanzhou University of Technology, Lanzhou 730050, China 2 State Key Laboratory of Frozen Soil Engineering, Cold and Arid Regions Environmental and Engineering Research Institute, Chinese Academy of Sciences, Lanzhou 730000, China 《Science China(Technological Sciences)》 SCIE EI CAS 2010年第7期1957-1966,共10页
A dynamic calculation model of frame supporting structures with prestressed anchors for the slope stability is proposed. The frame and soil are closely contacted in the role of prestressed anchors and they cannot be s... A dynamic calculation model of frame supporting structures with prestressed anchors for the slope stability is proposed. The frame and soil are closely contacted in the role of prestressed anchors and they cannot be separated along the whole slope. The lateral displacement of frame and soil is nearly in phase. The movement characteristic satisfies the theory of elastic foundation beam. The frame is treated with elastic foundation beam in this model. The influence of prestressed anchors is simplified as linear spring and damped system related with velocity. Under the condition of horizontal earthquake excitation, the equation of vibration response is established by using the model of dynamic Winkler beam and the analytical solutions are obtained for simple harmonic vibration. This method is applied to a case record for illustration of its capability, in order to verify the method, 3D nonlinear FEM (ADINA) is used to analyze the seismic performance of this case, the comparative results show that the design and the analysis are safe and credible by using the proposed method. The calculation model provides a new way for earthquake analysis and seismic design of slope stability supported by frame structure with prestressed anchors. 展开更多
关键词 FRAME supporting structure with PRESTRESSED anchor SLOPE DYNAMIC calculation model SEISMIC performance SEISMIC design
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